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WELS CAMPUS – School of Engineering Winter Semester 2019/20 Courses taught in English Version May 2019

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Page 1: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

WELS CAMPUS – School of Engineering

Winter Semester 2019/20

Courses taught in English

Version May 2019

Page 2: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

GENERAL INFORMATION

Choosing Courses Exchange students may combine courses from different degree programmes (such as AT, BUT, IPM, etc.), different levels (Bachelor’s/Master’s) and different semesters, as long as they meet the prerequisites for each course. Please note that places in some courses may be limited. Please keep in mind that timetable overlaps may occur. A full workload for regular students is 30 ECTS per semester, due to timetable overlaps this is mostly not possible for exchange students. They are therefore expected to attend courses worth 25 ECTS. Of course, exchange students who speak German fluently may also participate in courses taught in German at Wels Campus. For all others we offer German courses at various levels (free of charge). NOTE: Students should read the course content carefully when making their course selection to see that the content matches to their study requirements. Academic Calendar Winter semester: October 1st to mid- February (Semesters 1, 3, 5) Summer semester March 1st to mid- July (Semesters 2, 4, 6) Examination Period: End of January to mid- February (winter semester) End of June to mid-July (summer semester) Breaks: Christmas (2 weeks), February (1 to 4 weeks), Easter (1 week),

summer holidays in July/August/ September (12 weeks) Orientation Week The week before the commencement of the academic calendar, it is mandatory for all exchange students to attend Orientation Week. During this week students will receive all important information for the semester. TYPES OF CLASSES

Lectures and Integrated Courses (VO & ILV) While some subjects are presented as “traditional” lectures, others are taught in the form of seminars, laboratory and practice-oriented sessions. In many cases, both lecture and practice-oriented sessions are combined in the same semester.

Seminars, Laboratory and Practice-oriented Sessions (SE, LB, UE) These are classes in which students work on special topics, then present and discuss them within a relatively small group. In laboratory and practice-oriented sessions students learn to apply their knowledge acquired in lectures and seminars. In order to attend these types of class’s the corresponding lectures and integrated courses (VO & ILV) must be selected.

Block Courses In many cases – primarily in the case of seminars and laboratory classes – instruction does not take place weekly, but is instead delivered in blocks of more intensive instruction (e.g., one block every two weeks or even one block per term). Excursions Some courses occasionally include excursions, and attendance is generally obligatory. Any costs that arise for entrance fees, accommodation or other expenses are paid by the students.

Project These are not theoretical projects but “real” work. Students work on problems relevant to the particular company. They work in teams of 4-10 students and are supervised and guided by a faculty member. Most of the time the teams work on their own and at the end of the semester they present their results to both their supervising faculty member and the company. The main aim of these projects is to train the students in teamwork. Teamwork and team spirit are key elements of Wels Campus philosophy – students learn to work together rather than competing with one another.

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Course Packages

Course Packages The above course packages are a new option that has been created for the relevant study fields starting from winter semester 2017/18. By selecting one of the above course packages (e.g., Environmental & Chemical Engineering Basic) it is highly unlikely that there will be any course overlaps. Should any additional courses be added there is no guarantee that overlaps will not occur, however students are most welcome to choose additional courses and check their time tables upon arrival. Students may either select one of the above course packages or create their own individual course listing. By selecting individual courses we cannot guarantee that overlaps will not occur, even though we will do our best to avoid those. Course changes upon arrival are possible if required but will most likely result in overlaps.

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Bachelor's Degree Programme

Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Applied Energy Engineering (Bachelor, Wels Campus)

AET.ba 19_BMG5VO Biomass and Geothermal Energy Lecture 5 Bachelor 2,5 13

AET.ba 19_MET5LU Measurement Technology Laboratory session 5 Bachelor 1,5 14

AET.ba 19_MET5VO Measurement Technology Lecture 5 Bachelor 2,5 15

Automation Engineering (Bachelor, Wels Campus)

AT.ba IPR5PT Industrial Project Work Project 5 Bachelor 5 16

AT.ba MMI5ILV_AMA Human-Computer Interaction Integrated course 5 Bachelor 1,5 17

AT.ba MST6LB_ISS_W

S19/20 statt SS20

Micro-Systems Technology 6 Laboratory session 6 Bachelor 1,5 18

AT.ba MST6VO_ISS_WS19/20 statt

SS20 Micro-Systems Technology 6 Lecture 6 Bachelor 1,5 19

AT.ba PRM3ILV Project Management Integrated course 3 Bachelor 1 20

AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21

Bio- and Environmental Technology (Bachelor, Wels Campus)

BUT.ba BIT3VO Biotechnology I Lecture 3 Bachelor 3 22

BUT.ba BRW5LB Brewing Science Laboratory session 5 Bachelor 1 23

BUT.ba FER5LB Fermentation Technology Laboratory session 5 Bachelor 2 24

BUT.ba FUP5PT Interdisciplinary Project II Project 5 Bachelor 2 25

BUT.ba INA3LB Instrumental Analytics Laboratory session 3 Bachelor 2 26

BUT.ba MIB3LB Microbiology II Laboratory session 3 Bachelor 2 27

Electrical Engineering (Bachelor, Wels Campus)

EE.ba CEN5LA Control Engineering Laboratory session 5 Bachelor 4 28

1

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Electrical Engineering (Bachelor, Wels Campus)

EE.ba CEN5VO Control Engineering Lecture 5 Bachelor 4 30

EE.ba EEN1LA Electrical Engineering I Laboratory session 1 Bachelor 2 32

EE.ba EEN1UE Electrical Engineering I Practice-oriented session

1 Bachelor 2 34

EE.ba EEN1VO Electrical Engineering I Lecture 1 Bachelor 3 36

EE.ba EEN3LA Electrical Engineering III Laboratory session 3 Bachelor 1 38

EE.ba EEN3UE Electrical Engineering III Practice-oriented session

3 Bachelor 2 40

EE.ba EEN3VO Electrical Engineering III Lecture 3 Bachelor 4 42

EE.ba EMA3LA Electrical Machines I Laboratory session 3 Bachelor 2 44

EE.ba EMA3UE Electrical Machines I Practice-oriented session

3 Bachelor 2 46

EE.ba EMA3VO Electrical Machines I Lecture 3 Bachelor 3 48

EE.ba EPG5LA Electrical Power Grids and Systems Laboratory session 5 Bachelor 2 50

EE.ba EPG5UE Electrical Power Grids and Systems Practice-oriented session

5 Bachelor 2 52

EE.ba EPG5VO Electrical Power Grids and Systems Lecture 5 Bachelor 5 54

EE.ba GEN1VO Powerplants for Electrical Power Generation Lecture 1 Bachelor 3 54

EE.ba IPE5LA Introduction to Power Electronics Laboratory session 5 Bachelor 2 55

EE.ba IPE5VO Introduction to Power Electronics Lecture 5 Bachelor 3 57

EE.ba MAT1UE Mathematics I Practice-oriented session

1 Bachelor 2,5 59

EE.ba MAT1VO Mathematics I Lecture 1 Bachelor 5 60

EE.ba MES3LA Measurement Engineering for Electrical Energy Systems

Laboratory session 3 Bachelor 3 61

2

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Electrical Engineering (Bachelor, Wels Campus)

EE.ba MES3VO Measurement Engineering for Electrical Energy Systems

Integrated course 3 Bachelor 5 63

EE.ba MFE3VO Materials for Electrical Engineering Lecture 3 Bachelor 3 65

EE.ba PAS5ILV Patents and Standardisation Lecture 5 Bachelor 2 66

EE.ba PRG1UE Programming Practice-oriented session

1 Bachelor 2 67

EE.ba PRG1VO Programming Lecture 1 Bachelor 2 68

EE.ba PRM3ILV Project Management Integrated course 3 Bachelor 2 69

EE.ba PRP1VO Production Processes Seminar 1 Bachelor 2 70

EE.ba SSK1SE Communication with intercultural aspects Seminar 1 Bachelor 1,5 72

EE.ba TDR1ILV Technical Drawings Integrated course 1 Bachelor 2 73

German Language Courses

FWE DAF_A1.1_UE German Language A 1.1 Practice-oriented session

1 Bachelor 3 74

FWE DAF_A2.1_UE German Language A 2.1 Practice-oriented session

1 Bachelor 3 75

FWE DAF_B1.1_UE German Language B 1.1 Practice-oriented session

1 Bachelor 3 77

FWE DAF_B2.1_UE German Language B 2.1 Practice-oriented session

1 Bachelor 3 79

FWE DAF_C1.1_UE German Language C 1.1 Practice-oriented session

1 Bachelor 3 80

Innovation Engineering & Management (Bachelor, Wels Campus)

IPM.ba DPE5VO Digital Product Development Lecture 5 Bachelor 2 81

IPM.ba ENG1UE English Practice-oriented session

1 Bachelor 2 82

IPM.ba ENG3UE English III Practice-oriented session

3 Bachelor 2 84

IPM.ba ENG5UE English V Practice-oriented session

5 Bachelor 2 85

3

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Innovation Engineering & Management (Bachelor, Wels Campus)

IPM.ba PRM3IL Project Management Integrated course 3 Bachelor 1 88

Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Mechanical Engineering (Bachelor, Wels Campus)

MB.ba FEM5SE Finite Elements Seminar 5 Bachelor 1 87

MB.ba FEM5UE Finite Elements Practice-oriented session

5 Bachelor 1 88

MB.ba FEM5VO Finite Elements Lecture 5 Bachelor 1 89

MB.ba IPR5PT Industrial Project Work Project 5 Bachelor 5 90

Materials and Process Engineering (Bachelor, Wels Campus)

MKT.ba IPA5PT Interdisciplinary project work 2 Project 5 Bachelor 4 91

MKT.ba MRE5SE Material and Production Engineering Seminar Seminar 5 Bachelor 1 92

Process Engineering and Production (Bachelor, Wels Campus)

VTP.ba FP5PT_Gr.V Research Project Project 5 Bachelor 5 93

VTP.ba PRM3ILV_Gr.V Project Management Integrated course 3 Bachelor 1 94

VTP.ba PRT1VO_Gr.V Process Engineering Lecture 1 Bachelor 1,5 95

VTP.ba VT5LB_Gr.V Chemical Engineering - Reaction Engineering

Laboratory session 5 Bachelor 1,5 96

VTP.ba VT5UE_Gr.V Chemical Engineering - Reaction Engineering

Practice-oriented session

5 Bachelor 1 97

VTP.ba VT5VO_Gr.V Chemical Engineering - Reaction Engineering Lecture 5 Bachelor 1,5 98

Product Design and Technical Communication (Bachelor - Part Time, Wels Campus)

PDK.ba ENG3UE English II Practice-oriented session

3 Bachelor 2 99

PDK.ba ENG5UE English IV:English for technical communicators

Practice-oriented session

5 Bachelor 1 101

PDK.ba INF1UE Information Technology Practice-oriented session

1 Bachelor 2 102

4

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Product Design and Technical Communication (Bachelor - Part Time, Wels Campus)

PDK.ba INF1VO Information Technology Lecture 1 Bachelor 1 103

PDK.ba PP5UE Prototypes and Programming Basics Practice-oriented session

5 Bachelor 3 104

PDK.ba PP5VO Prototypes and Programming Basics Lecture 5 Bachelor 1 105

PDK.ba SOE3VO Software Ergonomics Lecture 3 Bachelor 1 106

Process Engineering and Production (Bachelor - Part Time, Wels Campus)

VTP.ba FP5PT_Gr.B Research Project Project 5 Bachelor 5 107

VTP.ba PRM3ILV_Gr.B Project Management Integrated course 3 Bachelor 1 108

VTP.ba PRT1VO_Gr.B Process Engineering Lecture 1 Bachelor 1,5 109

VTP.ba VT5LB_Gr.B Chemical Engineering - Reaction Engineering

Laboratory session 5 Bachelor 1,5 110

VTP.ba VT5UE_Gr.B Chemical Engineering - Reaction Engineering

Practice-oriented session

5 Bachelor 1 111

VTP.ba VT5VO_Gr.B Chemical Engineering - Reaction Engineering Lecture 5 Bachelor 1,5 112

5

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Master's Degree Programme

Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Plant Construction (Master, Wels Campus)

AB.ma CL1VO_Gr.V Contract Law Lecture 1 Master 2,5 113

Applied Energy Engineering (Master, Wels Campus)

AET.ma 19_EPD1IL Energy project development Integrated course 1 Master 2,5 114

AET.ma 19_SCP1IL Scientific Programming Integrated course 1 Master 3 115

AET.ma 19_SCP1PT Scientific Programming Project 1 Master 2 116

AET.ma 19_SRT1LU Control Engineering Laboratory session 1 Master 3 117

AET.ma 19_SRT1VO Control Engineering Lecture 1 Master 3,5 118

AET.ma GSM3LB Building Simulation Laboratory session 3 Master 2,5 119

AET.ma GSM3VO Building Simulation Lecture 3 Master 1,5 120

AET.ma SKW3PT Solar Thermal Power Stations Project 3 Master 2 121

AET.ma SKW3VO Solar Thermal Power Stations Lecture 3 Master 1,5 122

Automotive Mechatronics and Management (Master, Wels Campus)

AMM.ma AIT1VO Automotive IT Systems 1 Lecture 1 Master 2 123

AMM.ma AIT3IL Automotive IT Systems 3 Integrated course 3 Master 1 124

AMM.ma DAS3IL Driving Assistance Systems Integrated course 3 Master 3 125

AMM.ma EBC3IL Business Creation & Business Planning Integrated course 3 Master 2 126

AMM.ma INM1IL Innovation Management Integrated course 1 Master 3 127

AMM.ma LAW3VO Business Law & Intellectual Property Rights Lecture 3 Master 2 129

AMM.ma MSV3IL Mechatronic Systems Validation Integrated course 3 Master 1 130

6

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Automotive Mechatronics and Management (Master, Wels Campus)

AMM.ma NPD1IL New Product Development Integrated course 1 Master 3 131

AMM.ma PRM1UE Production Management Practice-oriented session

1 Master 1 132

AMM.ma PRM1VO Production Management Lecture 1 Master 2 133

AMM.ma QMA1IL Automotive Quality Management 1 Integrated course 1 Master 1 134

AMM.ma SAC1IL Sensors and Actuators Integrated course 1 Master 2 135

AMM.ma SIM1VO Model based Engineering 1 Lecture 1 Master 2 136

AMM.ma SIM3VO Model based Engineering 2 Lecture 3 Master 2,5 138

AMM.ma VCD1IL Vehicle Components & Driving Dynamics Integrated course 1 Master 4 139

AMM.ma VRC3IL Virtual and Augmented Reality Integrated course 3 Master 2 140

Automation Engineering (Master, Wels Campus)

AT.ma APT3PT Automation Engineering Project Project 3 Master 10 141

AT.ma ESY3ILV_INIF Embedded Systems Integrated course 3 Master 3 142

AT.ma IBV3LB Industrial Image Processing Laboratory session 3 Master 3 143

AT.ma IBV3VO Industrial Image Processing Lecture 3 Master 3 144

AT.ma MAS1IL Signal Processing Integrated course 1 Master 3 145

Civil Engineering (Master, Wels Campus)

BI.ma RES3ILV_WF1 Resource-efficient Building Integrated course 3 Master 2,5 146

Bio- and Environmental Technology (Master, Wels Campus)

BUT.ma BTL1VO Food Biotechnology Lecture 1 Master 3 148

BUT.ma ENG1UE English Practice-oriented session

1 Master 1,5 149

7

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Bio- and Environmental Technology (Master, Wels Campus)

BUT.ma FPT3PT Project Project 3 Master 17 150

BUT.ma ZKA1VO Cell Culture Analysis Lecture 1 Master 2 151

Electrical Engineering (Master, Wels Campus)

EE.ma BSW1ILV Basics of Scientific Work Integrated course 1 Master 2 152

EE.ma ECE1SE Ecology for Engineers Seminar 1 Master 3 153

EE.ma ECI3LB EMC and EMI Aspects Laboratory session 3 Master 2 155

EE.ma ECI3VO EMC and EMI Aspects Lecture 3 Master 3 156

EE.ma EME3VO Energy Markets and Energy Law Lecture 3 Master 2 157

EE.ma HEI3LB High Voltage Engineering Laboratory session 3 Master 3 158

EE.ma HEI3UE High Voltage Engineering Practice-oriented session

3 Master 2 159

EE.ma HEI3VO High Voltage Engineering Lecture 3 Master 4 160

EE.ma IPD3ILV International Project Development and Management

Integrated course 3 Master 2 161

EE.ma ITP1ILV IT Systems for Electrical Power Engineering Lecture 1 Master 3 162

EE.ma MAT1UE Numerical Mathematics and Higher Calculus

Practice-oriented session

1 Master 4 163

EE.ma MAT1VO Numerical Mathematics and High Calculus Lecture 1 Master 5 164

EE.ma MES1LB Measurement Engineering and Sensor Systems

Laboratory session 1 Master 4 165

EE.ma MES1VO Measurement Engineering and Sensor Systems Lecture 1 Master 4 166

EE.ma SSK1UE Cross-Cultural Negotiations Practice-oriented session

1 Master 2 167

EE.ma SSK3UE Intercultural Leadership and Management Practice-oriented session

3 Master 2 168

8

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Innovation and Product Management (Master, Wels Campus)

IPM.ma BIO3IL Bionics Integrated course 3 Master 1 169

IPM.ma BM1IL Brand Management and Positioning Integrated course 1 Master 1 170

IPM.ma BWL1IL Business Administration/Accounting Integrated course 1 Master 2 171

IPM.ma DPE1IL Digital Product Development Lecture 1 Master 2 172

IPM.ma DPT3PT Design Project Technical Design II Project 3 Master 5 173

IPM.ma EGD1IL Design and Morphology Integrated course 1 Master 1 174

IPM.ma EGD1SE Design and Morphology Seminar 1 Master 2 175

IPM.ma ERP3IL Enterprise Resource Planning Integrated course 3 Master 1 176

IPM.ma FEC3IL R&D Controlling Integrated course 3 Master 2 177

IPM.ma FIN3VO Finance Lecture 3 Master 1 178

IPM.ma IMM3IL International Marketing & Management Integrated course 3 Master 2 179

IPM.ma IND1IL Industrial Design Integrated course 1 Master 2 180

IPM.ma INM1IL Innovation Management II Integrated course 1 Master 2 181

IPM.ma INO1IL Innovation Management Integrated course 1 Master 2 182

IPM.ma KFK3UE Leadership Practice-oriented session

3 Master 2 183

IPM.ma KZE3PT Short-Term Design Project Project 3 Master 2 184

IPM.ma LCM3IL Product Lifecycle Management Integrated course 3 Master 1 185

IPM.ma MAK1IL Marketing Management Integrated course 1 Master 1 186

IPM.ma MEC1IL Mechatronics Integrated course 1 Master 4 187

9

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Innovation and Product Management (Master, Wels Campus)

IPM.ma MFO1IL Market Research Integrated course 1 Master 2 188

IPM.ma MIM3PT Marketing & Innovation Management Simulation Project 3 Master 3 189

IPM.ma MOM1IL Mechanics of Materials Integrated course 1 Master 3 190

IPM.ma MRI3IL Customer Integration in NPD Integrated course 3 Master 2 191

IPM.ma NBD3SE Entrepreneurship & New Business Development Seminar 3 Master 2 192

IPM.ma PM1IL Product Management Integrated course 1 Master 1 193

IPM.ma PPM3SE Product Line &Product Lifecycle Management - Project Seminar 3 Master 3 194

IPM.ma PRM1VO Project Management Lecture 1 Master 1 195

IPM.ma REG3IL Reverse Engineering Integrated course 3 Master 3 196

IPM.ma RPT3IL Rapid Product Development 1 Integrated course 3 Master 3 197

IPM.ma SCM3IL Supply Chain Management Integrated course 3 Master 1 198

IPM.ma SIE3IL Simultaneous Engineering Integrated course 3 Master 2 199

IPM.ma SKK1UE Presentation Practice-oriented session

1 Master 2 200

IPM.ma TPW1IL Value Analysis and FMEA Integrated course 1 Master 2 201

IPM.ma WIA1IL Scientific Work Integrated course 1 Master 0,5 203

IPM.ma WIA3IL Scientific Work Integrated course 3 Master 1 204

Mechanical Engineering (Master, Wels Campus)

MB.ma MFK1UE Solid Mechanics Practice-oriented session

1 Master 2 205

MB.ma MFK1VO Solid Mechanics Lecture 1 Master 4 206

10

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Mechanical Engineering (Master, Wels Campus)

MB.ma MKS1VO Multibody Dynamics Lecture 1 Master 4 207

MB.ma PRO3PT F&E-Projektarbeit Project 3 Master 10 208

Materials and Process Engineering (Master, Wels Campus)

MKT.ma PRJ1PT Project Work 1 Project 1 Master 12 209

Sustainable Energy Systems (Master, Wels Campus)

SES.ma CER3VO Conventional Energy Resources Lecture 3 Master 2 210

SES.ma EIN1IL Environmental Indicators Integrated course 1 Master 1,5 211

SES.ma EML3ILV Energy Markets and Energy Law Integrated course 3 Master 3 213

SES.ma HPB1VO High Performance Buildings Lecture 1 Master 4 216

SES.ma IPD3ILV International Project Development Integrated course 3 Master 2 218

SES.ma RER1UE Renewable Energy Resources Practice-oriented session

1 Master 3 219

SES.ma RER1VO Renewable Energy Resources Lecture 1 Master 4 221

SES.ma SSK1UE Intercultural Communication Practice-oriented session

1 Master 2 223

Plant Construction (Master - Part Time, Wels Campus)

AB.ma CL1VO_Gr.B Contract Law Lecture 1 Master 2,5 224

Mechatronics & Business Management (Master - Part Time, Wels Campus)

MEWI.ma DAS3IL Driving Assistance Systems Integrated course 3 Master 3 225

MEWI.ma MM1SE Market-oriented Management Seminar 1 Master 1 226

MEWI.ma NPD1IL New Product Development Integrated course 1 Master 3 227

MEWI.ma QMA1IL Quality Management 1 Integrated course 1 Master 1 228

11

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Mechatronics & Business Management (Master - Part Time, Wels Campus)

MEWI.ma SIM3LU Model based Engineering 2 Laboratory session 3 Master 1 229

MEWI.ma SIM3VO Model based Engineering 2 Lecture 3 Master 2,5 230

MEWI.ma VCD1IL Vehicle Components & Driving Dynamics Integrated course 1 Master 4 231

12

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Lecture/Seminar profile:

Biomass and Geothermal Energy (19_BMG5VO)

Degree course AET.ba

Course title Biomass and Geothermal Energy

Course code 19_BMG5VO

Level Bachelor

Term WS19/20

Lecturer Werner Ahrer, Sophie Messerklinger

Contact hours per week 2

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Production of biomass for the technical generation of energy. Overview of factors that significantly influence the economy of energy generation from biomass. She/he has the ability to design such plants in the following exemplary areas: - Anaerobic fermentation of biomass: classification of raw materials for biogas and bio-ethanol production - Thermal gasification of biomass: limitations, technical feasibility, avoidance of tar formation - Combustion of biomass: combustion plants for wood pellets, wood chips and bulky wood Potentials, selection of locations, system engineering components of geothermal energy systems

Prerequisites:

n.a.

13

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Lecture/Seminar profile:

Measurement Technology (19_MET5LU)

Degree course AET.ba

Course title Measurement Technology

Course code 19_MET5LU

Level Bachelor

Term WS19/20

Lecturer Gerald Steinmaurer, Harald Kirchsteiger

Contact hours per week 1

ECTS credits 1,5

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

the lecture material is enhanced/extended by use of examples/experiments Prerequisite: Professional qualification in Electrical Engineering (6 ECTS)

Prerequisites:

n.a.

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Lecture/Seminar profile:

Measurement Technology (19_MET5VO)

Degree course AET.ba

Course title Measurement Technology

Course code 19_MET5VO

Level Bachelor

Term WS19/20

Lecturer Gerald Steinmaurer

Contact hours per week 2

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Basics in acquisition of physical and chemical process data. Sensors, metrology circuits and computer based measuring systems.

Prerequisites:

Prerequisite: Professional qualification in Electrical Engineering (6 ECTS)

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Lecture/Seminar profile:

Industrial Project Work (IPR5PT)

Degree course AT.ba

Course title Industrial Project Work

Course code IPR5PT

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 5

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 24

Learning objectives:

n.a.

Content:

n.a.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Human-Computer Interaction (MMI5ILV_AMA)

Degree course AT.ba

Course title Human-Computer Interaction

Course code MMI5ILV_AMA

Level Bachelor

Term WS19/20

Lecturer Jean D. Hallewell Haslwanter

Contact hours per week 1

ECTS credits 1,5

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Introduction to the usability and utility/usefulness of systems: influences on interaction (perception, environment etc.), design of user interfaces (possibilities, guidelines), evaluation of user interfaces

Prerequisites:

n.a.

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Lecture/Seminar profile:

Micro-Systems Technology 6 (MST6LB_ISS)

Degree course AT.ba

Course title Micro-Systems Technology 6

Course code MST6LB_ISS_WS19/20 statt SS20

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1,5

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

n.a.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Micro-Systems Technology 6 (MST6VO_ISS)

Degree course AT.ba

Course title Micro-Systems Technology 6

Course code MST6VO_ISS_WS19/20 statt SS20

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

n.a.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Project Management (PRM3ILV)

Degree course AT.ba

Course title Project Management

Course code PRM3ILV

Level Bachelor

Term WS19/20

Lecturer Markus Feistritzer

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics of Project Management, project organisation, project strategies, project definition and planning, resource planning and budget, project execution and completion, team dynamics, tools for project management and documentation

Prerequisites:

n.a.

20

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Lecture/Seminar profile:

Technical Design and CAD II (TDC5ILV_AMA)

Degree course AT.ba

Course title Technical Design and CAD II

Course code TDC5ILV_AMA

Level Bachelor

Term WS19/20

Lecturer Raimund Edlinger

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

•interfaces between CAD/simulation- and graphics programmes, surface structures/freeform surfaces •construction of individual components •work with assembly groups/subassemblies •import of external components/assembly groups •simulation of movements •contact-collision analysis •application of a 3D development environment to solve a complex design task as in a project --> CAD precognition required --> basic knowledge of CATIA

Prerequisites:

n.a.

21

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Lecture/Seminar profile:

Biotechnology I (BIT3VO)

Degree course BUT.ba

Course title Biotechnology I

Course code BIT3VO

Level Bachelor

Term WS19/20

Lecturer Manuel Selg

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Basics of molecular genetics (DNA sequence- and structure analysis). DNA replication, RNA transcription and protein translation, gene expression, structure of the eukaryotic cell (morphology) including the function and structure of different cellular organelles: nucleus, endoplasmic reticulum, golgi, lysosomes and mitochondria; intracellular protein transport, transport of proteins to their final destination and protein import/export into and out of the nucleus.

Prerequisites:

Keine

22

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Lecture/Seminar profile:

Brewing Science (BRW5LB)

Degree course BUT.ba

Course title Brewing Science

Course code BRW5LB

Level Bachelor

Term WS19/20

Lecturer Alexander Jäger

Contact hours per week 1

ECTS credits 1

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 15

Learning objectives:

n.a.

Content:

Technology of brewing including mashing, refining, seasoning, fermentation, filling technology. Understanding of individual biopsies and their production. Introduction to the sensors of beer. Sensory analysis of typical beer defects. General hygienic aspects in food production

Prerequisites:

n.a.

23

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Lecture/Seminar profile:

Fermentation Technology (FER5LB)

Degree course BUT.ba

Course title Fermentation Technology

Course code FER5LB

Level Bachelor

Term WS19/20

Lecturer Viktoria Leitner

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 4

Learning objectives:

n.a.

Content:

Kultivierungstechniken, Fermenter, Fermenterdesign und Betriebsweise, biotechnologische Prozessschemata (Bierherstellung, Hefeproduktion, Penicillinherstellung, Bioethanolherstellung), Fermentationstechnik (Belüftungssysteme, Stoffübergänge, up-scaling) Bedienung und Verständnis einer biotechnologischen Pilotanlage. Fermentersterilisation, Beimpfung, Probenahme, Kultivierung als Batch-/Fed-Batch-/kontinuierliche Kultur. Bestimmung von Teilungsrate/ Generationszeit, maximale Wachstumsgeschwindigkeit, Monod-Kinetik.

Prerequisites:

Grundlagen Biologie/Mikrobiologie, Mikrobiologie 1

24

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Lecture/Seminar profile:

Interdisciplinary Project II (FUP5PT)

Degree course BUT.ba

Course title Interdisciplinary Project II

Course code FUP5PT

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Practical implementation of knowledge acquired in different courses on real-life tasks of the job market; Analysis of the project tasks, preparation of a project plan, processing of the tasks, composition of a report and presentation of the results

Prerequisites:

in Abhängigkeit von den jeweiligen Projekten Vorkenntnisse

25

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Lecture/Seminar profile:

Instrumental Analytics (INA3LB)

Degree course BUT.ba

Course title Instrumental Analytics

Course code INA3LB

Level Bachelor

Term WS19/20

Lecturer Klaus Krennhuber, Michaela Kröppl

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Example for HPLC/UV-diode array detection using gradient elution including sample preparation, calibration and data evaluation based on a normative method; Example for GC/FID with derivatization of samples (FAME) including sample preparation (fat extraction), calibration and data evaluation; Determination of dry mass using an infrared dryer and comparison with traditional methods; quantitative nitrogen determination according to Dumas; measurement of FTIR spectra for various compounds (Potassium bromide comprimate, foils and liquids); Dynamic olfactometry (taste analysis).

Prerequisites:

Analytische Chemie 1

26

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Lecture/Seminar profile:

Microbiology II (MIB3LB)

Degree course BUT.ba

Course title Microbiology II

Course code MIB3LB

Level Bachelor

Term WS19/20

Lecturer Manuela Meindl-Milla

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Systematische Bakteriologie, Pathogene und Pathogenitätsmechanismen; industriell bedeutender Bakterien; Probiotika Labor: Mikroskopische und makroskopische Untersuchungen; Färbemethoden; Wachstumsparameter, Keimzahlbestimmungsmethoden, Mikrobiologische Arbeitstechniken und Präparation; Mikrobiologische Wasseranalytik, Stammhaltung, Kultivierung, Vermehrung, Selektion, Nachweis von Mikroorganismen, Keimzahl in Lebensmitteln

Prerequisites:

Grundlagen Biologie/Mikrobiologie

27

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Lecture/Seminar profile:

Control Engineering (CEN5LA)

Degree course EE.ba

Course title Control Engineering

Course code CEN5LA

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 4

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Fundamental control and steering concepts State space models Meaning of characteristic terms such as control loop steady state deviation … Identification of the controlled system and modeling Controller design Stability assessment e.g. graphical (locus) methods mathematical methods … Special applications electrical cars and drives power control in energy systems (p(u), q(u)) grid stability Analog and digital controllers Application of a data acquisition software Please note: Attending the laboratory is only possible, if a student is also attending the lecture

28

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Prerequisites:

n.a.

29

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Lecture/Seminar profile:

Control Engineering (CEN5VO)

Degree course EE.ba

Course title Control Engineering

Course code CEN5VO

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 3

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamental control and steering concepts State space models Meaning of characteristic terms such as control loop steady state deviation … Identification of the controlled system and modeling Controller design Stability assessment e.g. graphical (locus) methods mathematical methods … Special applications electrical cars and drives power control in energy systems (p(u), q(u)) grid stability Analog and digital controllers Application of a data acquisition software Please note: Attending the lecture is only possible, if a student is also attending the laboratory

30

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Prerequisites:

n.a.

31

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Lecture/Seminar profile:

Electrical Engineering I (EEN1LA)

Degree course EE.ba

Course title Electrical Engineering I

Course code EEN1LA

Level Bachelor

Term WS19/20

Lecturer Josef Helmut Suchan

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 9

Learning objectives:

n.a.

Content:

Basic definitions of electrical units Current Potential Field Voltage Resistance and resistivity o Temperature influence o Mechanical influence Capacitance and inductance phenomenological Conductance and conductivity Power Energy Direct current circuits and the relevant computational methods Kirchoff's laws Helmholtz method Equivalent sources (voltage and current) Alternating current circuits and the relevant computational methods Time domain Frequency domain Harmonics analyzes Special AC circuits

32

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Parallel and serial oscillators Passive low pass and band pass filters Simple locus Reactive power compensation Three phase systems Essential measuring techniques Volt-meter Ampere-meter Watt-meter Oscilloscope Shunt Voltage divider Series resistor Essential domestic installation circuits, protective devices, elements and grounding systems Essential symbols and elements of drawings for electrical circuits Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

Prerequisites:

n.a.

33

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Lecture/Seminar profile:

Electrical Engineering I (EEN1UE)

Degree course EE.ba

Course title Electrical Engineering I

Course code EEN1UE

Level Bachelor

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Basic definitions of electrical units Current Potential Field Voltage Resistance and resistivity o Temperature influence o Mechanical influence Capacitance and inductance phenomenological Conductance and conductivity Power Energy Direct current circuits and the relevant computational methods Kirchoff's laws Helmholtz method Equivalent sources (voltage and current) Alternating current circuits and the relevant computational methods Time domain Frequency domain Harmonics analyzes Special AC circuits

34

Page 38: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

Parallel and serial oscillators Passive low pass and band pass filters Simple locus Reactive power compensation Three phase systems Essential measuring techniques Volt-meter Ampere-meter Watt-meter Oscilloscope Shunt Voltage divider Series resistor Essential domestic installation circuits, protective devices, elements and grounding systems Essential symbols and elements of drawings for electrical circuits Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

35

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Lecture/Seminar profile:

Electrical Engineering I (EEN1VO)

Degree course EE.ba

Course title Electrical Engineering I

Course code EEN1VO

Level Bachelor

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Basic definitions of electrical units Current Potential Field Voltage Resistance and resistivity o Temperature influence o Mechanical influence Capacitance and inductance phenomenological Conductance and conductivity Power Energy Direct current circuits and the relevant computational methods Kirchoff's laws Helmholtz method Equivalent sources (voltage and current) Alternating current circuits and the relevant computational methods Time domain Frequency domain Harmonics analyzes Special AC circuits

36

Page 40: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

Parallel and serial oscillators Passive low pass and band pass filters Simple locus Reactive power compensation Three phase systems Essential measuring techniques Volt-meter Ampere-meter Watt-meter Oscilloscope Shunt Voltage divider Series resistor Essential domestic installation circuits, protective devices, elements and grounding systems Essential symbols and elements of drawings for electrical circuits

Prerequisites:

n.a.

37

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Lecture/Seminar profile:

Electrical Engineering III (EEN3LA)

Degree course EE.ba

Course title Electrical Engineering III

Course code EEN3LA

Level Bachelor

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 1

ECTS credits 1

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Load flow calculation with matrices Load system feedback Transient system transitions Switching processes Short circuit case Unbalanced loads Zero sequence system Positive sequence system Negative sequence system Electromagnetically fields for simple geometries Magnetically fields o Governing units o Material effects o Induction o Inductance o Simple computational methods Electrically fields o Governing units o Material effects o Influencing charges o Capacity

38

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o Simple computational methods Electrical flux fields o Governing units o Material effects o Influencing charges o Resistance o Simple computational methods Special aspects of electro magnetically fields Skin effect Wave propagation Screening of EMC with special respect to slow and fast fields In general: aspects of computation of force, power, and energy for electro magnetically fields Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

Prerequisites:

n.a.

39

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Lecture/Seminar profile:

Electrical Engineering III (EEN3UE)

Degree course EE.ba

Course title Electrical Engineering III

Course code EEN3UE

Level Bachelor

Term WS19/20

Lecturer Rastko Zivanovic

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Load flow calculation with matrices Load system feedback Transient system transitions Switching processes Short circuit case Unbalanced loads Zero sequence system Positive sequence system Negative sequence system Electromagnetically fields for simple geometries Magnetically fields o Governing units o Material effects o Induction o Inductance o Simple computational methods Electrically fields o Governing units o Material effects o Influencing charges o Capacity

40

Page 44: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

o Simple computational methods Electrical flux fields o Governing units o Material effects o Influencing charges o Resistance o Simple computational methods Special aspects of electro magnetically fields Skin effect Wave propagation Screening of EMC with special respect to slow and fast fields In general: aspects of computation of force, power, and energy for electro magnetically fields Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

41

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Lecture/Seminar profile:

Electrical Engineering III (EEN3VO)

Degree course EE.ba

Course title Electrical Engineering III

Course code EEN3VO

Level Bachelor

Term WS19/20

Lecturer Rastko Zivanovic

Contact hours per week 3

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Load flow calculation with matrices Load system feedback Transient system transitions Switching processes Short circuit case Unbalanced loads Zero sequence system Positive sequence system Negative sequence system Electromagnetically fields for simple geometries Magnetically fields o Governing units o Material effects o Induction o Inductance o Simple computational methods Electrically fields o Governing units o Material effects o Influencing charges o Capacity

42

Page 46: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

o Simple computational methods Electrical flux fields o Governing units o Material effects o Influencing charges o Resistance o Simple computational methods Special aspects of electro magnetically fields Skin effect Wave propagation Screening of EMC with special respect to slow and fast fields In general: aspects of computation of force, power, and energy for electro magnetically fields

Prerequisites:

n.a.

43

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Lecture/Seminar profile:

Electrical Machines I (EMA3LA)

Degree course EE.ba

Course title Electrical Machines I

Course code EMA3LA

Level Bachelor

Term WS19/20

Lecturer Gernot Trauner

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Fundamentals of rotating and stationary electrical machines AC/DC machines transformer basic knowledge in power electronic inverters for electrical drives Construction and design of electrical machines with special respect to magnetic circuits energy, power, force, and the density of these parameter energy efficiency thermal balancing o air and water cooling insulation mechanical strength and mechanical impacts environmental impact Operational behavior of electrical machines with special respect to essential electrical and mechanical characteristics electromechanically modeling Energy efficient electrical machines and machine energy density with special respect to electro mobility applications Principles for controlling of rotating electrical machines Dimensioning of electromagnetic circuits Calculation examples for optimal drive sizing

44

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Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice Students must have: basic knowledge in electrical engineering, physics and automation

Prerequisites:

n.a.

45

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Lecture/Seminar profile:

Electrical Machines I (EMA3UE)

Degree course EE.ba

Course title Electrical Machines I

Course code EMA3UE

Level Bachelor

Term WS19/20

Lecturer Gernot Trauner

Contact hours per week 1

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals of rotating and stationary electrical machines AC/DC machines transformer basic knowledge in power electronic inverters for electrical drives Construction and design of electrical machines with special respect to magnetic circuits energy, power, force, and the density of these parameter energy efficiency thermal balancing o air and water cooling insulation mechanical strength and mechanical impacts environmental impact Operational behavior of electrical machines with special respect to essential electrical and mechanical characteristics electromechanically modeling Energy efficient electrical machines and machine energy density with special respect to electro mobility applications Principles for controlling of rotating electrical machines Dimensioning of electromagnetic circuits Calculation examples for optimal drive sizing

46

Page 50: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

Note: Attending the skills practice is only possible, if a student is also attending the lecture. Students must have: basic knowledge in electrical engineering, physics and automation

Prerequisites:

n.a.

47

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Lecture/Seminar profile:

Electrical Machines I (EMA3VO)

Degree course EE.ba

Course title Electrical Machines I

Course code EMA3VO

Level Bachelor

Term WS19/20

Lecturer Gernot Trauner

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals of rotating and stationary electrical machines AC/DC machines transformer basic knowledge in power electronic inverters for electrical drives Construction and design of electrical machines with special respect to magnetic circuits energy, power, force, and the density of these parameter energy efficiency thermal balancing o air and water cooling insulation mechanical strength and mechanical impacts environmental impact Operational behavior of electrical machines with special respect to essential electrical and mechanical characteristics electromechanically modeling Energy efficient electrical machines and machine energy density with special respect to electro mobility applications Principles for controlling of rotating electrical machines Dimensioning of electromagnetic circuits Calculation examples for optimal drive sizing

48

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Please note: Attending the lecture is only possible, if a student is also attending the laboratory and skills practice. Students must have: basic knowledge in electrical engineering, physics and automation

Prerequisites:

n.a.

49

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Lecture/Seminar profile:

Electrical Power Grids and Systems (EPG5LA)

Degree course EE.ba

Course title Electrical Power Grids and Systems

Course code EPG5LA

Level Bachelor

Term WS19/20

Lecturer Rastko Zivanovic

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Fundamentals of electrical power supply Voltage levels for electrical power supply and their purpose Topologies of electrical grids and parts of the grids (like substations) Control of the load flow and power quality in electrical grids and electrical power supply with special respect to e.g. time frame power factor harmonics switching activities ... Smart grid systems and technology Special operational situations e.g. short circuit switching synchronization ... Special aspects neutral point connection Protection concepts e.g. overvoltage, insulation coordination earth fault current short circuit

50

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... Availability with special respect to maintenance and state dependent maintenance concepts Monitoring and diagnostic applications Safety in electrical systems and apparatus electrical shock vandalism hacking Economical and ecological considerations Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

Prerequisites:

n.a.

51

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Lecture/Seminar profile:

Electrical Power Grids and Systems (EPG5UE)

Degree course EE.ba

Course title Electrical Power Grids and Systems

Course code EPG5UE

Level Bachelor

Term WS19/20

Lecturer Rastko Zivanovic

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Fundamentals of electrical power supply Voltage levels for electrical power supply and their purpose Topologies of electrical grids and parts of the grids (like substations) Control of the load flow and power quality in electrical grids and electrical power supply with special respect to e.g. time frame power factor harmonics switching activities ... Smart grid systems and technology Special operational situations e.g. short circuit switching synchronization ... Special aspects neutral point connection Protection concepts e.g. overvoltage, insulation coordination earth fault current short circuit

52

Page 56: Courses taught in English - FH OOE · AT.ba TDC5ILV_AMA Technical Design and CAD II Integrated course 5 Bachelor 3 21: ... Product Design and Technical Communication (Bachelor - Part

... Availability with special respect to maintenance and state dependent maintenance concepts Monitoring and diagnostic applications Safety in electrical systems and apparatus electrical shock vandalism hacking Economical and ecological considerations Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

53

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Lecture/Seminar profile:

Powerplants for Electrical Power Generation (GEN1VO)

Degree course EE.ba

Course title Powerplants for Electrical Power Generation

Course code GEN1VO

Level Bachelor

Term WS19/20

Lecturer Franz Daschil

Contact hours per week 3

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Introduction into power plants fossil nuclear solar wind hydro Basic economical and political considerations with respect to operational conditions operational planning liberalised markets resources o utilisation o costs waste treatment

Prerequisites:

n.a.

54

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Lecture/Seminar profile:

Introduction to Power Electronics (IPE5LA)

Degree course EE.ba

Course title Introduction to Power Electronics

Course code IPE5LA

Level Bachelor

Term WS19/20

Lecturer Gernot Trauner

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Semiconductors for power electronics types specific o operational behavior o required protection circuits o triggering and switching conditions Fundamental power electronics circuits Topologies for power electronics Heat balance of power electronic systems Relevant EMC and EMI effects and measures Special applications for Drives e.g. o electrical cars PV and wind systems DC-DC conversion high voltage energy transfer For all topics above aspects of energy efficiency should be considered Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice Students must have: basic knowledge in power electronics, electrical engineering, semi-

55

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conductors, circuits, magnetic fields

Prerequisites:

n.a.

56

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Lecture/Seminar profile:

Introduction to Power Electronics (IPE5VO)

Degree course EE.ba

Course title Introduction to Power Electronics

Course code IPE5VO

Level Bachelor

Term WS19/20

Lecturer Gernot Trauner

Contact hours per week 3

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Semiconductors for power electronics types specific o operational behavior o required protection circuits o triggering and switching conditions Fundamental power electronics circuits Topologies for power electronics Heat balance of power electronic systems Relevant EMC and EMI effects and measures Special applications for Drives e.g. o electrical cars PV and wind systems DC-DC conversion high voltage energy transfer For all topics above aspects of energy efficiency should be considered Please note: Attending the lecture is only possible, if a student is also attending the laboratory Students must have: basic knowledge in power electronics, electrical engineering, semi-conductors, circuits, magnetic fields

57

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Prerequisites:

n.a.

58

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Lecture/Seminar profile:

Mathematics I (MAT1UE)

Degree course EE.ba

Course title Mathematics I

Course code MAT1UE

Level Bachelor

Term WS19/20

Lecturer Niels Lubbes

Contact hours per week 2

ECTS credits 2,5

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Fundamentals: sets, Boolean algebra, real numbers, place-value systems, combinatorics, complex numbers Vector arithmetic: geometric introduction, vector arithmetic in the plane and the space, inner product, cross product, analytical geometry (line, plane), applications in engineering problems Matrices and linear systems of equations: sum and product of matrices, inverse matrix, determinants, solving linear systems, solution structures of linear systems Functions and curves: inverse function, composition of functions, polynomi-als, rational functions, trigonometric functions, exponential functions, loga-rithmic functions, parametric representation of curves Differential calculus: sequences, limits, derivative of a function, derivation rules, higher derivatives, characteristic plot points of curves and curve sketching, exercises with extreme values, Newton’s method, velocity and acceleration, Taylor polynomials, rule of de l’Hospital Mathematics Software: introduction to a computer algebra system and applying this software for problems listed above. Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Mathematics I (MAT1VO)

Degree course EE.ba

Course title Mathematics I

Course code MAT1VO

Level Bachelor

Term WS19/20

Lecturer Niels Lubbes

Contact hours per week 4

ECTS credits 5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals: sets, Boolean algebra, real numbers, place-value systems, combinatorics, complex numbers Vector arithmetic: geometric introduction, vector arithmetic in the plane and the space, inner product, cross product, analytical geometry (line, plane), applications in engineering problems Matrices and linear systems of equations: sum and product of matrices, inverse matrix, determinants, solving linear systems, solution structures of linear systems Functions and curves: inverse function, composition of functions, polynomi-als, rational functions, trigonometric functions, exponential functions, loga-rithmic functions, parametric representation of curves Differential calculus: sequences, limits, derivative of a function, derivation rules, higher derivatives, characteristic plot points of curves and curve sketching, exercises with extreme values, Newton’s method, velocity and acceleration, Taylor polynomials, rule of de l’Hospital Mathematics Software: introduction to a computer algebra system and applying this software for problems listed above.

Prerequisites:

n.a.

60

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Lecture/Seminar profile:

Measurement Engineering for Electrical Energy Systems (MES3LA)

Degree course EE.ba

Course title Measurement Engineering for Electrical Energy Systems

Course code MES3LA

Level Bachelor

Term WS19/20

Lecturer Franz Auinger

Contact hours per week 2

ECTS credits 3

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Fundamentals of measuring techniques definition of measurement measurement procedures measuring error o types of errors and measures data acquisition active passive sensor concepts data integration concepts of monitoring and diagnostics with respect to condition based maintenance Essential sensors, measuring techniques, and measuring circuits for electrical energy engineering e.g. electromagnetic parameter (with special respect to electrical energy engineering) temperature force, pressure flow mechanics sound, noise ... with special respect to robustness, costs, frequency response, and resolution Topology and screening effects with respect to EMC and EMI, rsp. Design of EMC robust measurement circuits Data acquisition systems and measurement system design of these systems

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Applying of a data acquisition system (e.g. NI LabView) Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

Prerequisites:

n.a.

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Lecture/Seminar profile:

Measurement Engineering for Electrical Energy Systems (MES3VO)

Degree course EE.ba

Course title Measurement Engineering for Electrical Energy Systems

Course code MES3VO

Level Bachelor

Term WS19/20

Lecturer Franz Auinger

Contact hours per week 4

ECTS credits 5

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals of measuring techniques definition of measurement measurement procedures measuring error o types of errors and measures data acquisition active passive sensor concepts data integration concepts of monitoring and diagnostics with respect to condition based maintenance Essential sensors, measuring techniques, and measuring circuits for electrical energy engineering e.g. electromagnetic parameter (with special respect to electrical energy engineering) temperature force, pressure flow mechanics sound, noise ... with special respect to robustness, costs, frequency response, and resolution Topology and screening effects with respect to EMC and EMI, rsp. Design of EMC robust measurement circuits Data acquisition systems and measurement system design of these systems

63

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Applying of a data acquisition system (e.g. NI LabView)

Prerequisites:

n.a.

64

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Lecture/Seminar profile:

Materials for Electrical Engineering (MFE3VO)

Degree course EE.ba

Course title Materials for Electrical Engineering

Course code MFE3VO

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 3

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Materials and their properties with special respect to magnetism insulation conduction of electricity and heat electrical and thermal contacts frequency response applications for electrical apparatus Simple modeling of material properties Physics behind material properties

Prerequisites:

n.a.

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Lecture/Seminar profile:

Patents and Standardisation (PAS5ILV)

Degree course EE.ba

Course title Patents and Standardisation

Course code PAS5ILV

Level Bachelor

Term WS19/20

Lecturer Michael Stadler

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Searching for, accessing and working with existing patents and standards. Fundamentals of the Management of Property Rights including: Registration of property rights and patents Contracts and legal disputes Inventions of employees Fundamentals of Standards, including: Products of standardizations Actors in standardisations National, regional and international standards What is a patent/standard? Granting of patents/standardisation as a process Products of and actors in standardisation Actors involved in the granting of patents National, regional and international patents/standards Searching for, accessing and working with patents/standards

Prerequisites:

n.a.

66

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Lecture/Seminar profile:

Programming (PRG1UE)

Degree course EE.ba

Course title Programming

Course code PRG1UE

Level Bachelor

Term WS19/20

Lecturer Peter Bauer, Matthias Braun

Contact hours per week 1

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 9

Learning objectives:

n.a.

Content:

Basic introduction into programming (preferably C#): data types, basic control structures (if, if-else, switch-case, loop-constructs) at the procedural level. Ready-made classes shall be used (DateTime, File-IO, …), but not be written. Introduction into programming techniques. Programming, testing and debugging of small projects. Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Programming (PRG1VO)

Degree course EE.ba

Course title Programming

Course code PRG1VO

Level Bachelor

Term WS19/20

Lecturer Peter Bauer

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basic introduction into programming (preferably C#): data types, basic control structures (if, if-else, switch-case, loop-constructs) at the procedural level. Ready-made classes shall be used (DateTime, File-IO, …), but not be written. Introduction into programming techniques. Programming, testing and debugging of small projects.

Prerequisites:

n.a.

68

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Lecture/Seminar profile:

Project Management (PRM3ILV)

Degree course EE.ba

Course title Project Management

Course code PRM3ILV

Level Bachelor

Term WS19/20

Lecturer Markus Feistritzer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Project management as business process project manual methods to manage projects o methods for the project start project framework and context design of the project organization project planning o project coordination o project controlling o project marketing o project crises o project end Survey on project based organizations Project management software tools for the items mentioned above

Prerequisites:

n.a.

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Lecture/Seminar profile:

Production Processes (PRP1VO)

Degree course EE.ba

Course title Production Processes

Course code PRP1VO

Level Bachelor

Term WS19/20

Lecturer Georg Haberz

Contact hours per week 2

ECTS credits 2

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Forming, shaping and molding processes with special respect to metallic and non metallic materials and applications for electrical apparatus e.g.: casting bending punching machining (drilling, milling, turning,...)molding deep-drawing welding sintering soldering clueing riveting flanging folding Manufacturing of bimetals Surface treatment Metal surfaces on non metal materials and vice versa ... Painting with special respect to insulation properties

Prerequisites:

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n.a.

71

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Lecture/Seminar profile:

Communication with intercultural aspects (SSK1SE)

Degree course EE.ba

Course title Communication with intercultural aspects

Course code SSK1SE

Level Bachelor

Term WS19/20

Lecturer Gerhard Peter Krejci, Nadja Walser, Vanessa Prüller

Contact hours per week 2

ECTS credits 1,5

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 13

Learning objectives:

n.a.

Content:

Communication theory basics (e.g. Paul Watzlawick, Schulz von Thun) Significance of perception within communication (e.g. perception filters, canals, distortion) Cross culture communication and intercultural cooperation Guide lines for constructive feedback Development of a team spirit in the group Working out group rules Time and working organisation with respect to learning and working strate-gies

Prerequisites:

n.a.

72

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Lecture/Seminar profile:

Technical Drawings (TDR1ILV)

Degree course EE.ba

Course title Technical Drawings

Course code TDR1ILV

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 9

Learning objectives:

n.a.

Content:

Primary techniques in engineering drafting practices application, manual drafting, drawing of milled and shaped work pieces, castings and welded structures, basic standards, use pictorial drafting techniques as a tool for communication, visualisation, critical thinking and problem solving, basics of electrical wiring diagrams

Prerequisites:

n.a.

73

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Lecture/Seminar profile:

German Language A 1.1 (DAF_A1.1_UE)

Degree course FWE

Course title German Language A 1.1

Course code DAF_A1.1_UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

1. Introductions, greetings/verb conjugation (ich/du) and preposition aus 2. Family and Friends/personal pronouns, verb conjugation (leben, haben), preposition in, numbers 0-20 3. Eating and Drinking, food, shopping, prices, measurement units/indefinite article, negative article, plurals, verb: essen, numbers 21-100 4. My flat/apartment/domestic vocabulary, numbers 101-1,000,000, definite articles, personal pronouns, negation 5. Mein Tag/My Day: telling the time, daily activities, days of the week/separable verbs, verb position in sentence, prepositions: am, um, von…bis 6. Free time: the weather, seasons, in a restaurant, agreeing and disagreeing, hobbies/ accusative, verb conjugations: lessen, treffen, schlafen, fahren, nehmen, ‘möchte’ 7. Life-long Learning: expressing capabilities, intentions, describing past events and activities, learning skills/modal verbs, Perfect with to be, Perfect with to have… Lehrbuch: Schritte International 1, Niebisch, Hueber Verlag

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language A 2.1 (DAF_A2.1_UE)

Degree course FWE

Course title German Language A 2.1

Course code DAF_A2.1_UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

1. Getting to know each other, travel experiences, family tree, talking about your family, accommodation / subordinating conjunction: weil, Perfect Tense of separable and inseparable verbs, genitive with names, von, bei. 2. At home: addresses, locations, conversations with neighbours, two-case prepositions and verbs with them, directional adverbs: rein, raus, runter… 3. Guten Appetit!: breakfast, in a restaurant, private invitations / nominative and accusative indefinite pronouns 4. The World of Work: giving advice, expressing conditions, telephone conversations at work, characteristics for different careers /Subjunctive: sollte, conjunction wenn 5. Sport: health tips, expressing feelings, telephone enquiries / reflexive verbs, verb + preposition, question-words with prepostions 6. Education and Career: describing your career path, expressing opinion, describing and discussing school systems, further and higher education, interviews / Simple Past of modal verbs, conjunction: ,dass… 7. Celebrations and Presents: presents, vouchers, weddings, planning a celebration / Dative object, position of objects Lehrbuch: Schritte International 3, Niebisch, Hueber Verlag

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language B 1.1 (DAF_B1.1_UE)

Degree course FWE

Course title German Language B 1.1

Course code DAF_B1.1_UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

1. Happiness in Everyday Life: reporting the past, newspaper reports / Conjunction: als, Irregular verbs past tense, Pluperfect tense. 2. Entertainment: Star Wars. Describing people and things, expressing contrast. Television. Grammar: subordinating conjunction obwohl, relative pronouns and sentences, adverbs of degree: ziemlich… 3. Keeping fit: Relaxation Exercises. Advice and Recommendations. At the Doctor. Health. Genitive, Present Passive Voice. Present Passive with Modal verb müssen 4. Languages: Subjunctive. Not understandiing something. Justification. Understanding a literary text. Conjunction wenn. Preposition wegen. Conjunctions: darum, deswegen etc. 5. Career, Job and Internship: Teamwork, Business Ideas, Written job applications, telephone applications. Infinitive with zu: Ich habe keine Lust, Ärger zu bekommen. Nicht/nur brauchen+infinitive mit zu. 6. Customer Wishes: speaking about holiday/vacation wishes and statistics. Good intentions. Holiday/vacation destinations. Dream Holiday/Vacation. Sales Conversations. Grammar: um…zu+infinitive, Conjunction: damit. statt…zu, ohne…zu…Expressions with Es… 7. Our Home: The Dream Flat/Apartment. Neijghbours. Weekend Relationships. Grammar: two-part conjunctions: nicht nur…sondern auch; entweder….oder etc. Subjunctive: Hätte ich…Verbs with prepositions (e.g. warten auf…), Preposition trotz Lehrbuch: Schritte International, Niebisch, Hueber Verlag

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Lecture/Seminar profile:

German Language B 2.1 (DAF_B2.1_UE)

Degree course FWE

Course title German Language B 2.1

Course code DAF_B2.1_UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Menschen/Sprache/Orte/Konsum/Zukunft Grammar: Adjectives, verbs, the sentence, Reporting the Past and Negation, Subjunctive II Lehrbuch: EM neu Hauptkurs Niveaustufe B2, Hueber

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language C 1.1 (DAF_C1.1_UE)

Degree course FWE

Course title German Language C 1.1

Course code DAF_C1.1_UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Lehrbuch: EM neu Hauptkurs Niveaustufe C1, Hueber, 2008 1.Types of word, completing statements, curiosities, forms of indirect speech, verbs of speaking, prepositions, clauses with wie, types of text, keywords in texts, reading strategies, daily newspapers 2. The bank, cost of living, bank business, two-part conjunctions, modal particles in questions and statements, meaning of modal particles, composites, formal and informal letters 3. Adjectives, describing photos, giving a short lecture, suffixes of adjectives, constructing adjectives, correcting mistakes, adjectives of character, adjectives with pre-and suffixes, composite adjectives, word-building with adjectives, article and adjective endings, problem-solving 4. Idioms and Expressions, rules of behaviour when invited somewhere, formal letters, saying du or Sie, es as a pronoun, use of es in speech, advanced verbs, verbs of speech. 5. Vivid idioms, describing photos, prefixes ent-, miss-, zer-, genitive, listening strategies, terminology, idioms with Herz, Geist, Seele, Verstand

Prerequisites:

n.a.

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Lecture/Seminar profile:

Digital Product Development (DPE5VO)

Degree course IPM.ba

Course title Digital Product Development

Course code DPE5VO

Level Bachelor

Term WS19/20

Lecturer Christian Zehetner

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Basics of the conceptualization and evaluation of product variants • Computer based design and construction • Concept-modelling technologies • Modelling of free-form surfaces • Technical prototype and model construction • Virtual Prototyping and digital Mock-Ups • Virtual and Augmented Reality

Prerequisites:

n.a.

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Lecture/Seminar profile:

English (ENG1UE)

Degree course IPM.ba

Course title English

Course code ENG1UE

Level Bachelor

Term WS19/20

Lecturer Peter Stanley Orgill, Mark Hiebert

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations oral or written examination

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Business/General Functional situations: Introductions/Meeting people Introducing yourself and other people Socialising/social conversation Meeting someone at the airport Asking for and giving directions Countries Describing peoples and their customs/cultural awareness Describing the economy Describing jobs/companies (structure and layout/directions) Daily (Work) Routine Technical Simple electrical and mechanical engineering processes and vocabulary Basic/Simple short Presentations: informative(companies) GRAMMAR Question forms Present Tenses Talking about the past Past tenses(Simple past/ present perfect)

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Basics of Marketing/market research etc. Passive for technical processes Prepositions (time and place)

Prerequisites:

n.a.

83

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Lecture/Seminar profile:

English III (ENG3UE)

Degree course IPM.ba

Course title English III

Course code ENG3UE

Level Bachelor

Term WS19/20

Lecturer Stephan Greenway, Mark Hiebert

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations oral or written examination

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Management and Leadership describing plant and processes Prepositions Presentations (business and technical): mech. eng vocab/articles Presenting new products Product development Passive Economics/technology/current affairs Articles (for discussion, vocabulary work) Problem solving: dealing with problems: complaining and apologising/ finding solutions (business economics vocab and tasks Relative pronouns

Prerequisites:

n.a.

84

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Lecture/Seminar profile:

English V (ENG5UE)

Degree course IPM.ba

Course title English V

Course code ENG5UE

Level Bachelor

Term WS19/20

Lecturer Mark Hiebert

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Sales and NEGOTIATIONS meetings and presentations General topical issues/articles for discussion/vocabulary building possible topics: health, media,politics, Europe, education, work and unemployment (causes and solutions), general economic, business and technological trends (e.g. mobile phones and health.) General topical issues, news and current affairs articles as above for vocabulary-building and discussion Writing Reports/Abstracts/Thesis Abstracts Project Management Thesis abstracts Films+ discussion Future technologies articles Short story/ies + discussion

Prerequisites:

n.a.

85

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Lecture/Seminar profile:

Project Management (PRM3IL)

Degree course IPM.ba

Course title Project Management

Course code PRM3IL

Level Bachelor

Term WS19/20

Lecturer Markus Feistritzer

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Project management as a business process Project manual Methods for the management of projects o Methods for starting a project Project limitation and project context Design of the project organisation Project planning o Methods for project coordination o Methods for project controlling o Methods for project marketing o Methods for the management of project crises o Methods for project completion, Management of project-oriented organisations (overview)

Prerequisites:

n.a.

86

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Lecture/Seminar profile:

Finite Elements (FEM5SE)

Degree course MB.ba

Course title Finite Elements

Course code FEM5SE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Seminar

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Individual assignment dealing with a practical computational task from the field of structural mechanics using FEM.

Prerequisites:

n.a.

87

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Lecture/Seminar profile:

Finite Elements (FEM5UE)

Degree course MB.ba

Course title Finite Elements

Course code FEM5UE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Practice-oriented session

Examinations written examination

Language of instruction English

Places for international students 15

Learning objectives:

n.a.

Content:

Introduction to the classical workflow of an FEA (pre-processing, job-management, post-processing). Introduction to a commonly used software tools.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Finite Elements (FEM5VO)

Degree course MB.ba

Course title Finite Elements

Course code FEM5VO

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Introduction to the finite element method, basic ideas and applications from structural mechanics, local shape--functions, element types, linear and nonlinear problems, fatigue analysis with finite elements

Prerequisites:

n.a.

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Industrial Project Work (IPR5PT)

Degree course MB.ba

Course title Industrial Project Work

Course code IPR5PT

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 5

Course type Project

Examinations written examination

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Putting into praxis the content of the theoretical courses by solving an advanced industrial task formulation within a team. Undergraduate level.

Prerequisites:

n.a.

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Interdisciplinary project work 2 (IPA5PT)

Degree course MKT.ba

Course title Interdisciplinary project work 2

Course code IPA5PT

Level Bachelor

Term WS19/20

Lecturer Daniel Heim

Contact hours per week 3

ECTS credits 4

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Preferential objectives of this course are: • to comprehend technical and organisational coherences and apply integral approaches • identify and structure problems and to develop creative strategies for their solutions • to develop co-operative and communicative competences and conflict management ability • to develop readiness to act and to assume responsibility • realisation of the acquired knowledge within practical problems These objectives require that the projects are organised as team work. The topics of these multidisciplinary and applied projects correspond with the branches of Material- and Processing Technology and are in accordance with the student’s knowledge acquired in the proceeding semesters. A high value is set on practical definition of the projects, if possible topics in cooperation with industry are chosen. As and when required the laboratory equipment of the course study is used

Prerequisites:

alle vorangehenden Lehrveranstaltungen des Studiengangs

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Material and Production Engineering Seminar (MRE5SE)

Degree course MKT.ba

Course title Material and Production Engineering Seminar

Course code MRE5SE

Level Bachelor

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Seminar

Examinations continuous assessment

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Selected chapters of materials science and production engineering (topics 1st Bachelor thesis); Introduction to scientific methods and work; Working with scientific literature;

Prerequisites:

alle vorangehenden Lehrveranstaltungen des Studiengangs

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Research Project (FP5PT)

Degree course VTP.ba

Course title Research Project

Course code FP5PT_Gr.V

Level Bachelor

Term WS19/20

Lecturer Albert Angerbauer, Wilfried Preitschopf, Christof Lanzerstorfer

Contact hours per week 2

ECTS credits 5

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Each student has to solve a problem related to the process industry. The problem has been selected by the supervisor. The student has to prepare comprehensive project documentation.

Prerequisites:

n.a.

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Project Management (PRM3ILV)

Degree course VTP.ba

Course title Project Management

Course code PRM3ILV_Gr.V

Level Bachelor

Term WS19/20

Lecturer David Kronawettleitner

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Basics of project management Organisation of projects Different strategies for doing a project Planning and definition of a project Planning of the monetary resources of a project Project execution and conclusion of a project Team-dynamic aspects Tools for project management and project documentation

Prerequisites:

n.a.

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Process Engineering (PRT1VO)

Degree course VTP.ba

Course title Process Engineering

Course code PRT1VO_Gr.V

Level Bachelor

Term WS19/20

Lecturer Christof Lanzerstorfer

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Flow diagrams in process engineering (basic flow diagram, process flow diagram, piping & instrument diagram) Mass and material balances Energy balances

Prerequisites:

keine

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Chemical Engineering - Reaction Engineering (VT5LB)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5LB_Gr.V

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1,5

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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Chemical Engineering - Reaction Engineering (VT5UE)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5UE_Gr.V

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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Chemical Engineering - Reaction Engineering (VT5VO)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5VO_Gr.V

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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English II (ENG3UE)

Degree course PDK.ba

Course title English II

Course code ENG3UE

Level Bachelor

Term WS19/20

Lecturer Tina Wieden

Contact hours per week 1,5

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Communication Practice/ listening and speaking - Language of socialising/small talk, business travel (telephoning, air travel, hotel, business introductions, cultural awareness, countries and customs), topical discussion (news) Description of the economy, companies, comparison and contrast of jobs. MEETINGS:Language for chairing and participating in business meetings Management and Leadership Describing plant and processes Product design and development Economics/technology/current affairs articles (for discussion, vocabulary work) Explanation and discussion of Business Vocabulary/topics: -Industries and types of company -Advertising and Media -Buying and Selling Basics of Marketing/market research Communicative grammar practice: Present and Past Present Past tenses(Simple past/ present perfect) Passive for technical processes Prepositions (time and place)

Prerequisites:

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Schulenglisch+, erstes und weitere Semester

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English IV:English for technical communicators (ENG5UE)

Degree course PDK.ba

Course title English IV:English for technical communicators

Course code ENG5UE

Level Bachelor

Term WS19/20

Lecturer Georg Löckinger

Contact hours per week 0,75

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Oral and written language skills, with a focus on topics for technical communicators: instructions for use, controlled natural languages, rule-based writing, etc. Prerequisites: English language skills at university level

Prerequisites:

n.a.

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(INF1UE)

Degree course PDK.ba

Course title Information Technology

Course code INF1UE

Level Bachelor

Term WS19/20

Lecturer Markus Jäger

Contact hours per week 1,5

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction German/English

Places for international students 10

Learning objectives:

n.a.

Content:

Use of standard software for product documentation: - Basics of hardware, software, networks and security - Creation of professional documents - Creation of a simple website - Spreadsheet: Create simple calculations and charts to visualize data.

Prerequisites:

n.a.

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(INF1VO)

Degree course PDK.ba

Course title Informationstechnologie

Course code INF1VO

Level Bachelor

Term WS19/20

Lecturer Markus Jäger

Contact hours per week 0,75

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Use of standard software for product documentation: - Basics of hardware, software, networks and security - Creation of professional documents - Creation of a simple website - Spreadsheet: Create simple calculations and charts to visualize data.

Prerequisites:

n.a.

103

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(PP5UE)

Degree course PDK.ba

Course title Prototypes and Programming Basics

Course code PP5UE

Level Bachelor

Term WS19/20

Lecturer Jean D. Hallewell Haslwanter

Contact hours per week 2,25

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics of programming to create simple prototypes (VB or C#): - Graphical user interfaces - Programming Event Handlers - Creating variables in methods and globally or in classes (only main data types) - Convert, review, and format inputs and outputs - Case distinction (if / else) - Important classes (e.g. MessageBox, Timer) - Depending on time further topics for simulation: grinding, own methods

Prerequisites:

Basics of programming

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(PP5VO)

Degree course PDK.ba

Course title Prototypes and Programming Basics

Course code PP5VO

Level Bachelor

Term WS19/20

Lecturer Jean D. Hallewell Haslwanter

Contact hours per week 0,75

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics of programming to create simple prototypes (VB or C#): - Graphical user interfaces - Programming Event Handlers - Creating variables in methods and globally or in classes (only main data types) - Convert, review, and format inputs and outputs - Case distinction (if / else) - Important classes (e.g. MessageBox, Timer) - Depending on time further topics for simulation: grinding, own methods

Prerequisites:

Basics of programming

105

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Lecture/Seminar profile:

Software Ergonomics (SOE3VO)

Degree course PDK.ba

Course title Software Ergonomics

Course code SOE3VO

Level Bachelor

Term WS19/20

Lecturer Jean D. Hallewell Haslwanter

Contact hours per week 0,75

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Learn about usability tests • Plan and do informal usability tests in small groups

Prerequisites:

n.a.

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Research Project (FP5PT)

Degree course VTP.ba

Course title Research Project

Course code FP5PT_Gr.B

Level Bachelor

Term WS19/20

Lecturer Albert Angerbauer, Wilfried Preitschopf, Christof Lanzerstorfer

Contact hours per week 2

ECTS credits 5

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Each student has to solve a problem related to the process industry. The problem has been selected by the supervisor. The student has to prepare comprehensive project documentation.

Prerequisites:

n.a.

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Project Management (PRM3ILV)

Degree course VTP.ba

Course title Project Management

Course code PRM3ILV_Gr.B

Level Bachelor

Term WS19/20

Lecturer David Kronawettleitner

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Basics of project management Organisation of projects Different strategies for doing a project Planning and definition of a project Planning of the monetary resources of a project Project execution and conclusion of a project Team-dynamic aspects Tools for project management and project documentation

Prerequisites:

n.a.

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Process Engineering (PRT1VO)

Degree course VTP.ba

Course title Process Engineering

Course code PRT1VO_Gr.B

Level Bachelor

Term WS19/20

Lecturer Christof Lanzerstorfer

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Flow diagrams in process engineering (basic flow diagram, process flow diagram, piping & instrument diagram) Mass and material balances Energy balances

Prerequisites:

keine

109

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Lecture/Seminar profile:

Chemical Engineering - Reaction Engineering (VT5LB)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5LB_Gr.B

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1,5

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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Chemical Engineering - Reaction Engineering (VT5UE)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5UE_Gr.B

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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Chemical Engineering - Reaction Engineering (VT5VO)

Degree course VTP.ba

Course title Chemical Engineering - Reaction Engineering

Course code VT5VO_Gr.B

Level Bachelor

Term WS19/20

Lecturer Wilfried Preitschopf

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Chemical thermodynamics, reaction kinetics, ideal reactors, thermal modes of operation of reactors, non-ideal flow behaviour of real reactors, heterogeneous reaction systems, combination of reaction and mass transfer; computer-aided calculation methods Laboratory exercises for the thermal and chemical process engineering

Prerequisites:

Mathematics 1 and 2, Heat and Mass Transfer, Thermodynamics and Process Engineering

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Lecture/Seminar profile:

Contract Law (CL1VO)

Degree course AB.ma

Course title Contract Law

Course code CL1VO_Gr.V

Level Master

Term WS19/20

Lecturer Armin Toifl

Contact hours per week 2

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basic knowledge of foreign legal systems International commercial law, Uniform Law (UNIDROIT, UN Sales Convention/CISG) Trade practices and trade terms, Incoterms Important types of contracts (especially developer contract, construction contract, contract, investment contract, license, freight forwarding and transport contract, employment contract, cooperative agreement, contract of insurance) Arbitration, penalties International payments and payment security, and performance and credit protection

Prerequisites:

n.a.

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Lecture/Seminar profile:

Energy project development (19_EPD1IL)

Degree course AET.ma

Course title Energy project development

Course code 19_EPD1IL

Level Master

Term WS19/20

Lecturer Daniel Gudopp

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Understanding Energy Markets Project Scale Decission Factors Procurement Options Role of the Project Team Environment Secure Supply Independence Economic Feasibility

Prerequisites:

n.a.

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Scientific Programming (19_SCP1IL)

Degree course AET.ma

Course title Scientific Programming

Course code 19_SCP1IL

Level Master

Term WS19/20

Lecturer Michael Steinbatz

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Prerequisites:

Prerequisite: Professional qualification in programming (2 ECTS), mathematics (6 ECTS), mechanics (3 ECTS), electrical engineering (3 ECTS)

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Scientific Programming (19_SCP1PT)

Degree course AET.ma

Course title Scientific Programming

Course code 19_SCP1PT

Level Master

Term WS19/20

Lecturer Michael Steinbatz

Contact hours per week 1

ECTS credits 2

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

Prerequisites:

Prerequisite: Professional qualification in programming (2 ECTS), mathematics (6 ECTS), mechanics (3 ECTS), electrical engineering (3 ECTS).

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Control Engineering (19_SRT1LU)

Degree course AET.ma

Course title Control Engineering

Course code 19_SRT1LU

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

the lecture material is enhanced/extended by use of examples/experiments

Prerequisites:

Prerequisite: Professional qualification in Electrical Engineering (6 ECTS), Measurement Technology (2 ECTS)

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Control Engineering (19_SRT1VO)

Degree course AET.ma

Course title Control Engineering

Course code 19_SRT1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 3

ECTS credits 3,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals: control variables, control loop, controllers, introduction to control engineering, PID-controller, controller design, Modelling using examples of simple systems feedforward control in buildings

Prerequisites:

Prerequisite: Professional qualification in Electrical Engineering (6 ECTS), Measurement Technology (2 ECTS)

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Lecture/Seminar profile:

Building Simulation (GSM3LB)

Degree course AET.ma

Course title Building Simulation

Course code GSM3LB

Level Master

Term WS19/20

Lecturer Christoph Reichl, Renate Teppner, Philip Horn

Contact hours per week 2

ECTS credits 2,5

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

The lecture material is enhanced/extended by use of examples/experiments

Prerequisites:

Prerequisite: Professional qualification in building construction (3 ECTS), thermal building physics (3 ECTS), building services engineering (HVAC – heating, ventilation, air conditioning) (4 ECTS)

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Building Simulation (GSM3VO)

Degree course AET.ma

Course title Building Simulation

Course code GSM3VO

Level Master

Term WS19/20

Lecturer Christoph Reichl, Renate Teppner, Philip Horn

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Simulation of building systems with dynamic simulation software (eg. TRNSYS and/or FLUENT), Comparison with static calculation models, application of knowledge about building envelope and building service systems, input parameters, options and limits of building simulation systems, optimization of the planning process of buildings by the means of examples Prerequisite: Professional qualification in building construction (3 ECTS), thermal building physics (3 ECTS), building services engineering (HVAC – heating, ventilation, air conditioning) (4 ECTS)

Prerequisites:

Prerequisite: Professional qualification in building construction (3 ECTS), thermal building physics (3 ECTS), building services engineering (HVAC – heating, ventilation, air conditioning) (4 ECTS)

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Solar Thermal Power Stations (SKW3PT)

Degree course AET.ma

Course title Solar Thermal Power Stations

Course code SKW3PT

Level Master

Term WS19/20

Lecturer Rudolf Kraft

Contact hours per week 1

ECTS credits 2

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Prerequisite: Professional qualification in heat transfer (2 ECTS), fluid dynamics (2 ECTS), heat technology (3 ECTS)

Prerequisites:

Prerequisite: Professional qualification in heat transfer (2 ECTS), fluid dynamics (2 ECTS), heat technology (3 ECTS)

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Solar Thermal Power Stations (SKW3VO)

Degree course AET.ma

Course title Solar Thermal Power Stations

Course code SKW3VO

Level Master

Term WS19/20

Lecturer Rudolf Kraft, Markus Haider

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Prerequisites:

Prerequisite: Professional qualification in heat transfer (2 ECTS), fluid dynamics (2 ECTS), heat technology (3 ECTS)

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Automotive IT Systems 1 (AIT1VO)

Degree course AMM.ma

Course title Automotive IT Systems 1

Course code AIT1VO

Level Master

Term WS19/20

Lecturer Thomas Schlechter

Contact hours per week 1

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Static (e.g. arrays) and dynamic (e.g. lists, trees) data structures • Specification of interfaces to procedural and object-oriented pro-grams • Introduction to program design • Procedures and functions, handling data • Data abstraction, class libraries • Tests and performing for SW performance and correctness

Prerequisites:

Basic knowledge programming

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Lecture/Seminar profile:

Automotive IT Systems 3 (AIT3IL)

Degree course AMM.ma

Course title Automotive IT Systems 3

Course code AIT3IL

Level Master

Term WS19/20

Lecturer Thomas Schlechter, Thomas Hatheier

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• real time operating systems in motor vehicles • IT-systems in the vehicle o overview o cooperation of systems • Car2x communication o Car-2-Car (C2C) o Car-2-Infrastructure (C2I) o Technicak standards (802.11p bzw. LTE) o Car2x based services o opportunities and risks

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Driving Assistance Systems (DAS3IL)

Degree course AMM.ma

Course title Driving Assistance Systems

Course code DAS3IL

Level Master

Term WS19/20

Lecturer Christian Zehetner, Thomas Schlechter

Contact hours per week 3

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Driver Support Systems: o speed and distance regulators, parking systems, naviga-tion systems with additional functions • Safety Systems: o collision warning, braking assistance, lane leaving warn-ing, lane change warning, bend-tracking lights, night vi-sion • Environment Sensors: o radar distance-and near field, lasar, camera, utra-sound • Actuators: o brake hydraulics, automatic handbrake, steering actua-tors, engine/gear steering • Functional Aspects: o HMI (indication/operating concept) o safety considerations o system networking o package, design o testing, trial

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Business Creation & Business Planning (EBC3IL)

Degree course AMM.ma

Course title Business Creation & Business Planning

Course code EBC3IL

Level Master

Term WS19/20

Lecturer MAK 1 Dummy L2

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

This course is introduction to the fundamentals of business creation and business planning: its basic processes, overarching strategies as well as the resulting products and services. Important tools for the innovation challenge are prototypes and business models. These tools support business developers and innovators to qualify opportunities, get feedback and attract support from stakeholders

Prerequisites:

AMM404, AMM406, AMM407

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Lecture/Seminar profile:

Innovation Management (INM1IL)

Degree course AMM.ma

Course title Innovation Management

Course code INM1IL

Level Master

Term WS19/20

Lecturer Kurt Gaubinger, Michael Rabl

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Objectives of R&D, technology management and innovation management • Innovation management framework o Overview and structure o Initiation of ideas o Idea generation o Creativity generation techniques o Concept phase o Market launch • Success factors for technology and innovation management • Stage-gate processes and evaluation methods • Functions and roles in technology and innovation management • Innovation-promoting corporate organisation • Measures for an innovation-friendly corporate culture • Strategic foresight • Future trends in automotive industries • Open Innovation, Customer Integration, and Innovation Networks • Technology Roadmaps, Portfolios and other Tools for Managing Innovation Portfolios

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Business Law & Intellectual Property Rights (LAW3VO)

Degree course AMM.ma

Course title Business Law & Intellectual Property Rights

Course code LAW3VO

Level Master

Term WS19/20

Lecturer Gabriel Ebner

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Intellectual property right, competition law, non-disclosure agree-ments, inventions • Guarantee and warranty, product liability, industrial safety, trade law • Trade marks, models and patents, homologation, ECE, FMVSS • Licenses, general terms and conditions, exclusion of liability • Regulations under public law, expiration of trade marks, models and patents

Prerequisites:

AMM404, AMM406, AMM407

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Lecture/Seminar profile:

Mechatronic Systems Validation (MSV3IL)

Degree course AMM.ma

Course title Mechatronic Systems Validation

Course code MSV3IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Sensitivity for the significance of the validation and safety of mechatronic systems • Differentiation functional validation and long-term safety • Methods and tools for the validation of mechatronic systems o system tests for load, climate and electromagnetic com-patibility o reliability and safety tests of the system o functional validation on the HIL, test station, vehicle field test of the end product according to customer require-ments o test statistics • Planning, measuring and evaluation of tests of mechatronic sys-tems

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

New Product Development (NPD1IL)

Degree course AMM.ma

Course title New Product Development

Course code NPD1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

- CAE in the motor vehicle industry (overview, connections, interfaces) - Development methods for mechatronic systems „V Model“; VDI 2206: • Requirements for Development • Specifications • System and Product Design • Model Formation and Simulation (FEM, CFD, MKS, …) • Domain-Specific Component Draft • Prototypes • Component Integration • Module Test • System Integration (Hardware) • System Integration (Software) • System and Product Tests • Production and Market Tests.

Prerequisites:

Basic knowledge programming

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Lecture/Seminar profile:

Production Management (PRM1UE)

Degree course AMM.ma

Course title Production Management

Course code PRM1UE

Level Master

Term WS19/20

Lecturer

Contact hours per week 0,75

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Business game: simulation of s production facility and optimizing by means of applying lean production tools

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Production Management (PRM1VO)

Degree course AMM.ma

Course title Production Management

Course code PRM1VO

Level Master

Term WS19/20

Lecturer Martin Jordan

Contact hours per week 1,25

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Logistics and Supply-Chain Management • Cooperation of Development, Purchasing and Production • Basics of Production organization • Lean Production as philosophy, • Lean Production Tools • Value-Stream-Analysis, Value-Stream-Design • Optimization of administrative processes

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Automotive Quality Management 1 (QMA1IL)

Degree course AMM.ma

Course title Automotive Quality Management 1

Course code QMA1IL

Level Master

Term WS19/20

Lecturer Thomas Junggeburth

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Quality management basics: o principles of quality management o Quality objectives (VDA 11) o Organizational structure and sequences (processes and responsibilities) o Documents and records (relevant information - VDA 1) o Control loops within quality management (management review and audit) o Business Operating System CQI -5 o Quality cost calculation (cost of conformity - and cost of nonconformity) o Cost of poor quality CQI-22 • Automotive quality management: o DIN ISO 9001 general quality management standard o ISO/TS 16949 automotive quality management standard

Prerequisites:

Basic knowledge programming

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Lecture/Seminar profile:

Sensors and Actuators (SAC1IL)

Degree course AMM.ma

Course title Sensors and Actuators

Course code SAC1IL

Level Master

Term WS19/20

Lecturer Thomas Schlechter

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Basics of sensor technology and actuating devices • Basics of measurement and process data acquisition and data processing • Basics of control technology and its application • Specific sensors in vehicles (termperature, pressure, flow, gas, etc.) • Virtual sensors • Basic principles of actuators (type of power generation) • Specific actuators in vehicles • Modelling of sensors and actuators

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Model based Engineering 1 (SIM1VO)

Degree course AMM.ma

Course title Model based Engineering 1

Course code SIM1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 1,5

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Concepts of system theory and modelling o system theory o system concepts o modelling concepts • Modelling process • Modelling o mechanical system o electrical system o thermodynamic system o linked system • Transfer function and transfer elements • System characteristics • Basics and processes of analogue regulation technology o parameters of the control circuit o frequency parameter processes o state regulation • State space representation of mechatronic systems o analysis of the dynamic behaviour in the state space o design and implementation of linear state regulators o design and implementation of linear state observers • Numerical simulation

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o concentrated/distributed parametric dynamic systems o processes and faults • Simulation (i.e.. MATLAB, SIMULINK, ASCET)

Prerequisites:

Basic mathematics of regulation technology (Laplace), Basic Matlab,...

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Lecture/Seminar profile:

Model based Engineering 2 (SIM3VO)

Degree course AMM.ma

Course title Model based Engineering 2

Course code SIM3VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 1,67

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Basics of linear and non-linear systems o stability behaviour o linearisation, basics of regulator design • Theoretical realtime systems (realtime verification) • Making of realtime models from mechanical, electrical and thermic systems • “Software in the Loop“ (SIL) and “Hardware in the Loop” (HIL) • Mathematical consideration of safety, reliability and availability of system components and complete systems • Monitoring of mechatronic systems and fault diagnosis (interface to IT)

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Vehicle Components & Driving Dynamics (VCD1IL)

Degree course AMM.ma

Course title Vehicle Components & Driving Dynamics

Course code VCD1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 3,5

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Motor vehicle architecture concepts • Motor vehicle categorisation • Tyres • Motor vehicle dynamics • Chassis • Steering systems • Brakes • Handling and driving dynamics

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Virtual and Augmented Reality (VRC3IL)

Degree course AMM.ma

Course title Virtual and Augmented Reality

Course code VRC3IL

Level Master

Term WS19/20

Lecturer Christian Zehetner

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Software tools for Virtual and Augmented Reality (VisMockUp, RTT, VDP, Fraunhofer IFF,…) • Data structure and –formats for the virtual reality software from IC-IDO • Design Reviews, Digital Mock Up, mountability reviews in the CAVE • Virtual Reality - Augmented Reality applications • Mixed Reality for assembly simulation, reachability • Virtual testing

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Automation Engineering Project (APT3PT)

Degree course AT.ma

Course title Automation Engineering Project

Course code APT3PT

Level Master

Term WS19/20

Lecturer

Contact hours per week 8

ECTS credits 10

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Pre-requisites vary across different projects. Requires independent, proactive, reliable and self-contained work throughout the semester. Project tasks will be presented, student groups coordinate amongst themselves and work autonomously, guidance available if requested. 1 ECTS requires 25 hours of student work, according results are to be delivered. Project work experience recommended Solving a challenging automation task according to functional specifications. Students are to create the entire chain, consisting of hardware, process/control and software. Regular project reviews with the supervisor shall follow the progress; corresponding documentation must be maintained.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Embedded Systems (ESY3ILV)

Degree course AT.ma

Course title Embedded Systems

Course code ESY3ILV_INIF

Level Master

Term WS19/20

Lecturer Burkhard Stadlmann

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Basic concepts of distributed, real-time capable embedded systems, basic hardware of embedded systems, inter-IC and inter-processor interfaces, inter-device interfaces, inter-module interfaces. Operating system basics for embedded computing, scheduling, interrupts, memory, management, synchronisation. Real-time programming based on concrete graphic and textual real-time programming languages. Advanced work on: interfaces and driver programming, selected algorithms and data structures with pointers for use in embedded systems, application of analysis tools like logic analyser, protocol analyser

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Image Processing (IBV3LB)

Degree course AT.ma

Course title Industrial Image Processing

Course code IBV3LB

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

n.a.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Image Processing (IBV3VO)

Degree course AT.ma

Course title Industrial Image Processing

Course code IBV3VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Image storage, morphology, chain code, depth perception, stereoscopy, epipolar geometry, affine transformations, calibration, multiscalar analysis, classification, colour picture processing, machine vision, image understanding.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Signal Processing (MAS1IL)

Degree course AT.ma

Course title Signal Processing

Course code MAS1IL

Level Master

Term WS19/20

Lecturer Gerald Zauner

Contact hours per week 3

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

• Fourier series • Fourier transforms • Adjustment theory • Correlation analysis • Wavelets • Texture analysis • Algorithms and image analysis • Fundamentals of classification

Prerequisites:

n.a.

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Lecture/Seminar profile:

Resource-efficient Building (RES3ILV)

Degree course BI.ma

Course title Resource-efficient Building

Course code RES3ILV_WF1

Level Master

Term WS19/20

Lecturer Khaled Saleh Pascha

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Resource-efficient building This course aims to study the various strategies of resource-efficient buildings adapted to use, climate and environmental impact. The idea of resource-efficient building is to target objectives such as using energy, water, and other resources more efficiently, protecting the occupant health, and reducing the overall impact of buildings to the environment. Sustainable or bioclimatic building ensure interior comfort through factors such as geometry, orientation, materiality and the right choice of construction system. Its objective is to reduce energy consumption and environmental impact associated with all stages of building´s life like manufacture, construction, operation and maintenance, even including aspects of demolition and recyclability of incorporated materials (Life Cycle Assessment – LCA). Through the study of the different strategies of passive and active solar design (solar panels, PV panels), this course seeks to provide criteria and design strategies for resource efficient building. Along with lectures, introducing different strategies in bioclimatic design, the student will • know and evaluate the different bioclimatic design strategies (materiality, orientation, opening and ventilation). • understand the role of passive and active solar strategies as part of the intelligent design in building • apply the gathered knowledge in proposals for sustainable buildings of low energy consumption • determine how LCA can be used to estimate building impacts and understand how it can

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lead to improved environmental-friendly solutions in building

Prerequisites:

n.a.

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Lecture/Seminar profile:

Food Biotechnology (BTL1VO)

Degree course BUT.ma

Course title Food Biotechnology

Course code BTL1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 2

Learning objectives:

n.a.

Content:

Legal framework for food biotechnology (Austrian Food Safety and Consumer Protection Law, Novel Food regulations); Fundamentals of food biotechnology; Examples of biotechnological technologies in the manufacturing of food (riboflavin, citric acid, soy-sauce, cheese, ripening of meat, asparaginase to reduce acrylamide, trans-esterification); Student works (presentation of scientific publications in the field of interest)

Prerequisites:

Abschluss eines facheinschlägigen Bakkalaureats- Studienganges, (Bio-)Chemie und (Bio-)analytische Chemie

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Lecture/Seminar profile:

English (ENG1UE)

Degree course BUT.ma

Course title English

Course code ENG1UE

Level Master

Term WS19/20

Lecturer Julie Katherine Dutzler

Contact hours per week 2

ECTS credits 1,5

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Advanced Technical/Scientific and Business English: presentation/explanation/translation/summary of topics from other subjects in the Semester 1 curriculum Reading and discussion of news articles on technologies/topics relevant to the field of study, (articles preferably chosen by students (=advanced grammar and vocabulary in context). Audiovisual work (listening practice): watching relevant (=science/technology) documentary films + discussion thereof and vocabulary-building work Advanced Negotiations Selected Executive Management (Führung) topics (management theory) and relevant/associated language study (from Keys to Management) e.g. The Manager’s Role, Scientific Management Advanced meetings practice: selected problem-solving meetings and project meetings Focus on advanced areas in language and style: e.g. phrasal verbs, inversion, idiom, register

Prerequisites:

n.a.

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Lecture/Seminar profile:

Project (FPT3PT)

Degree course BUT.ma

Course title Project

Course code FPT3PT

Level Master

Term WS19/20

Lecturer

Contact hours per week 12

ECTS credits 17

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 36

Learning objectives:

n.a.

Content:

Praktische Umsetzung des in den verschiedenen LVs erworbenen Wissens an einer umfangreicheren praktischen Aufgabenstellung des Berufsfeldes, Abwicklung als Gruppenarbeit mit Arbeitsteilung im Rahmen ei-nes F&E Projektes an der FH Wels oder in einer externen Firma, weitgehend selbständige Bearbeitung von Teilaufgaben durch die Studierenden mit Begleitung durch den Lehrveranstaltungsleiter Kann als Vorstudie für die Diplomarbeit ausgelegt werden. Analyse der Aufgabenstellung, Erstellung eines Projektplanes, Bearbeitung der Fragestellungen, Erstellung eines Berichtes und Präsentation der Ergebnisse

Prerequisites:

Abschluss eines facheinschlägigen Bakkalaureats- Studienganges, relevante Module des Masterstudiengan ges

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Lecture/Seminar profile:

Cell Culture Analysis (ZKA1VO)

Degree course BUT.ma

Course title Cell Culture Analysis

Course code ZKA1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 2

Learning objectives:

n.a.

Content:

n.a.

Prerequisites:

Abschluss eines facheinschlägigen Bakkalaureats- Studienganges, (Bio-)Chemie und (Bio-)analytische Chemie

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Lecture/Seminar profile:

Basics of Scientific Work (BSW1ILV)

Degree course EE.ma

Course title Basics of Scientific Work

Course code BSW1ILV

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Developing of a hypothesis Designing of experiments Analyzing and interpretation of experimental results Discussing and concluding Structuring of text Principles of scientific writing Literature work and correct citations

Prerequisites:

n.a.

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Lecture/Seminar profile:

Ecology for Engineers (ECE1SE)

Degree course EE.ma

Course title Ecology for Engineers

Course code ECE1SE

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Knowledge of basic ecological principles and ecosystem services Energy flow and energy storage in ecosystems Energy assimilation and conversion (primary producers, secondary producers, autotrophic organisms, heterotrophic organisms, decomposers) The build-up of fossil resources by incomplete decomposition of organic material Energy assimilation and conversion (primary producers, secondary producers, autotrophic organisms, heterotrophic organisms, decomposers) Life-history strategies as a response to particular ecosystem types and their energy flows The concept of EROI (energy returned on energy invested) in natural system and in human economy Habitat fragmentation and the small population paradigm Biodiversity as a need for mankind Main goals of Nature Conservation application of these concepts in Environmental Impact Assessments for the installation and utilization of energy systems. Knowledge of environmental indicators: species richness, Shannon-Wiener diversity, Red Lists and species of the EU Habitats Directive, ecological footprint, energy balance, greenhouse gas balance, ISO 14001

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Prerequisites:

n.a.

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Lecture/Seminar profile:

EMC and EMI Aspects (ECI3LB)

Degree course EE.ma

Course title EMC and EMI Aspects

Course code ECI3LB

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Physics of coupling principles (galvanic, induction of electric and magnetic fields) EMC and EMI proof design concepts EMC and EMI shielding Simulation and calculation of EMC and EMI approaches Lightning effects and lightning protection concepts Simulation of lightning protection systems Please note: Students enrolled in this course must also enroll in ECI3VO

Prerequisites:

n.a.

155

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Lecture/Seminar profile:

EMC and EMI Aspects (ECI3VO)

Degree course EE.ma

Course title EMC and EMI Aspects

Course code ECI3VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Physics of coupling principles (galvanic, induction of electric and magnetic fields) EMC and EMI proof design concepts EMC and EMI shielding Simulation and calculation of EMC and EMI approaches Lightning effects and lightning protection concepts Simulation of lightning protection systems Please note: Students enrolled in this course must also enroll in ECI3LB

Prerequisites:

n.a.

156

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Lecture/Seminar profile:

Energy Markets and Energy Law (EME3VO)

Degree course EE.ma

Course title Energy Markets and Energy Law

Course code EME3VO

Level Master

Term WS19/20

Lecturer Johann Precht

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Market Concepts: History of European Electricity and Gas Markets, EU Energy Law, Regulation of Markets, EU Internal Market of Electricity, Market Rules, Guidelines and Network Codes, EU Environmental Law Products, Commodities and Energy Services: Energy Assets Pricing, OTC Trading, Energy Exchange Spot Market, Intraday Market, Balance Energy, Capacity Markets, Renewables Support Schemes, Emissions Trading System, Green Certificates Market Risk: Risk Management for Electricity Trading, Hedging Strategies Systems Security: System Balancing, Reserve Capacities for Frequency Control, Auxiliary Services for TSOs, Network Capacity Allocation, Congestion Management

Prerequisites:

n.a.

157

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Lecture/Seminar profile:

High Voltage Engineering (HEI3LB)

Degree course EE.ma

Course title High Voltage Engineering

Course code HEI3LB

Level Master

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 2

ECTS credits 3

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Breakdown in solid and liquid dielectrics, advanced physics Breakdown in liquids, advanced physics Overvoltages, testing procedures and insulation coordination Advanced non-destructive insulation test techniques Testing and diagnosis at HV power equipment and condition evaluation Please note: Students enrolled in this course must also enroll in HEI3UE and HEI3VO

Prerequisites:

n.a.

158

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Lecture/Seminar profile:

High Voltage Engineering (HEI3UE)

Degree course EE.ma

Course title High Voltage Engineering

Course code HEI3UE

Level Master

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 1

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Breakdown in solid and liquid dielectrics, advanced physics Breakdown in liquids, advanced physics Overvoltages, testing procedures and insulation coordination Advanced non-destructive insulation test techniques Testing and diagnosis at HV power equipment and condition evaluation

Prerequisites:

n.a.

159

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Lecture/Seminar profile:

High Voltage Engineering (HEI3VO)

Degree course EE.ma

Course title High Voltage Engineering

Course code HEI3VO

Level Master

Term WS19/20

Lecturer Peter Zeller

Contact hours per week 3

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Breakdown in solid and liquid dielectrics, advanced physics Breakdown in liquids, advanced physics Overvoltages, testing procedures and insulation coordination Advanced non-destructive insulation test techniques Testing and diagnosis at HV power equipment and condition evaluation Please note: Students enrolled in this course must also enroll in HEI3LB and HEI3UE

Prerequisites:

n.a.

160

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Lecture/Seminar profile:

International Project Development and Management (IPD3ILV)

Degree course EE.ma

Course title International Project Development and Management

Course code IPD3ILV

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Goals and methods of project controlling (costs, milestones, quality assessment) Risk-analyses and management Reviewing Project-Score Cards Reporting International approach of project controlling and coordination Meaning and how to approach for the project states • Feasibility study • Due diligence • Energy Yield Assessment • Permitting

Prerequisites:

n.a.

161

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Lecture/Seminar profile:

IT Systems for Electrical Power Engineering (ITP1ILV)

Degree course EE.ma

Course title IT Systems for Electrical Power Engineering

Course code ITP1ILV

Level Master

Term WS19/20

Lecturer Andreas Aichhorn

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics and principles of IT systems for measurement and control approaches for robust industry systems SMART Grids: ideas and realizations Control and protection of electrical energy engineering systems and infra structure with IT based communication, digital systems, computer systems and web based approaches. Security aspects of IT and Web based control and measurement systems: Hacking approaches and counter measures Existing standards for secure IT systems

Prerequisites:

n.a.

162

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Lecture/Seminar profile:

Numerical Mathematics and Higher Calculus (MAT1UE)

Degree course EE.ma

Course title Numerical Mathematics and Higher Calculus

Course code MAT1UE

Level Master

Term WS19/20

Lecturer Harald Hinterleitner

Contact hours per week 2

ECTS credits 4

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Higher Calculus: Vector Analysis: Vector Field, Divergence, Curl, Nabla-Operator, Volume Integrals, Line Integrals, Surface Integrals, Divergence Theorem, Stokes’ Theorem Partial Differential Equations: Separation of Variables Numerical Mathematics: Introduction in Numerical Mathematics Numerical Solution of Nonlinear Equations Numerical Solution of Linear Systems of Equations (direct and iterative methods) Numerical Differentiation Numerical Integration Numerical Solution of Ordinary Differential Equations

Prerequisites:

n.a.

163

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Lecture/Seminar profile:

Numerical Mathematics and High Calculus (MAT1VO)

Degree course EE.ma

Course title Numerical Mathematics and High Calculus

Course code MAT1VO

Level Master

Term WS19/20

Lecturer Harald Hinterleitner

Contact hours per week 3

ECTS credits 5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Higher Calculus: Vector Analysis: Vector Field, Divergence, Curl, Nabla-Operator, Volume Integrals, Line Integrals, Surface Integrals, Divergence Theorem, Stokes’ Theorem Partial Differential Equations: Separation of Variables Numerical Mathematics: Introduction in Numerical Mathematics Numerical Solution of Nonlinear Equations Numerical Solution of Linear Systems of Equations (direct and iterative methods) Numerical Differentiation Numerical Integration Numerical Solution of Ordinary Differential Equations

Prerequisites:

n.a.

164

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Lecture/Seminar profile:

Measurement Engineering and Sensor Systems (MES1LB)

Degree course EE.ma

Course title Measurement Engineering and Sensor Systems

Course code MES1LB

Level Master

Term WS19/20

Lecturer Franz Auinger

Contact hours per week 2

ECTS credits 4

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Design and developing of automated measurement systems EMC EMI with special respect to electrical energy systems Special measurement problems in electrical energy measurement systems Embedded measurement systems Special sensors and advanced sensor technology Energy harvesting for sensor systems Sensor system communication Signal processing of measurements Developing and writing computer based measurement programs Please note: Students enrolled in this course must also enroll in MES1VO

Prerequisites:

n.a.

165

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Lecture/Seminar profile:

Measurement Engineering and Sensor Systems (MES1VO)

Degree course EE.ma

Course title Measurement Engineering and Sensor Systems

Course code MES1VO

Level Master

Term WS19/20

Lecturer Franz Auinger

Contact hours per week 2

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Design and developing of automated measurement systems EMC EMI with special respect to electrical energy systems Special measurement problems in electrical energy measurement systems Embedded measurement systems Special sensors and advanced sensor technology Energy harvesting for sensor systems Sensor system communication Signal processing of measurements Developing and writing computer based measurement programs Please note: Students enrolled in this course must also enroll in MES1LB

Prerequisites:

n.a.

166

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Lecture/Seminar profile:

Cross-Cultural Negotiations (SSK1UE)

Degree course EE.ma

Course title Cross-Cultural Negotiations

Course code SSK1UE

Level Master

Term WS19/20

Lecturer Thomas Widrich

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Theory and key principles of intercultural communication; Harvard Negotiation concept; Introduction to negotiation and meeting moderation; Cultural specificity in international meetings and projects Practicing negotiation skills and conflict resolution in a intercultural context; Development of intercultural key competences Efficient preparation for successful negotiations; Creation of results which satisfy both parties (win-win situations); Methods and tools of meeting moderation and discussion facilitation; Role, attitude, tasks of the moderator/ discussion leader; Interventions techniques (target-review, interviewing technique, feedback technique, technique of visual discussions);

Prerequisites:

n.a.

167

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Lecture/Seminar profile:

Intercultural Leadership and Management (SSK3UE)

Degree course EE.ma

Course title Intercultural Leadership and Management

Course code SSK3UE

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics of Intercultural Management; Intercultural decision-making and responsibility for a successful management in intercultural business situations; Specific characteristics in international and intercultural project management Leadership in an international context; Models, functions and tasks of leadership; Key competences of executives and connection between leadership and personality; The role of the executive; Enhancements of intercultural key competences

Prerequisites:

n.a.

168

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Lecture/Seminar profile:

Bionics (BIO3IL)

Degree course IPM.ma

Course title Bionics

Course code BIO3IL

Level Master

Term WS19/20

Lecturer Kristina Wanieck

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Explanation of terms and historical background • Subfields of bionics • Structural bionics • Anthropobionics (human-machine interaction) • Engineering optimisation using nature as a model

Prerequisites:

n.a.

169

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Lecture/Seminar profile:

Brand Management and Positioning (BM1IL)

Degree course IPM.ma

Course title Brand Management and Positioning

Course code BM1IL

Level Master

Term WS19/20

Lecturer MAK 1 Dummy L2

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

-Brand Policy -Brand Identity -Branding -Brand Strategies

Prerequisites:

n.a.

170

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Lecture/Seminar profile:

Business Administration/Accounting (BWL1IL)

Degree course IPM.ma

Course title Business Administration/Accounting

Course code BWL1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Basic terminology and facts of economic management - Types of organizations and their structural organization - Core processes of organizations - Balance sheets, salary and accounting - Basics of macroeconomics

Prerequisites:

n.a.

171

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Lecture/Seminar profile:

Digital Product Development (DPE1IL)

Degree course IPM.ma

Course title Digital Product Development

Course code DPE1IL

Level Master

Term WS19/20

Lecturer Christian Zehetner

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Basics of the conceptualization and evaluation of product variants - Computer based design and construction - Concept-modelling technologies - Modelling of free-form surfaces - Technical prototype and model construction - Virtual Prototyping and digital Mock-Ups - Virtual and Augmented Reality

Prerequisites:

n.a.

172

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Lecture/Seminar profile:

Design Project Technical Design II (DPT3PT)

Degree course IPM.ma

Course title Design Project Technical Design II

Course code DPT3PT

Level Master

Term WS19/20

Lecturer Markus Kretschmer

Contact hours per week 3

ECTS credits 5

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Carefully selected and prepared "model examples" from professional practice are addressed either individually or in small groups, under the supervision of the lecturer. The lecturer acts as moderator and "senior expert", and provides methodological or expert assistance as required. The model examples incorporate typical concepts and methods from professional practice as "best practices". The focus here is on a systematic, problem-oriented approach toward problem solving and design development. • Completing a design project • Using and adapting specific design methodologies • Overview of the design process.

Prerequisites:

n.a.

173

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Lecture/Seminar profile:

Design and Morphology (EGD1IL)

Degree course IPM.ma

Course title Design and Morphology

Course code EGD1IL

Level Master

Term WS19/20

Lecturer Markus Kretschmer

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- In-depth display of alternative design processes - Basic principles of design methods and display techniques - Morphology (form, colour, surface, font) - Training in perspective illustration - Creation of renderings - Basic principles of the software packages Photoshop and Illustrator

Prerequisites:

n.a.

174

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Lecture/Seminar profile:

Design and Morphology (EGD1SE)

Degree course IPM.ma

Course title Design and Morphology

Course code EGD1SE

Level Master

Term WS19/20

Lecturer Markus Kretschmer, Design 2 Dummy L1

Contact hours per week 2

ECTS credits 2

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

- In-depth display of alternative design processes - Basic principles of design methods and display techniques - Morphology (form, colour, surface, font) - Training in perspective illustration - Creation of renderings - Basic principles of the software packages Photoshop and Illustrator

Prerequisites:

n.a.

175

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Lecture/Seminar profile:

Enterprise Resource Planning (ERP3IL)

Degree course IPM.ma

Course title Enterprise Resource Planning

Course code ERP3IL

Level Master

Term WS19/20

Lecturer Orion Kronsteiner

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Fundamentals of planning procedures. Advanced discussion of the functions and methods for production planning and control in manufacturing firms, and the interfaces to service logistics functions. Overview of integrated ERP systems and their areas of application (on benchmark SAP/R3). Advanced discussion of inventory registration and tracking systems in the supply chain. Case study of an integrated ERP system in a manufacturing firm. The main functions of ERP systems and integration using standard versus customised software. Important ERP system providers. Selection and implementation/customisation of ERP systems

Prerequisites:

n.a.

176

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Lecture/Seminar profile:

R&D Controlling (FEC3IL)

Degree course IPM.ma

Course title R&D Controlling

Course code FEC3IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Modern R&D controlling methods • Lifecycle costing (design to cost, LCC, TCO) • Depicting R&D costs on the balance sheet, budgeting R&D departments • Innovation and performance measurement • Innovation/R&D balanced scorecard • Controlling Open Innovation • Innovation audit.

Prerequisites:

n.a.

177

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Lecture/Seminar profile:

Finance (FIN3VO)

Degree course IPM.ma

Course title Finance

Course code FIN3VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Forms of financing (debt and equity financing, internal and external financing) • Cash flow calculations, financial planning • Capital and financial markets • Venture financing and investment financing • Start-up financing • Export financing • Financing models and financial support • special forms of financing (leasing, factoring)

Prerequisites:

n.a.

178

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Lecture/Seminar profile:

International Marketing & Management (IMM3IL)

Degree course IPM.ma

Course title International Marketing & Management

Course code IMM3IL

Level Master

Term WS19/20

Lecturer Alexander Christian Bauer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

•International technology marketing •Significance of internationalisation and the internationalisation process •Situational analysis methods in international marketing •International market research •Strategic thrusts and competitive strategies in the international marketing of industrial goods •International (operative) marketing of industrial goods according to business type. •Investment business •Systems business •Supplier business •Product business

Prerequisites:

n.a.

179

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Lecture/Seminar profile:

Industrial Design (IND1IL)

Degree course IPM.ma

Course title Industrial Design

Course code IND1IL

Level Master

Term WS19/20

Lecturer Markus Kretschmer

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Professional design terms - Product language: terms and their practical meaning - Design professions and activities Design processes - Design history (overview) - Interface expertise between product development, design, engineering, production and marketing

Prerequisites:

n.a.

180

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Lecture/Seminar profile:

Innovation Management II (INM1IL)

Degree course IPM.ma

Course title Innovation Management II

Course code INM1IL

Level Master

Term WS19/20

Lecturer Kristiana Roth

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Success factors for technology and innovation management - Stage-gate processes and evaluation methods - Tools and concepts of operative innovation management (e.g. lead-user concept, target costing, KANO, knowledge management) - Functions and roles in technology and innovation management - Innovation-promoting corporate organisation Measures for an innovation-friendly corporate culture

Prerequisites:

n.a.

181

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Lecture/Seminar profile:

Innovation Management (INO1IL)

Degree course IPM.ma

Course title Innovation Management

Course code INO1IL

Level Master

Term WS19/20

Lecturer Kristiana Roth

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Significance of technical innovation - Objectives of R&D, technology management and innovation management - Technology and innovation management process - Overview and structure - Initiation of ideas - Idea generation - Creativity generation techniques

Prerequisites:

n.a.

182

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Lecture/Seminar profile:

Leadership (KFK3UE)

Degree course IPM.ma

Course title Leadership

Course code KFK3UE

Level Master

Term WS19/20

Lecturer Regina Oppitz-Pfannhauser

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Leadership models, functions and duties Key management competencies Relationship between leadership and personality The role of management as the sum of all expectations of the person occupying the role Management as the multiplier of an organisation's goals and values Management as the developer of its own personnel Influences on leadership (external and internal factors) Cooperative leadership behavior Employee decision-sharing Dealing with power and information

Prerequisites:

n.a.

183

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Lecture/Seminar profile:

Short-Term Design Project (KZE3PT)

Degree course IPM.ma

Course title Short-Term Design Project

Course code KZE3PT

Level Master

Term WS19/20

Lecturer Markus Kretschmer

Contact hours per week 2

ECTS credits 2

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Completing a short-term design project • Applying specific design methodologies

Prerequisites:

n.a.

184

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Lecture/Seminar profile:

Product Lifecycle Management (LCM3IL)

Degree course IPM.ma

Course title Product Lifecycle Management

Course code LCM3IL

Level Master

Term WS19/20

Lecturer Sven Schwarz

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Prerequisites: to be taken in conjunction with PPM3SE Product Line & Product Lifecycle Management. Core processes in product lifecycle management. Components of PLM. Methods and trends in PLM. PLM as the backbone of virtual product creation. Organisational and methodological requirements for launching PLM. Components and core functions of a PLM solution. Input/output management. Integration. Technical infrastructure and system functions. Economic considerations with PLM systems. PLM launch planning.

Prerequisites:

n.a.

185

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Lecture/Seminar profile:

Marketing Management (MAK1IL)

Degree course IPM.ma

Course title Marketing Management

Course code MAK1IL

Level Master

Term WS19/20

Lecturer Roman Heinzle

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Strategic Marketing Management • Basics of marketing • Special aspects of marketing industrial goods • Basic elements of conceptualization of marketing aspects and marketing process • Situational analysis • Strategic marketing of industrial goods at an organizational level (mission statement, portfolio analysis) • Competition strategy • Timing strategy • Basic internationalisation strategies • Basic principles of product management

Prerequisites:

n.a.

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Mechatronics (MEC1IL)

Degree course IPM.ma

Course title Mechatronics

Course code MEC1IL

Level Master

Term WS19/20

Lecturer Michael Rabl

Contact hours per week 2

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Consolidating the interplay of mechanical, electrical, electronic, microelectronic and sensor/actuator system components in connection with interface and display into a whole behaviour.

Prerequisites:

n.a.

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Market Research (MFO1IL)

Degree course IPM.ma

Course title Market Research

Course code MFO1IL

Level Master

Term WS19/20

Lecturer Doris Eyett

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Basics of marketing research - Process of marketing research - Secondary research vs. primary research - Qualitative research vs. Quantitative research - Research design - Information gathering and processing - Selected methods of secondary research (market monitoring, competition analysis, press-, patent- and brand research, ...) - Basic analytical processes of market research

Prerequisites:

n.a.

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Marketing & Innovation Management Simulation (MIM3PT)

Degree course IPM.ma

Course title Marketing & Innovation Management Simulation

Course code MIM3PT

Level Master

Term WS19/20

Lecturer MAK 1 Dummy L2

Contact hours per week 2

ECTS credits 3

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Carefully selected and prepared "model examples" from professional practice are addressed either individually or in small groups, under the supervision of the lecturer. The lecturer acts as moderator and "senior expert", and provides methodological or expert assistance as required. The model examples incorporate typical con-cepts and methods from professional practice as "best practices". The focus here is on a systematic, problem-oriented approach toward classification, modeling, problem resolution, and preparation and interpretation of findings.

Prerequisites:

n.a.

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Mechanics of Materials (MOM1IL)

Degree course IPM.ma

Course title Mechanics of Materials

Course code MOM1IL

Level Master

Term WS19/20

Lecturer Thomas Josef Reiter

Contact hours per week 3

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

The students understand the basic concepts of statics (force-equilibrium etc.) as well as the concept of stresses

Content:

Basic static concepts (forces, moments, free-body-diagrams, frictional forces), Concept of Stress and Strain; Principal stresses, Mohr-Circle; Linear elastic material law; Thermal strains and stresses; Loading of trusses and beams (axial forces, bending, torsion); Deflection of beams; Energy-methods; Stability of columns. Prerequisites: Undergraduate Mathematics (Vector- and Matrix-Calculus, differential equations; Integrational and differential calculus; Level MAT1/2) Literature: Beer et al.: “Mechanics of Materials”, 6th Edition, McGrawHill, 2012

Prerequisites:

n.a.

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Customer Integration in NPD (MRI3IL)

Degree course IPM.ma

Course title Customer Integration in NPD

Course code MRI3IL

Level Master

Term WS19/20

Lecturer Fiona Schweitzer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

•Understanding the Challenges at the Front End of Inno-vation •Knowing the principles of Strategic Foresight and how to work with scenarios •Gaining insights into Innovative Customer Integration tools for ideation and evaluation at the front end of innovation •Learning about the usage of Open Innovation Approaches and Cross Industry Innovation at the Front End of In-novation •Business Model innovation

Prerequisites:

n.a.

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Entrepreneurship & New Business Development (NBD3SE)

Degree course IPM.ma

Course title Entrepreneurship & New Business Development

Course code NBD3SE

Level Master

Term WS19/20

Lecturer Markus Pollhamer

Contact hours per week 1

ECTS credits 2

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Apply the knowledge of Entrepreneurship & New Business Development (ILV 2. Semester) in a group work in which a new business idea is developed, analyzed, de-tailed, and presented orally and in a written report

Prerequisites:

n.a.

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Product Management (PM1IL)

Degree course IPM.ma

Course title Product Management

Course code PM1IL

Level Master

Term WS19/20

Lecturer MAK 1 Dummy L2

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

-Analyzing-instruments -Perceptual Maps -Product Decisions -Innovation -Variation -Differentiation -Ellimination -Service marketing

Prerequisites:

n.a.

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Product Line &Product Lifecycle Management - Project (PPM3SE)

Degree course IPM.ma

Course title Product Line &Product Lifecycle Management - Project

Course code PPM3SE

Level Master

Term WS19/20

Lecturer Erich Pichler, MAK 1 Dummy L2

Contact hours per week 2

ECTS credits 3

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Prerequisites: to be taken in conjunction with LCM3IL Product Lifecycle Management. Projects from business and R&D are conducted in selected areas of Product Line & Product Lifecycle Management.

Prerequisites:

n.a.

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Project Management (PRM1VO)

Degree course IPM.ma

Course title Project Management

Course code PRM1VO

Level Master

Term WS19/20

Lecturer Markus Feistritzer

Contact hours per week 1

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

- Project management as a business process - Project manual - Methods for the management of projects - o Methods for starting a project - Project limitation and project context - Design of the project organisation - Project planning - o Methods for project coordination - o Methods for project controlling - o Methods for project marketing - o Methods for the management of project crises - o Methods for project completion, - Management of project-oriented organisations (overview)

Prerequisites:

n.a.

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Reverse Engineering (REG3IL)

Degree course IPM.ma

Course title Reverse Engineering

Course code REG3IL

Level Master

Term WS19/20

Lecturer Christian Zehetner

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Capturing and processing complex geometries • Digitising systems (3D coordinate measurements, fringe projection scanners, laser scanners, computer tomography) • CAD/prototype variance analysis • Object reconstruction • Design-oriented reverse engineering

Prerequisites:

n.a.

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Rapid Product Development 1 (RPT3IL)

Degree course IPM.ma

Course title Rapid Product Development 1

Course code RPT3IL

Level Master

Term WS19/20

Lecturer Johannes Gartner, Walter Kaindl

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Product development and model types (proportional ergonomic, design and functional models; prototypes and samples) • Basic process principles for the generative manufacturing of models • Generation of data models for rapid prototyping (RPT) (requirements for 3D geometries and models) • Measurement data acquisition and reverse engineering (3D coordinate measurements, digitising systems, 3D scanners)

Prerequisites:

n.a.

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Supply Chain Management (SCM3IL)

Degree course IPM.ma

Course title Supply Chain Management

Course code SCM3IL

Level Master

Term WS19/20

Lecturer Martin Jordan

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Conceptualize supply chain designs, which are aligned with business models for manufacturing and service companies • Configure logistics networks and assess their performance impacts on efficiency and service levels • Manage inventory efficiently and pool inventory risks across time, products, channels, and geography.

Prerequisites:

n.a.

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Simultaneous Engineering (SIE3IL)

Degree course IPM.ma

Course title Simultaneous Engineering

Course code SIE3IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

• Planning and monitoring of project portfolios • Reporting in multiple-projects management • Human resource management in multiple-projects management • Case studies or practical projects relating to selected topics of the lecture

Prerequisites:

n.a.

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Presentation (SKK1UE)

Degree course IPM.ma

Course title Presentation

Course code SKK1UE

Level Master

Term WS19/20

Lecturer Claudia Ender

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Different types and objectives of presentations • Advantages and disadvantages of different presentation medias • Rules of visualization (focus on layout of transparencies with special software features) • Significance of eye contact, gesture/facial expression/ habitus linguistic and paralinguistic aspect for the success of presentations • (Meeting) Moderation: repertoire, rules, asking techniques, visualization • Positive association with excitement • Effect of circumstances on the success • How to write handouts • Video training

Prerequisites:

n.a.

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Value Analysis and FMEA (TPW1IL)

Degree course IPM.ma

Course title Value Analysis and FMEA

Course code TPW1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

- Function Analysis (FA): Methods of FA, nominating and structuring of functions; Application of FA to develop and improve products and processes; Work on examples from the lecturer’s practical experience. Value Management (VA): Fundamentals of value analysis and value engineering; Value in product- and service-analysis, criteria of value, functions to describe products and service; function costs, value analysis job plan; the process of value analysis;. Work on examples from the lecturer’s practical experience Potential Failure Mode and Effects Analysis (FMEA): Methodology of FMEA for products and processes; structural analysis of products and processes; function block diagram; failure and risk analysis; risk priority number; improvement of design; samples and organization; work on examples from the lecturer’s practical experience. General product analysis: Situation analysis, cause analyses according to Kepner/ Tregoe Ishikawa diagram; decision-making analyses, useful value analyses, cost-effect analyses

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Prerequisites:

n.a.

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Lecture/Seminar profile:

Scientific Work (WIA1IL)

Degree course IPM.ma

Course title Scientific Work

Course code WIA1IL

Level Master

Term WS19/20

Lecturer Kristiana Roth

Contact hours per week 0,5

ECTS credits 0,5

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Fundamentals of scientific research Research design: goals, questions, methods Academic writing: sources, types of texts, style Efficient use of information sources

Prerequisites:

n.a.

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Scientific Work (WIA3IL)

Degree course IPM.ma

Course title Scientific Work

Course code WIA3IL

Level Master

Term WS19/20

Lecturer Fiona Schweitzer

Contact hours per week 1

ECTS credits 1

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Fundamentals of scientific research Research design: goals, questions, methods Academic writing: sources, types of texts, style Efficient use of information sources

Prerequisites:

n.a.

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Lecture/Seminar profile:

Solid Mechanics (MFK1UE)

Degree course MB.ma

Course title Solid Mechanics

Course code MFK1UE

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Analytical and numerical methods applied on practical examples in the field of Solid Mechanics. Introduction to Fortran-95 programming for solid-mechanics problems. Excercise course accompanying Solid-mechanics lecture MFK1VO

Prerequisites:

n.a.

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Solid Mechanics (MFK1VO)

Degree course MB.ma

Course title Solid Mechanics

Course code MFK1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basic concepts of nonlinear Solid-Mechanics - nl-kinemetic concepts (Deformation-gradient, Eulerian a. Lagrange kinematics), Stress-measures (Cauchy, Kirchhoff, Piola-Kirchhoff I,II) and strain measures (Green-Lagrange, Almansi, etc.); constitutive equations, thermodynamic material theory, Linear and nonlinear Elasticity (Hyperelasticity, etc.), small and finite strain plasticity models. Analytical and numerical methods applied on practical examples in the field.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Multibody Dynamics (MKS1VO)

Degree course MB.ma

Course title Multibody Dynamics

Course code MKS1VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 2

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Kinematics: kinematics of rigid bodies, Rotation, relative-kinematics, holonomal and non-holonimal couplings in mechanical systems. Classification of multi-body-systems, Concepts of Degree-of-freedom, couplings, open- and closed Systems. Kinetics: Newton / Euler equations, Lagrangian equations of motion (1. and 2. kind); Hamiltonian principle; Dynamic system equations of multi-body-systems Linearization of dynamic equations, Numerical solution procedures for dynamical systems Bewegungsgleichungen von Mehrkörpersystemen. Introduction in functionality of Multi-body-system software and practical application of MBS-Software.

Prerequisites:

n.a.

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Lecture/Seminar profile:

(PRO3PT)

Degree course MB.ma

Course title F&E-Projektarbeit

Course code PRO3PT

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 10

Course type Project

Examinations written examination

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Individual assignment dealing with an advanced (graduate level) project in the field of mechanical engineering. The tasks are connected to current R&D-Projects of in-house Research groups and external industrial or scientific partners. These projects should allow the students to apply their skills and knowledge (technical, social and projekt-management) onto a real-world problem.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Project Work 1 (PRJ1PT )

Degree course MKT.ma

Course title Project Work 1

Course code PRJ1PT

Level Master

Term WS19/20

Lecturer

Contact hours per week 0,5

ECTS credits 12

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Specific R&D-project in the area of material science or manufacturing technology; applied project management; literature research; detailed and interdisciplinary exercise of specific knowledge; methodical and scientific approach; planning and performing technical or scientific tests; analyzing and interpretation of test results; design and compilation of technical and scientific reports

Prerequisites:

Bachelor-Abschluss einer technischen Studienrichtung

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Lecture/Seminar profile:

Conventional Energy Resources (CER3VO)

Degree course SES.ma

Course title Conventional Energy Resources

Course code CER3VO

Level Master

Term WS19/20

Lecturer Klaus Angerer, Juan Luis Aguado Casas

Contact hours per week 2

ECTS credits 2

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Fossil energy resources, reserves and potentials, including nonconventional oils as tight oil, oil sand, tight gas and gas hydrate. Fossil fuels: introduction to extraction and refinery technologies, basics of combustion technologies, CO2 output, environmental impact Current and future technologies like power-to-gas, CO2 sequestration and storage Nuclear fuels: nuclear fission, types of atomic reactors, future aspects Applications for industries, processes and mobility

Prerequisites:

n.a.

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Lecture/Seminar profile:

Environmental Indicators (EIN1IL)

Degree course SES.ma

Course title Environmental Indicators

Course code EIN1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 1

ECTS credits 1,5

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Knowledge of basic ecological principles and ecosystem services Energy flow and energy storage in ecosystems Energy assimilation and conversion (primary producers, secondary producers, autotrophic organisms, heterotrophic organisms, decomposers) The build-up of fossil resources by incomplete decomposition of organic material Energy assimilation and conversion (primary producers, secondary producers, autotrophic organisms, heterotrophic organisms, decomposers) Life-history strategies as a response to particular ecosystem types and their energy flows The concept of EROI (energy returned on energy invested) in natural system and in human economy Habitat fragmentation and the small population paradigm Biodiversity as a need for mankind Main goals of Nature Conservation application of these concepts in Environmental Impact Assessments for the installation and utilisation of energy systems. Knowledge of environmental indicators: species richness, Shannon- Wiener diversity, Red Lists and species of the EU Habitats

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Directive, ecological footprint, energy balance, greenhouse gas balance, ISO 14001

Prerequisites:

n.a.

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Lecture/Seminar profile:

Energy Markets and Energy Law (EML3ILV)

Degree course SES.ma

Course title Energy Markets and Energy Law

Course code EML3ILV

Level Master

Term WS19/20

Lecturer Johann Precht

Contact hours per week 3

ECTS credits 3

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

Energy pricing with respect to examples like • Classical energy utilisation • Domestic systems • Island systems • Microgrid systems Energy trading (Market places, products, hedging, …) Financial assessment Overview on marketing and market development

Prerequisites:

n.a.

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Lecture/Seminar profile:

High Performance Buildings (HPB1VO)

Degree course SES.ma

Course title High Performance Buildings

Course code HPB1VO

Level Master

Term WS19/20

Lecturer Khaled Saleh Pascha

Contact hours per week 3

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Basics and overview of methods to optimize buildings envelope and HVAC Innovative architecture and optimization of facades Selected topics of building management and building services engineering: • Heating • Cooling • Ventilation • Lighting • … Integration of renewable energies • Photovoltaic systems • Solar thermal systems Aspects of European EPBD (Energy performance of buildings directive) and energy performance certificate Aspects of life cycle oriented planning process (LCA, LCC) Optimisation potentials in planning, constructing and operating buildings considering comfort criteria Examples for new constructed buildings and renovation Quality assurance of total quality buildings International sustainable building certification systems

Prerequisites: n.a.

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Lecture/Seminar profile:

International Project Development (IPD3ILV)

Degree course SES.ma

Course title International Project Development

Course code IPD3ILV

Level Master

Term WS19/20

Lecturer Markus Feistritzer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Meaning and how to approach for the project states • Feasibility study • Due diligence • Energy Yield Assessment • Permitting

Prerequisites:

n.a.

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Lecture/Seminar profile:

Renewable Energy Resources (RER1UE)

Degree course SES.ma

Course title Renewable Energy Resources

Course code RER1UE

Level Master

Term WS19/20

Lecturer Robert Höller

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Potential of solar radiation Photovoltaics: • Technical components • Introduction to PV systems • Solar cells types • Production of PV cells • Properties of solar modules and generators • DC and AC components • Solar batteries • Basic design and planning of PV grid-connected and island systems • Energy yield estimation of solar systems Wind energy: • Wind potential • Wind turbine types • Wind turbine system concepts • Structure and technical components of wind turbines • Basic design and planning of wind farms • Energy yield estimation of wind farms General: • Status of the technologies • Potential of CO2 reduction

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• Environmental impact

Prerequisites:

n.a.

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Renewable Energy Resources (RER1VO)

Degree course SES.ma

Course title Renewable Energy Resources

Course code RER1VO

Level Master

Term WS19/20

Lecturer Robert Höller, Wilhelm Süßenbacher

Contact hours per week 3

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 7

Learning objectives:

n.a.

Content:

Potential of solar radiation Photovoltaics: • Technical components • Introduction to PV systems • Solar cells types • Production of PV cells • Properties of solar modules and generators • DC and AC components • Solar batteries • Basic design and planning of PV grid-connected and island systems • Energy yield estimation of solar systems Wind energy: • Wind potential • Wind turbine types • Wind turbine system concepts • Structure and technical components of wind turbines • Basic design and planning of wind farms • Energy yield estimation of wind farms General: • Status of the technologies • Potential of CO2 reduction

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• Environmental impact

Prerequisites:

n.a.

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Lecture/Seminar profile:

Intercultural Communication (SSK1UE)

Degree course SES.ma

Course title Intercultural Communication

Course code SSK1UE

Level Master

Term WS19/20

Lecturer Gerhard Peter Krejci, Josephine Sommerhuber

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 8

Learning objectives:

n.a.

Content:

Intercultural Communication: Theory and key principles of intercultural communication Processes of intercultural adaption (eg. Stage model of Milton Bennet,...) Cultural specificity in international "meetings" and projects Practicing negotiations and conflict resolution in a intercultural context Development of intercultural key competences

Prerequisites:

n.a.

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Lecture/Seminar profile:

Contract Law (CL1VO)

Degree course AB.ma

Course title Contract Law

Course code CL1VO_Gr.B

Level Master

Term WS19/20

Lecturer Armin Toifl

Contact hours per week 2

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basic knowledge of foreign legal systems International commercial law, Uniform Law (UNIDROIT, UN Sales Convention/CISG) Trade practices and trade terms, Incoterms Important types of contracts (especially developer contract, construction contract, contract, investment contract, license, freight forwarding and transport contract, employment contract, cooperative agreement, contract of insurance) Arbitration, penalties International payments and payment security, and performance and credit protection

Prerequisites:

n.a.

224

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Lecture/Seminar profile:

Driving Assistance Systems (DAS3IL)

Degree course MEWI.ma

Course title Driving Assistance Systems

Course code DAS3IL

Level Master

Term WS19/20

Lecturer Christian Zehetner, Thomas Schlechter

Contact hours per week 2,25

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Driver Support Systems: o speed and distance regulators, parking systems, naviga-tion systems with additional functions • Safety Systems: o collision warning, braking assistance, lane leaving warn-ing, lane change warning, bend-tracking lights, night vi-sion • Environment Sensors: o radar distance-and near field, lasar, camera, utra-sound • Actuators: o brake hydraulics, automatic handbrake, steering actua-tors, engine/gear steering • Functional Aspects: o HMI (indication/operating concept) o safety considerations o system networking o package, design o testing, trial

Prerequisites:

n.a.

225

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Lecture/Seminar profile:

Market-oriented Management (MM1SE)

Degree course MEWI.ma

Course title Market-oriented Management

Course code MM1SE

Level Master

Term WS19/20

Lecturer Kurt Gaubinger

Contact hours per week 0,5

ECTS credits 1

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

Case Studies - field of International Marketing, field of Technology marketing and field of Industrial Goods Sector

Prerequisites:

n.a.

226

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Lecture/Seminar profile:

New Product Development (NPD1IL)

Degree course MEWI.ma

Course title New Product Development

Course code NPD1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 1,5

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

- CAE in the motor vehicle industry (overview, connections, interfaces) - Development methods for mechatronic systems „V Model“; VDI 2206: • Requirements for Development • Specifications • System and Product Design • Model Formation and Simulation (FEM, CFD, MKS, …) • Domain-Specific Component Draft • Prototypes • Component Integration • Module Test • System Integration (Hardware) • System Integration (Software) • System and Product Tests • Production and Market Tests.

Prerequisites:

n.a.

227

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Lecture/Seminar profile:

Quality Management 1 (QMA1IL)

Degree course MEWI.ma

Course title Quality Management 1

Course code QMA1IL

Level Master

Term WS19/20

Lecturer Thomas Junggeburth

Contact hours per week 0,75

ECTS credits 1

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

• Quality management basics: o principles of quality management o Quality objectives (VDA 11) o Organizational structure and sequences (processes and responsibilities) o Documents and records (relevant information - VDA 1) o Control loops within quality management (management review and audit) o Business Operating System CQI -5 o Quality cost calculation (cost of conformity - and cost of nonconformity) o Cost of poor quality CQI-22 • Automotive quality management: o DIN ISO 9001 general quality management standard o ISO/TS 16949 automotive quality management standard

Prerequisites:

n.a.

228

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Lecture/Seminar profile:

Model based Engineering 2 (SIM3LU)

Degree course MEWI.ma

Course title Model based Engineering 2

Course code SIM3LU

Level Master

Term WS19/20

Lecturer

Contact hours per week 0,75

ECTS credits 1

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Laboratory: • Application of theoretical methods using selected mechatronic motor vehicle components

Prerequisites:

n.a.

229

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Lecture/Seminar profile:

Model based Engineering 2 (SIM3VO)

Degree course MEWI.ma

Course title Model based Engineering 2

Course code SIM3VO

Level Master

Term WS19/20

Lecturer

Contact hours per week 1,25

ECTS credits 2,5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Basics of linear and non-linear systems o stability behaviour o linearisation, basics of regulator design • Theoretical realtime systems (realtime verification) • Making of realtime models from mechanical, electrical and thermic systems • “Software in the Loop“ (SIL) and “Hardware in the Loop” (HIL) • Mathematical consideration of safety, reliability and availability of system components and complete systems • Monitoring of mechatronic systems and fault diagnosis (interface to IT)

Prerequisites:

n.a.

230

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Lecture/Seminar profile:

Vehicle Components & Driving Dynamics (VCD1IL)

Degree course MEWI.ma

Course title Vehicle Components & Driving Dynamics

Course code VCD1IL

Level Master

Term WS19/20

Lecturer

Contact hours per week 2,5

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Motor vehicle architecture concepts • Motor vehicle categorisation • Tyres • Motor vehicle dynamics • Chassis • Steering systems • Brakes • Handling and driving dynamics

Prerequisites:

n.a.

231