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Page 1: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

ERE

Courses taught in English

Version October 2019

Page 2: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

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) 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, LA/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.

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 summer semester 2020. 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.

Page 4: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

Bachelor's Degree Programme

Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Automation Engineering (Bachelor, Wels Campus)

AT.ba BP6PT Work Experience/Internship Project 6 Bachelor 15 9

AT.ba DIS6ILV_AMA Discrete Event Simulation Integrated course 6 Bachelor 3 10

AT.ba HTR6LB_MECH Handling Technology and Robotics 6 Laboratory session 6 Bachelor 1,5 11

AT.ba IBV6LB Industrial Image Processing Laboratory session 6 Bachelor 1,5 12

AT.ba IBV6VO Industrial Image Processing Lecture 6 Bachelor 1,5 13

AT.ba IPR4PT Industrial Project Work Project 4 Bachelor 3 14

AT.ba ROB4VO Robotics Lecture 4 Bachelor 1 15

Bio- and Environmental Technology (Bachelor, Wels Campus)

BUT.ba ABW2VO Municipal Waste Water Purification Lecture 2 Bachelor 3 16

BUT.ba AGR4LB Air Pollution Control in Industry Laboratory session 4 Bachelor 1 17

BUT.ba AGR4UE Air Pollution Control in Industry Practice-oriented session

4 Bachelor 1 18

BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19

BUT.ba BRW5LB Brewing Science Laboratory session 4 Bachelor 1 20

BUT.ba FUP4PT Interdisciplinary Project I Project 4 Bachelor 2,5 21

BUT.ba GAG4VO Basics in Air Pollution Control Lecture 4 Bachelor 1,5 22

BUT.ba MIB4LB Microbiology III Laboratory session 4 Bachelor 2 23

Electrical Engineering (Bachelor, Wels Campus)

EE.ba BUS6UE Business and Economics Practice-oriented session

6 Bachelor 2 24

EE.ba BUS6VO Business and Economics Lecture 6 Bachelor 2 25

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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 CAE4LA Corrosion and Electrocorrosion Laboratory session 4 Bachelor 1 26

EE.ba CAE4VO Corrosion and Electrocorrosion Lecture 4 Bachelor 1 27

EE.ba CES4LA Components of Electrical Systems Laboratory session 4 Bachelor 2 28

EE.ba CES4UE Components of Electrical Systems Practice-oriented session

4 Bachelor 1,5 30

EE.ba CES4VO Components of Electrical Systems Lecture 4 Bachelor 5 32

EE.ba EEN2LA Electrical Engineering II Laboratory session 2 Bachelor 2 34

EE.ba EEN2UE Electrical Engineering II Practice-oriented session

2 Bachelor 2 36

EE.ba EEN2VO Electrical Engineering II Lecture 2 Bachelor 3 38

EE.ba EMA4LA Electrical Machines II Laboratory session 4 Bachelor 1 40

EE.ba EMA4VO Electrical Machines II Lecture 4 Bachelor 3 42

EE.ba FMH2UE Fluid Mechanics and Heat Transfer Practice-oriented session

2 Bachelor 2 44

EE.ba FMH2VO Fluid Mechanics and Heat Transfer Lecture 2 Bachelor 2 46

EE.ba HVE4LA High Voltage Engineering Laboratory session 4 Bachelor 2 48

EE.ba HVE4UE High Voltage Engineering Practice-oriented session

4 Bachelor 2 50

EE.ba HVE4VO High Voltage Engineering Lecture 4 Bachelor 3 52

EE.ba MAT2UE Mathematics II Practice-oriented session

2 Bachelor 2,5 54

EE.ba MAT2VO Mathematics II Lecture 2 Bachelor 5 56

EE.ba MEE2UE Mechanics Practice-oriented session

2 Bachelor 3 58

EE.ba MEE2VO Mechanics Lecture 2 Bachelor 4 59

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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 SDE6VO Statutory Directives for Electrical Engineering Lecture 6 Bachelor 2 60

EE.ba SSK2SE Presentation Techniques Seminar 2 Bachelor 1,5 61

EE.ba SSK4SE Intercultural Competence for the Workplace Seminar 4 Bachelor 1,5 62

EE.ba SSK6SE Teamwork and Conflict Management Seminar 6 Bachelor 2 63

German Language (Bachelor, Wels Campus)

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

2 Bachelor 3 64

FWE DAF_A1.2_UE German Language A 1.2 Practice-oriented session

2 Bachelor 3 65

FWE DAF_A2.2_UE German Language A 2.2 Practice-oriented session

2 Bachelor 3 67

FWE DAF_B1.2_UE German Language B 1.2 Practice-oriented session

2 Bachelor 3 69

FWE DAF_B2.2_UE German Language B 2.2 Practice-oriented session

2 Bachelor 3 71

FWE DAF_C1.2_UE German Language C 1.2 Practice-oriented session

2 Bachelor 3 72

Innovation Engineering & Management (Bachelor, Wels Campus)

IPM.ba ENG2UE English II Practice-oriented session

2 Bachelor 2 73

IPM.ba ENG4UE English IV Practice-oriented session

4 Bachelor 2 75

Food Technology and Nutrition (Bachelor, Wels Campus)

LTE.ba FUP4PT Interdisciplinary Project Project 4 Bachelor 4 76

LTE.ba MBI4LB Molecular Biology Laboratory session 4 Bachelor 2 77

Materials and Process Engineering (Bachelor, Wels Campus)

MKT.ba BPR6PT Internship Internship 6 Bachelor 20 78

MKT.ba IPA4PT Interdisciplinary project work 1 Project 4 Bachelor 2 79

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Process Engineering and Production (Bachelor, Wels Campus)

VTP.ba CHT6VO Chemical Technology Lecture 6 Bachelor 2,5 80

VTP.ba IP4PT Inter-disciplinary Project Work Project 4 Bachelor 4 81

Mechatronics and Business Bac (Bachelor - Part Time, Wels Campus)

MEWI.ba PM4VILV Project Management Lecture 4 Bachelor 1 82

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

PDK.ba ENG2UE English I Practice-oriented session

2 Bachelor 1 83

PDK.ba ENG4UE English III Practice-oriented session

4 Bachelor 2 84

4

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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 PCC2ILV Plant Construction Contracts Integrated course 2 Master 2,5 88

Applied Energy Engineering (Master, Wels Campus)

AET.ma 19_TRW2UE Technical Writing Practice-oriented session

2 Master 1,5 89

AET.ma FIN4IL Financing Integrated course 4 Master 2,5 90

Automotive Mechatronics and Management (Master, Wels Campus)

AMM.ma ACW2IL Academic Working Integrated course 2 Master 1 91

AMM.ma AIT2IL Automotive IT Systems 2 Integrated course 2 Master 3 92

AMM.ma CTR2IL Controlling Integrated course 2 Master 3 93

AMM.ma DSE2IL Drive Systems and E-Mobility Integrated course 2 Master 4 94

AMM.ma DTC2IL Drive Train Control Systems Integrated course 2 Master 4 95

AMM.ma FUS2IL Functional Safety Integrated course 2 Master 1 96

AMM.ma MOM2IL Market-Oriented Management Integrated course 2 Master 2 97

AMM.ma QMA2IL Automotive Quality Management 2 Integrated course 2 Master 2 98

Automation Engineering (Master, Wels Campus)

AT.ma IBV2LB Industrial Image Processing Laboratory session 2 Master 3 100

AT.ma IBV2VO Industrial Image Processing Lecture 2 Master 3 101

Bio- and Environmental Technology (Master, Wels Campus)

BUT.ma ENG2UE English Practice-oriented session

2 Master 2 102

Electrical Engineering (Master, Wels Campus)

EE.ma CEN2LB Control Engineering Laboratory session 2 Master 3 103

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Electrical Engineering (Master, Wels Campus)

EE.ma CEN2UE Control Engineering Practice-oriented session

2 Master 2 104

EE.ma CEN2VO Control Engineering Lecture 2 Master 3 105

EE.ma EFT2LB Electromagnetic Field Theory in Multiphysics Systems

Laboratory session 2 Master 2 106

EE.ma EFT2UE Electromagnetic Field Theory in Multiphysics Systems

Practice-oriented session

2 Master 3 107

EE.ma EFT2VO Electromagnetic Field Theory in Multiphysics Systems Lecture 2 Master 4 108

EE.ma FIN4ILV Financing Integrated course 4 Master 2 109

EE.ma PCB2PT Design of Printed Circuit Boards Project 2 Master 2 110

EE.ma PET2LB Power Electronics Laboratory session 2 Master 2 111

EE.ma PET2UE Power Electronics Practice-oriented session

2 Master 2 112

EE.ma PET2VO Power Electronics Lecture 2 Master 3 113

EE.ma STA2ILV Statistics Integrated course 2 Master 4 114

Innovation and Product Management (Master, Wels Campus)

IPM.ma CAID2UE Computer Aided Industrial Design I Integrated course 2 Master 2 115

IPM.ma CAM2UE Computer Aided Manufacturing Practice-oriented session

2 Master 2 116

IPM.ma CAM2VO Computer Aided Manufacturing Lecture 2 Master 2 117

IPM.ma CHM2IL Change Management Integrated course 2 Master 1 118

IPM.ma CTR2IL Controlling Integrated course 2 Master 2 119

IPM.ma DET2IL Design Theory Integrated course 2 Master 1 120

IPM.ma DPT2PT Design Project Technical Design I Project 2 Master 5 121

6

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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 DYN2IL Dynamics Integrated course 2 Master 6 122

IPM.ma EHW2SE Design & Prototyping Seminar 2 Master 3 123

IPM.ma IKM2SE Intercultural Management Seminar 2 Master 2 124

IPM.ma KAM2IL Relationship Marketing und Key-Account-Management

Integrated course 2 Master 2 125

IPM.ma KFK2UE Negotiation Practice-oriented session

2 Master 2 127

IPM.ma MAD2IL Materials & Design Integrated course 2 Master 1 128

IPM.ma MBE2IL Model Based Engineering - Introduction Integrated course 2 Master 1 129

IPM.ma MBE2LU Model Based Engineering - Introduction Laboratory session 2 Master 2 130

IPM.ma MOM2IL Mechanics of Materials Integrated course 2 Master 6 131

IPM.ma NBD2IL Entrepreneurship & New Business Development

Integrated course 2 Master 1 132

IPM.ma PDM2IL Product Data Management Integrated course 2 Master 2 133

IPM.ma PEP2IL New Product Development Integrated course 2 Master 1 134

IPM.ma SPI2IL Strategic Innovation Management Integrated course 2 Master 2 135

IPM.ma SUS2IL Sustainability Integrated course 2 Master 1 136

IPM.ma WST2LB Materials Testing Laboratory session 2 Master 2 137

IPM.ma WST2VO Materials Science Lecture 2 Master 3 138

IPM.ma ZET2SE 2D Presentation Techniques & Drawing Seminar 2 Master 1 139

IPM.ma ZTA2IL Future Studies and Technological Impact Assessment

Integrated course 2 Master 1 140

7

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Programme (department)

Course unit code Course unit title Course type Semester

(level) Level ECTS Page

Food Technology and Nutrition (Master, Wels Campus)

LTE.ma EPP2ILV Nutrition Physiology and Pathophysiology II Integrated course 2 Master 2 141

Materials and Process Engineering (Master, Wels Campus)

MKT.ma AKW4SE Ausgewählte Kapitel der Werkstofftechnik Seminar 4 Master 1,07 142

MKT.ma DPA4PT Master Thesis Master's thesis 4 Master 18 143

MKT.ma PRJ2PT Project Work 2 Project 2 Master 12 144

Sustainable Energy Systems (Master, Wels Campus)

SES.ma CHP2UE Cogeneration of Heat and Power Practice-oriented session

2 Master 2 145

SES.ma CHP2VO Cogeneration of Heat and Power Lecture 2 Master 3 146

SES.ma ETD2UE Modern Energy Transport and Distribution Practice-oriented session

2 Master 3 147

SES.ma ETD2VO Modern Energy Transport and Distribution Lecture 2 Master 3 148

SES.ma FIN2IL Financing Integrated course 2 Master 2 149

SES.ma IPM4IL International Project Management Integrated course 4 Master 2 150

SES.ma LSP2ILV Large-Scale Wind and Solar Power Plants Integrated course 2 Master 2,5 151

SES.ma RER2UE Renewable Energy Resources II Practice-oriented session

2 Master 2 152

SES.ma RER2VO Renewable Energy Resources II Lecture 2 Master 3 154

SES.ma SSK4UE Intercultural Management Practice-oriented session

4 Master 2 156

Plant Construction (Master - Part Time, Wels Campus)

AB.ma PCC2ILV_Gr.B Plant Construction Contracts Integrated course 2 Master 2,5 157

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

MEWI.ma MMI2ILV Human-Computer Interaction Integrated course 2 Master 2 158

8

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Lecture/Seminar profile:

Work Experience/Internship (BP6PT)

Degree course AT.ba

Course title Work Experience/Internship

Course code BP6PT

Level Bachelor

Term SS20

Lecturer

Contact hours per week 0

ECTS credits 15

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 2

Learning objectives:

n.a.

Content:

The theme of the internship is based on concrete problems of industrial practice. It is a coherent task at the qualification level of the student, preferably in the context of a project. The work is done under the supervision of the degree programme and a supervisor in the company.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Discrete Event Simulation (DIS6ILV)

Degree course AT.ba

Course title Discrete Event Simulation

Course code DIS6ILV_AMA

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

•getting to know event-discrete process simulation •queue theory for analysis and optimisation •methods for reducing commissioning time •development of hardware in the loop - models •getting to know a modelling language and a simulation tool used in industry for discrete simulation •carrying out a commissioning simulation

Prerequisites:

n.a.

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Lecture/Seminar profile:

Handling Technology and Robotics 6 (HTR6LB)

Degree course AT.ba

Course title Handling Technology and Robotics 6

Course code HTR6LB_MECH

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

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:

Practicals: Stationsweise betreute Kleingruppen in folgenden Stationen eines Flexiblen Fertigungssystems: Small groups work at the following work stations of a flexible manufacturing system: • automation equipment • image processing and robotics • programming a safety PLC • programming guidance system/visualisation • teaching a robot • offline programming and simulation • programming an RFID system

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Image Processing (IBV6LB)

Degree course AT.ba

Course title Industrial Image Processing

Course code IBV6LB

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

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:

Laboratory: • working with image processing software • determination of geometric parameters • filter methods • size control • presence control • script recognition

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Image Processing (IBV6VO)

Degree course AT.ba

Course title Industrial Image Processing

Course code IBV6VO

Level Bachelor

Term SS20

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:

Lecture: • optics • radiation • components • illumination • camera • transfer • mathematics of image processing • processes

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Project Work (IPR4PT)

Degree course AT.ba

Course title Industrial Project Work

Course code IPR4PT

Level Bachelor

Term SS20

Lecturer

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:

•Solving of an advanced problem in the field of Mechatronics, preferably in industrial practice, in a team, by use of all knowledge and skills previously acquired in the degree programme •Derivation from the project of a topic for the first Bachelor Paper

Prerequisites:

n.a.

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Lecture/Seminar profile:

Robotics (ROB4VO)

Degree course AT.ba

Course title Robotics

Course code ROB4VO

Level Bachelor

Term SS20

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:

Lecture: Construction and uses of robots, kinematics of robots, coordinate systems in robots (Denavit-Hartenberg parameters), reverse transformation, control and programming of robots, track regulation and planning, offline programming, calibration of robots, gripper technologies, simulation of robot cells, use of robots in manufacturing, programming of real industrial robots in practice exercises (uses e.g. in a linked production process)

Prerequisites:

n.a.

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Lecture/Seminar profile:

Municipal Waste Water Purification (ABW2VO)

Degree course BUT.ba

Course title Municipal Waste Water Purification

Course code ABW2VO

Level Bachelor

Term SS20

Lecturer

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:

Funktionsweise von Kläranlagen und Kennenlernen gängiger Abwasserreinigungsverfahren (Belebtschlamm-, Tropfkörper-, und weitere gängige Abwasserreinigungsverfahren) Kennenlernen und Verstehen der chemischen und biologischen Prozesse (Kohlenstoff-, Stickstoff- und Phosphorentfernung) Anwendung chemischer Grundlagen zum Verständnis der Vorgänge in der kommunalen Abwasserreinigung Verwertungsmöglichkeiten und Behandlung von Klärschlamm Grundkenntnisse zur Auslegung von Kläranlagen

Prerequisites:

Grundlagen Chemie/Biochemie, Analytische Chemie

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Lecture/Seminar profile:

Air Pollution Control in Industry (AGR4LB)

Degree course BUT.ba

Course title Air Pollution Control in Industry

Course code AGR4LB

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 6

Learning objectives:

n.a.

Content:

Mass and energy balances in waste gas cleaning processes Design and dimensioning of waste gas cleaning processes and equipment for ventilation, dedusting, DeSOx, DeNOx, reduction of VOC and PCDD/F emissions Planning and execution of emission measurements

Prerequisites:

Mathematik, Thermodynamik, Stöchiometrie,

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Lecture/Seminar profile:

Air Pollution Control in Industry (AGR4UE)

Degree course BUT.ba

Course title Air Pollution Control in Industry

Course code AGR4UE

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Mass and energy balances in waste gas cleaning processes Design and dimensioning of waste gas cleaning processes and equipment for ventilation, dedusting, DeSOx, DeNOx, reduction of VOC and PCDD/F emissions Planning and execution of emission measurements

Prerequisites:

Mathematik, Thermodynamik, Stöchiometrie,

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Lecture/Seminar profile:

Air Pollution Control in Industry (AGR4VO)

Degree course BUT.ba

Course title Air Pollution Control in Industry

Course code AGR4VO

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Mass and energy balances in waste gas cleaning processes Design and dimensioning of waste gas cleaning processes and equipment for ventilation, dedusting, DeSOx, DeNOx, reduction of VOC and PCDD/F emissions Planning and execution of emission measurements

Prerequisites:

Mathematik, Thermodynamik, Stöchiometrie,

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Lecture/Seminar profile:

Brewing Science (BRW5LB)

Degree course BUT.ba

Course title Brewing Science

Course code BRW5LB

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1

Course type Laboratory session

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

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:

Grundlagen Biologie/Mikrobiologie, Mikrobiologie 1

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Lecture/Seminar profile:

Interdisciplinary Project I (FUP4PT)

Degree course BUT.ba

Course title Interdisciplinary Project I

Course code FUP4PT

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2,5

Course type Project

Examinations continuous assessment

Language of instruction German/English

Places for international students 18

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

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Lecture/Seminar profile:

Basics in Air Pollution Control (GAG4VO)

Degree course BUT.ba

Course title Basics in Air Pollution Control

Course code GAG4VO

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1,5

Course type Lecture

Examinations written examination

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

Atmosphere and atmospheric pollutants Pollutants in the atmosphere: emission, transmission and immission Air pollution and emission measurements Overview on processes for waste gas cleaning (dedusting, DeSOx, DeNOx, reduction of VOC emissions)

Prerequisites:

Mathematik und Statistik I und II, Technische

22

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Lecture/Seminar profile:

Microbiology III (MIB4LB)

Degree course BUT.ba

Course title Microbiology III

Course code MIB4LB

Level Bachelor

Term SS20

Lecturer

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:

Anwendung niederer Pilze (Antibiotika, Fermentation, Gärung) Identifikation von Bakterien, Schnelltests, bunte Reihe, Schimmelpilzanalytik., Fermentation, Gärung)

Prerequisites:

Grundlagen Biologie/Mikrobiologie

23

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Lecture/Seminar profile:

Business and Economics (BUS6UE)

Degree course EE.ba

Course title Business and Economics

Course code BUS6UE

Level Bachelor

Term SS20

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:

Introduction to business economics Legal form of companies Formation of companies Bankruptcy Core processes of a company Accounting and balancing Fundamentals of costing (cost distribution sheet, calculation) Profitability calculation Investment calculation Based on examples out of the field electrical engineering, such as service costs of facilities. Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

24

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Lecture/Seminar profile:

Business and Economics (BUS6VO)

Degree course EE.ba

Course title Business and Economics

Course code BUS6VO

Level Bachelor

Term SS20

Lecturer

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:

Introduction to business economics Legal form of companies Formation of companies Bankruptcy Core processes of a company Accounting and balancing Fundamentals of costing (cost distribution sheet, calculation) Profitability calculation Investment calculation Based on examples out of the field electrical engineering, such as service costs of facilities. Please note: Attending the lecture is only possible, if a student is also attending the skills practice

Prerequisites:

n.a.

25

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Lecture/Seminar profile:

Corrosion and Electrocorrosion (CAE4LA)

Degree course EE.ba

Course title Corrosion and Electrocorrosion

Course code CAE4LA

Level Bachelor

Term SS20

Lecturer

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:

Fundamentals of corrosion electro corrosion oxidation (surface oxidation) Influence of aggressive environment e.g. soil fluids atmospheres Fundamentals and proper measures for corrosion protection Typical damages and their assessment Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice.

Prerequisites:

n.a.

26

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Lecture/Seminar profile:

Corrosion and Electrocorrosion (CAE4VO)

Degree course EE.ba

Course title Corrosion and Electrocorrosion

Course code CAE4VO

Level Bachelor

Term SS20

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:

Fundamentals of corrosion electro corrosion oxidation (surface oxidation) Influence of aggressive environment e.g. soil fluids atmospheres Fundamentals and proper measures for corrosion protection Typical damages and their assessment Please note: Attending the lecture is only possible, if a student is also attending the laboratory

Prerequisites:

n.a.

27

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Lecture/Seminar profile:

Components of Electrical Systems (CES4LA)

Degree course EE.ba

Course title Components of Electrical Systems

Course code CES4LA

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations written examination

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

Function, characteristic parameter and design aspects operational ele-ments for electrical power systems e.g. switches o short circuit interrupter o insulation switch o electrical arcs and arc distinguishing o hybrid switching o o ... special protection switches o circuit breaker o fault current interrupter o arc fault current interrupter cables overhead lines surge protection devices transformers bushings and joints storage systems e.g. o Batteries o hydrogen based systems

28

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o flywheel systems o superconductive systems o ... Maintenance, condition monitoring (and diagnostics), and protection as-pects for these components Insulation coordination Select the right components and combine them at given boundary condi-tions Special operational behavior of the components Standardized tests and statutory directives For all the topics above a special respect should be given to energy effi-ciency and environmental impacts Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice.

Prerequisites:

n.a.

29

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Lecture/Seminar profile:

Components of Electrical Systems (CES4UE)

Degree course EE.ba

Course title Components of Electrical Systems

Course code CES4UE

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 1,5

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Function, characteristic parameter and design aspects operational ele-ments for electrical power systems e.g. switches o short circuit interrupter o insulation switch o electrical arcs and arc distinguishing o hybrid switching o o ... special protection switches o circuit breaker o fault current interrupter o arc fault current interrupter cables overhead lines surge protection devices transformers bushings and joints storage systems e.g. o Batteries o hydrogen based systems

30

Page 34: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

o flywheel systems o superconductive systems o ... Maintenance, condition monitoring (and diagnostics), and protection as-pects for these components Insulation coordination Select the right components and combine them at given boundary condi-tions Special operational behavior of the components Standardized tests and statutory directives For all the topics above a special respect should be given to energy effi-ciency and environmental impacts Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

31

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Lecture/Seminar profile:

Components of Electrical Systems (CES4VO)

Degree course EE.ba

Course title Components of Electrical Systems

Course code CES4VO

Level Bachelor

Term SS20

Lecturer

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:

Function, characteristic parameter and design aspects operational ele-ments for electrical power systems e.g. switches o short circuit interrupter o insulation switch o electrical arcs and arc distinguishing o hybrid switching o o ... special protection switches o circuit breaker o fault current interrupter o arc fault current interrupter cables overhead lines surge protection devices transformers bushings and joints storage systems e.g. o Batteries o hydrogen based systems

32

Page 36: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

o flywheel systems o superconductive systems o ... Maintenance, condition monitoring (and diagnostics), and protection as-pects for these components Insulation coordination Select the right components and combine them at given boundary condi-tions Special operational behavior of the components Standardized tests and statutory directives For all the topics above a special respect should be given to energy effi-ciency and environmental impacts Please note: Attending the lecture is only possible, if a student is also attending the laboratory and skills practice.

Prerequisites:

n.a.

33

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Lecture/Seminar profile:

Electrical Engineering II (EEN2LA)

Degree course EE.ba

Course title Electrical Engineering II

Course code EEN2LA

Level Bachelor

Term SS20

Lecturer

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:

Semiconductor elements (Diode, Transistor, IGBT, Thyristor, Varistor,...) Physical principles Characteristics Operational behavior Elementary circuits Protective circuits Basic optoelectronic elements and principles Photodiode and solar cell CCD Light depending resistors Basics electronic circuits Electronically switches o Protection methods Free wheel diode ... Analog amplifier Operational amplifier Constant current circuit Essential converter circuits o Buck, boost converter o Rectifier circuits

34

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One, and three phase o DC-DC converters o Inverter circuits Digital circuits Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

Prerequisites:

n.a.

35

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Lecture/Seminar profile:

Electrical Engineering II (EEN2UE)

Degree course EE.ba

Course title Electrical Engineering II

Course code EEN2UE

Level Bachelor

Term SS20

Lecturer

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:

Semiconductor elements (Diode, Transistor, IGBT, Thyristor, Varistor,...) Physical principles Characteristics Operational behavior Elementary circuits Protective circuits Basic optoelectronic elements and principles Photodiode and solar cell CCD Light depending resistors Basics electronic circuits Electronically switches o Protection methods Free wheel diode ... Analog amplifier Operational amplifier Constant current circuit Essential converter circuits o Buck, boost converter o Rectifier circuits

36

Page 40: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

One, and three phase o DC-DC converters o Inverter circuits Digital circuits Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

37

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Lecture/Seminar profile:

Electrical Engineering II (EEN2VO)

Degree course EE.ba

Course title Electrical Engineering II

Course code EEN2VO

Level Bachelor

Term SS20

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 5

Learning objectives:

n.a.

Content:

Semiconductor elements (Diode, Transistor, IGBT, Thyristor, Varistor,...) Physical principles Characteristics Operational behavior Elementary circuits Protective circuits Basic optoelectronic elements and principles Photodiode and solar cell CCD Light depending resistors Basics electronic circuits Electronically switches o Protection methods Free wheel diode ... Analog amplifier Operational amplifier Constant current circuit Essential converter circuits o Buck, boost converter o Rectifier circuits

38

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One, and three phase o DC-DC converters o Inverter circuits Digital circuits Please note: Attending the lecture is only possible, if a student is also attending the laboratory and skills practice.

Prerequisites:

n.a.

39

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Lecture/Seminar profile:

Electrical Machines II (EMA4LA)

Degree course EE.ba

Course title Electrical Machines II

Course code EMA4LA

Level Bachelor

Term SS20

Lecturer

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:

Operational behavior of electrical machines with special respect to electrical energy engineering system feedback transient behavior and modeling e.g. mechanically oscillation load steps stationary and non stationary operational points with special re-spect to load characteristics harmonics and measures o generation by the machines o impact to machines by external harmonics o inverter machine interaction inrush current grid integration wind applications electro mobility generator in power plants transformers for electrical energy engineering Dimensioning of electrical machines for specific application. Protection of electrical machines Overview on machine diagnostic and maintenance Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills

40

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practice

Prerequisites:

n.a.

41

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Lecture/Seminar profile:

Electrical Machines II (EMA4VO)

Degree course EE.ba

Course title Electrical Machines II

Course code EMA4VO

Level Bachelor

Term SS20

Lecturer

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:

Operational behavior of electrical machines with special respect to electrical energy engineering system feedback transient behavior and modeling e.g. mechanically oscillation load steps stationary and non stationary operational points with special re-spect to load characteristics harmonics and measures o generation by the machines o impact to machines by external harmonics o inverter machine interaction inrush current grid integration wind applications electro mobility generator in power plants transformers for electrical energy engineering Dimensioning of electrical machines for specific application. Protection of electrical machines Overview on machine diagnostic and maintenance Please note: Attending the lecture is only possible, if a student is also attending the laboratory

42

Page 46: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

Prerequisites:

n.a.

43

Page 47: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

Lecture/Seminar profile:

Fluid Mechanics and Heat Transfer (FMH2UE)

Degree course EE.ba

Course title Fluid Mechanics and Heat Transfer

Course code FMH2UE

Level Bachelor

Term SS20

Lecturer Johannes Wurm

Contact hours per week 1

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:

Fundamentals principles of flows and mathematical modeling e.g. fundamental flow equations properties of fluids and mathematical modeling free and forced convection / flow flow resistance lift force ... Elements for energy conversion out of flows e.g. turbines wind plates Calculation of flows under simplified boundary conditions, with special re-spect to energy and power balances. Fundamentals principles of heat flow and heat transfer and mathematical modeling e.g. fundamental heat transfer equations material properties and mathematical modeling Elements for influencing heat transfer with special respect to electrical ap-paratus Calculation of heat flow under simplified boundary conditions, with special respect to energy and power balances Please note: Attending the skills practice is only possible, if a student is also attending the lecture

44

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Prerequisites:

n.a.

45

Page 49: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

Lecture/Seminar profile:

Fluid Mechanics and Heat Transfer (FMH2VO)

Degree course EE.ba

Course title Fluid Mechanics and Heat Transfer

Course code FMH2VO

Level Bachelor

Term SS20

Lecturer Johannes Wurm

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:

Fundamentals principles of flows and mathematical modeling e.g. fundamental flow equations properties of fluids and mathematical modeling free and forced convection / flow flow resistance lift force ... Elements for energy conversion out of flows e.g. turbines wind plates Calculation of flows under simplified boundary conditions, with special re-spect to energy and power balances. Fundamentals principles of heat flow and heat transfer and mathematical modeling e.g. fundamental heat transfer equations material properties and mathematical modeling Elements for influencing heat transfer with special respect to electrical ap-paratus Calculation of heat flow under simplified boundary conditions, with special respect to energy and power balances Please note: Attending the lecture is only possible, if a student is also attending the skills practice

46

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Prerequisites:

n.a.

47

Page 51: Courses taught in English - FH OOE · session 4 Bachelor 1 18 : BUT.ba AGR4VO Air Pollution Control in Industry Lecture 4 Bachelor 1 19 : BUT.ba BRW5LB Brewing Science Laboratory

Lecture/Seminar profile:

High Voltage Engineering (HVE4LA)

Degree course EE.ba

Course title High Voltage Engineering

Course code HVE4LA

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 9

Learning objectives:

n.a.

Content:

Fundamentals of high voltage engineering Fundamentals of dielectric break down in • solid • liquid and • gaseous insulations Lightning effects Field grading mechanisms Creeping currents and measures against creeping currents with special respect to disadvantageous environmental conditions Measurement technology Generation of high voltage and high current High voltage laboratories Standardised pulses and test equipments Essential calculation methods Aspects of monitoring and diagnostics Electrical arcs and arc distinguishing Calculation and dimensioning methods for simple boundary conditions Note: Attending the laboratory is only possible, if a student is also attending the lecture and skills practice

48

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Prerequisites:

n.a.

49

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Lecture/Seminar profile:

High Voltage Engineering (HVE4UE)

Degree course EE.ba

Course title High Voltage Engineering

Course code HVE4UE

Level Bachelor

Term SS20

Lecturer

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 high voltage engineering Fundamentals of dielectric break down in • solid • liquid and • gaseous insulations Lightning effects Field grading mechanisms Creeping currents and measures against creeping currents with special respect to disadvantageous environmental conditions Measurement technology Generation of high voltage and high current High voltage laboratories Standardised pulses and test equipments Essential calculation methods Aspects of monitoring and diagnostics Electrical arcs and arc distinguishing Calculation and dimensioning methods for simple boundary conditions Note: Attending the skills practice is only possible, if a student is also attending the lecture.

50

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Prerequisites:

n.a.

51

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Lecture/Seminar profile:

High Voltage Engineering (HVE4VO)

Degree course EE.ba

Course title High Voltage Engineering

Course code HVE4VO

Level Bachelor

Term SS20

Lecturer

Contact hours per week 3

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Fundamentals of high voltage engineering Fundamentals of dielectric break down in • solid • liquid and • gaseous insulations Lightning effects Field grading mechanisms Creeping currents and measures against creeping currents with special respect to disadvantageous environmental conditions Measurement technology Generation of high voltage and high current High voltage laboratories Standardised pulses and test equipments Essential calculation methods Aspects of monitoring and diagnostics Electrical arcs and arc distinguishing Calculation and dimensioning methods for simple boundary conditions

Prerequisites:

n.a.

52

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53

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Lecture/Seminar profile:

Mathematics II (MAT2UE)

Degree course EE.ba

Course title Mathematics II

Course code MAT2UE

Level Bachelor

Term SS20

Lecturer

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 4

Learning objectives:

n.a.

Content:

Integral calculus: indefinite and definite integral, integral methods (partial integration, substitution, partial fraction decomposition), improper integrals, application of the integral calculus (calculation of area, arc length, volume, and surface of a rotational figure, point of inertia, momentum of inertia, energy, work and power), development of formulas by means of the differ-ential approach Ordinary differential equations: separable differential equations, linear dif-ferential equations with constant coefficients, modeling with differential equations, Laplace-transformation, application in mechanical and electrical engineering Multidimensional differential calculus: functions in several variables, partial derivative, directional derivative, linear approximation, chain rule, minima and maxima, Newton's method, Lagrange’s method, interpolation, splines, linear and nonlinear regression Fourier analysis: Fourier polynomials, applications in engineering, discrete Fourier transformation, continuous Fourier transformation Linear Algebra: linear mapping, eigenvalues and eigenvectors of matrices, applications in engineering Systems of differential equations: linear systems of differential equations (homogeneous and nonhomogeneous solutions, variation of the constant) 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.

54

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Prerequisites:

n.a.

55

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Lecture/Seminar profile:

Mathematics II (MAT2VO)

Degree course EE.ba

Course title Mathematics II

Course code MAT2VO

Level Bachelor

Term SS20

Lecturer

Contact hours per week 4

ECTS credits 5

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Integral calculus: indefinite and definite integral, integral methods (partial integration, substitution, partial fraction decomposition), improper integrals, application of the integral calculus (calculation of area, arc length, volume, and surface of a rotational figure, point of inertia, momentum of inertia, energy, work and power), development of formulas by means of the differ-ential approach Ordinary differential equations: separable differential equations, linear dif-ferential equations with constant coefficients, modeling with differential equations, Laplace-transformation, application in mechanical and electrical engineering Multidimensional differential calculus: functions in several variables, partial derivative, directional derivative, linear approximation, chain rule, minima and maxima, Newton's method, Lagrange’s method, interpolation, splines, linear and nonlinear regression Fourier analysis: Fourier polynomials, applications in engineering, discrete Fourier transformation, continuous Fourier transformation Linear Algebra: linear mapping, eigenvalues and eigenvectors of matrices, applications in engineering Systems of differential equations: linear systems of differential equations (homogeneous and nonhomogeneous solutions, variation of the constant) Mathematics Software: introduction to a computer algebra system and applying this software for problems listed above. Please note: Attending the lecture is only possible, if a student is also attending the skills practice

56

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Prerequisites:

n.a.

57

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Lecture/Seminar profile:

Mechanics (MEE2UE)

Degree course EE.ba

Course title Mechanics

Course code MEE2UE

Level Bachelor

Term SS20

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:

Forces and torques, free body diagrams, equilibrium conditions for rigid bodies, gravity forces, friction, internal forces and torques in mechanical systems, basics of statics of flexible bodies and linear solid mechanics, concept of stress, strain and constitutive equations, catenary curves. Description of the motion for points and rigid bodies, kinetic principles for mass points on the basis of simple exercises, equations of planar motions for rigid bodies (linear and angular momentum law), energy and power in mechanics. Introduction into vibrations of mechanical systems Computational exercises involving practical examples. Note: Attending the skills practice is only possible, if a student is also attending the lecture.

Prerequisites:

n.a.

58

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Lecture/Seminar profile:

Mechanics (MEE2VO)

Degree course EE.ba

Course title Mechanics

Course code MEE2VO

Level Bachelor

Term SS20

Lecturer

Contact hours per week 4

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Forces and torques, free body diagrams, equilibrium conditions for rigid bodies, gravity forces, friction, internal forces and torques in mechanical systems, basics of statics of flexible bodies and linear solid mechanics, concept of stress, strain and constitutive equations, catenary curves. Description of the motion for points and rigid bodies, kinetic principles for mass points on the basis of simple exercises, equations of planar motions for rigid bodies (linear and angular momentum law), energy and power in mechanics. Introduction into vibrations of mechanical systems Computational exercises involving practical examples. Please note: Attending the lecture is only possible, if a student is also attending the skills practice

Prerequisites:

n.a.

59

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Lecture/Seminar profile:

Statutory Directives for Electrical Engineering (SDE6VO)

Degree course EE.ba

Course title Statutory Directives for Electrical Engineering

Course code SDE6VO

Level Bachelor

Term SS20

Lecturer

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:

Business and corporate law Contract law Trade law Competition law Labour law and social law All topics above with special respect to electrical engineering

Prerequisites:

n.a.

60

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Lecture/Seminar profile:

Presentation Techniques (SSK2SE)

Degree course EE.ba

Course title Presentation Techniques

Course code SSK2SE

Level Bachelor

Term SS20

Lecturer Nadja Walser

Contact hours per week 2

ECTS credits 1,5

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 1

Learning objectives:

n.a.

Content:

Different types and objectives of presentations, Advantages and disadvantages of different presentation media, Rules of visualisation (focus on layout of transparencies with special soft-ware features), Significance of eye contact, gesture/facial expression/habitus linguistic and Paralinguistic aspect for the success of presentations, Video training

Prerequisites:

n.a.

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Lecture/Seminar profile:

Intercultural Competence for the Workplace (SSK4SE)

Degree course EE.ba

Course title Intercultural Competence for the Workplace

Course code SSK4SE

Level Bachelor

Term SS20

Lecturer Vanessa Prüller

Contact hours per week 2

ECTS credits 1,5

Course type Seminar

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Writing a professional CV and application documents, Job application process in Austria vs. other countries, Training for assessment centers, Legal aspects of working in Austria: residence permits, work permits, labor law, Cultural differences in the workplace; the implicit rules of how to be suc-cessful at work, Collaboration in international teams, Intercultural communication training: face-to-face, telephone and written correspondence

Prerequisites:

n.a.

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Lecture/Seminar profile:

Teamwork and Conflict Management (SSK6SE)

Degree course EE.ba

Course title Teamwork and Conflict Management

Course code SSK6SE

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Advantages and disadvantages of teamwork, Conditions for effective teamwork, Characteristics of a team (e.g. group cohesion, norms, psychological phe-nomenon, etc.), Phases of team development (e.g. Blanchard, Tuckman, team clock from Francis/Young, etc.), Roles within a team (e.g. Schindler, Belbin, etc.,) Analysis of process within the teamwork and special aspects of intercultural teamwork, Development of conflict management competence with intercultural as-pects, Escalation levels of conflicts and intervention possibilities, Analysis and reflection of precise conflict situations, Who do I lead a constructive conflict conversation? Measures and strategies in conflict prevention within the individual, team- and organization level, Constructive thinking concerning personal offences, “survival strategy” by non-solvable conflicts

Prerequisites:

n.a.

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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 SS20

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:

Topics / Grammar: 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: lesen, 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 1.2 (DAF_A1.2_UE)

Degree course FWE

Course title German Language A 1.2

Course code DAF_A1.2_UE

Level Bachelor

Term SS20

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:

Topics/Grammar: 8. Jobs and Careers, Information, events, activities in the past, internship advertisements, unusual careers/word formation, simple past of sein and haben, modal preposition als, temporal prepositions: vor, seit, für 9. In an unfamiliar town: giving directions and advice, rules, understanding information brochures, in a hotel / modal verbs: müssen, dürfen, pronoun ‘man’, imperative 10. Health: parts of the body, describing others, talking about health, writing a letter, agreeing an appointment / possessive articles, modal verb sollen, 11. In town: asking and describing the way, understanding public transport timetables, at the railway station / preposition: mit, location prepositions: an, auf, hinter, in,, neben, über, unter, vor, zwischen, bei. 12. The customer is king: time, services, polite requests, written and telephone messages / temporal prepositions:vor, nach, bei, in, bis, ab, polite forms: würde, könnte, verbs with prefixes: an-, aus-, auf-, zumachen. 13. New clothes: items of clothing, likes and dislikes, preferences, in a department store / demonstrative pronouns: der, die, das etc., gut, gern, viel, verb: mögen, Dative personal pronouns mir, dir, etc., verbs with Dative: gefallen, gehören, passen, stehen 14. Celebrations: dates, people, reasons, invitations etc / ordinal numbers, Accusative personal pronouns: mich, dich etc, denn, verb: werden.

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Lehrbuch: Schritte International 2, Niebisch, Hueber Verlag

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language A 2.2 (DAF_A2.2_UE)

Degree course FWE

Course title German Language A 2.2

Course code DAF_A2.2_UE

Level Bachelor

Term SS20

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:

Topics and Grammar: 8. At the Weekend: expressing contrasts, wishes, suggestions, weekend activities, events / trotzdem, Subjunctive II: wäre, hätte, würde, könnte 9. Consumer World: Describing objects, comparing, spending / declination of adjectives (ein…), comparison and superlative, als, wie 10. Communication: understanding impersonal information, describing products, answering machines, male and female ways of talking…/ Passive Voice, declination of adjectives (der…), word formation: un-,-los etc. 11. On the Way: describing routes, safety, traffic news, travel weather / more prepostions, conjunction:deshalb, adjective formation: -bar, -ig,-isch 12. Travel: organising travel: destinations, ads, booking travel, writing postcards, dream trip…/ more prepositions, declination of article-less nouns, more temporal prepostions. 13. Money: at the bank, getting payment method information, services / indirect questions, lassen (etwas machen lassen) 14. Stages of Life: talking about the past, wishes, suggestions and advice, nicknames, statistics, life stories / Repetition/reinforcement of previous grammar topics Lehrbuch: Schritte International, Niebisch, Hueber Verlag

Prerequisites:

67

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n.a.

68

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Lecture/Seminar profile:

German Language B 1.2 (DAF_B1.2_UE)

Degree course FWE

Course title German Language B 1.2

Course code DAF_B1.2_UE

Level Bachelor

Term SS20

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:

Topics and Grammar: 8. Among Friends: An Acquaintance. Du oder Sie? Describing friends and colleagues and talking about them. Tips for single people. Grammar: conjunction falls, relative clause with prepositions, adjectives used as nouns, n-declination, je…desto.. 9. Technology in Everyday Life: Computers. Appearance and Reality. Time. Instructionn Manuals. Grammar: als ob…+ Konjunktiv, conjunction während, conjunction nachdem,conjuntion: bevor 10. Products: Murphy’s Law. Breakdowns and Mishaps. Describing products. Trade and Services. Women in Advertising. Grammar: Alles, was…, wo….,present participle as adjective, two-part conjunctions: weder…noch, sowohl…als auch 11. People: plans and intentions. Rules of Behaviour. Other countries and their customs. Grammar: the Future Tense. Prepositions: innerhalb, außerhalb, Conjunction: da 12. Advice and Help: Describing a problem and asking and giving advice. Understanding a text. Speaking about role models. Stating an opinion. Grammar: conjunctions seit, seitdem,bis, indem, ohne…dass, außer 13. Politics and History: political decisions, newspaper reports, German history since 1945, political parties and politicians Grammar: adjective declination with comparative and superlative, perfect participle as an adjective, Past Passive. 14. At Home in the World: Germany in the World. Curious Facts from Europe. Talking about Home.

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(No new grammar in this final chapter) Lehrbuch: Schritte International, Niebisch, Hueber Verlag

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language B 2.2 (DAF_B2.2_UE)

Degree course FWE

Course title German Language B 2.2

Course code DAF_B2.2_UE

Level Bachelor

Term SS20

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:

Topics: Beruf/Liebe/Medien/Gesund leben/Mobilität Grammar: Conjunctions and Prepositions I, Compound Nouns, Conjunctions and Prepositions II, Conjunctions and Prepositions III, Passive Voice Lehrbuch: EM neu Hauptkurs Niveaustufe B2, Hueber

Prerequisites:

n.a.

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Lecture/Seminar profile:

German Language C 1.2 (DAF_C1.2_UE)

Degree course FWE

Course title German Language C 1.2

Course code DAF_C1.2_UE

Level Bachelor

Term SS20

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. Describing people. Dream men and women. Paraphrases. Sentences with case completions. Sentences with prepositional complements. Sentences with subordinate clauses. Prepositional pronouns. Salary. Adverbs. 2. Suppositions. Crime and Punishment. Noun-Verb connections. Lies and Lie Detectors 3. Idioms. Firm connections. Internet research. Verbs. Nouns. Reading Strategies. Temporal prepositions. 4. Biographies. Innovative design. Modal Verbs 5. Economics and Globalisation. World Food Supply/We Feed The World. Advanced Grammar: Passive, Participle 1, Participle 2, Adjectives. Word Snakes. Time Travel.

Prerequisites:

n.a.

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Lecture/Seminar profile:

English II (ENG2UE)

Degree course IPM.ba

Course title English II

Course code ENG2UE

Level Bachelor

Term SS20

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 4

Learning objectives:

n.a.

Content:

Business/General Visits and Travel/Making invitations Talking to business visitors/small talk Attending business events In a pub/restaurant In a hotel Planning an excursion Going out Telephoning The work environment: Asking people to do things Giving advice/suggestions/reasons Presenting facts and figures through graphics (graphs and charts) Technical Describing production technologies Describing machines/products Reading short texts on business and technology-related matters for vocab and discussion (business economics, machines etc.) GRAMMAR Contrast and comparison

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Future More prepositions Conditional/If- sentences More Passive

Prerequisites:

n.a.

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Lecture/Seminar profile:

English IV (ENG4UE)

Degree course IPM.ba

Course title English IV

Course code ENG4UE

Level Bachelor

Term SS20

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 4

Learning objectives:

n.a.

Content:

Presentations (Technical and Business): describing projects (FUPs) Meetings: Moderation and Participation (Phrases and practice) Writing reports and minutes Electrical engineering vocabulary and articles Describing Plant and Processes Technology and Research vocab and articles Presentation and meetings practice Prepositions Modals Verb + gerund or infinitive Society and Technology: Ecology (ethical and future implications) Language of Law/(articles on) Companies and the Law

Prerequisites:

n.a.

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Lecture/Seminar profile:

Interdisciplinary Project (FUP4PT)

Degree course LTE.ba

Course title Interdisciplinary Project

Course code FUP4PT

Level Bachelor

Term SS20

Lecturer

Contact hours per week 4

ECTS credits 4

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Practical implementation of the knowledge acquired in the various courses in practical tasks of the professional field; analysis of the task, preparation of a project plan, processing of the questions, preparation of a report and presentation of the results.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Molecular Biology (MBI4LB)

Degree course LTE.ba

Course title Molecular Biology

Course code MBI4LB

Level Bachelor

Term SS20

Lecturer Nicole Ollinger, Julian Weghuber

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:

LB: isolation of DNA and RNA, DNA cloning, function of molecular biological enzymes, PCR, gene expression systems, molecular biological methods in food analysis

Prerequisites:

n.a.

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Lecture/Seminar profile:

Internship (BPR6PT)

Degree course MKT.ba

Course title Internship

Course code BPR6PT

Level Bachelor

Term SS20

Lecturer

Contact hours per week 0

ECTS credits 20

Course type Internship

Examinations continuous assessment

Language of instruction German/English

Places for international students 3

Learning objectives:

n.a.

Content:

The subject of the Internship / Industrial Training is preferentially orientated on special problems out of industrial practise. The professional practical training must have project character. The aim is to solve a problem or connected problems on an adequate quality level, corresponding with the academic level of the education. The work is supervised by a professor from the university of applied science and eventually a tutor from the company, where the professional practical training is carried out.

Prerequisites:

alle vorangehenden Lehrveranstaltungen des Studiengangs

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Lecture/Seminar profile:

Interdisciplinary project work 1 (IPA4PT)

Degree course MKT.ba

Course title Interdisciplinary project work 1

Course code IPA4PT

Level Bachelor

Term SS20

Lecturer Daniel Heim

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:

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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Lecture/Seminar profile:

Chemical Technology (CHT6VO)

Degree course VTP.ba

Course title Chemical Technology

Course code CHT6VO_Gr.V

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2,5

Course type Lecture

Examinations oral or written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Technical scale production processes are discussed in terms of raw materials, products, technology as well as their network of material and energy flow. Examples for the production of inorganic (e.g. sulfuric acid, ammonia) and organic products (e.g. ethene, methanol) are given. Also selected examples for production processes based on microorganism and enzymes are given.

Prerequisites:

Mathematics 1 and 2

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Lecture/Seminar profile:

Inter-disciplinary Project Work (IP4PT)

Degree course VTP.ba

Course title Inter-disciplinary Project Work

Course code IP4PT

Level Bachelor

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 4

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Solving a problem related to the process industry in a team. The problem has been proposed by a company and has been selected by the supervisor.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Project Management (PM4V_V4)

Degree course MEWI.ba

Course title Project Management

Course code PM4V

Level Bachelor

Term SS20

Lecturer Markus Feistritzer

Contact hours per week 0,75

ECTS credits 1

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Basics of project management, project organisation vs. general company organisation, project strategies, project definition and planning, resources planning and project budget, project execution and completion, team-dynamic aspects, tools for project management and documentation.

Prerequisites:

n.a.

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Lecture/Seminar profile:

English I (ENG2UE)

Degree course PDK.ba

Course title English I

Course code ENG2UE

Level Bachelor

Term SS20

Lecturer

Contact hours per week 0,75

ECTS credits 1

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction German/English

Places for international students 5

Learning objectives:

n.a.

Content:

Einführung Wirtschaftsenglisch (Vorstellung und Small Talk): Lehrinhalte aus einschlägigen Lehrbüchern (siehe oben); Technisches Englisch (Vokabular und Stil): Lehrinhalte aus einschlägigen Lehrbüchern (siehe oben); Kulturelle Vielfalt und interkulturelle Kommunikation; Bewusstsein für Unterschiede zwischen Menschen, Ländern, Kulturen; Englisch für Geschäftsreisende; „Social English“, beruflicher Smalltalk, Telefongespräche, Gespräche in Hotels, Kommunikation über Unternehmen und Wirtschaft, Arbeitsleben etc. Reaktivierung der 4 Teilfertigkeiten in Bezug auf einschlägige Themen, einschließlich Wortschatzarbeit, Sprechen, Hören, Lesen und Schreiben, insbesondere im Hinblick auf die Inhalte anderer Lehrveranstaltungen des 1. und 2. Semesters; z. B. Arbeit mit audio-visuellen Medien (Videos, Dokumentarfilme); Wiederholung der Grammatik nach Bedarf; Einzahl und Mehrzahl, Zeiten, Passiv, Interpunktion, Präpositionen etc.

Prerequisites:

Schulenglisch+, erstes und weitere Semester

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Lecture/Seminar profile:

English III (ENG4UE)

Degree course PDK.ba

Course title English III

Course code ENG4UE

Level Bachelor

Term SS20

Lecturer

Contact hours per week 1,5

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:

language of business socialising/ travel Lesen, mündliches Zusammenfassen und Diskussion von Artikeln mit technischen und wirtschaftlichen Inhalten und Themen, insbesondere mit Bezug auf die Zukunft PRESENTATIONS (business and technical): Presenting/explaining new products Presenting facts and figures through graphics (graphs and charts) Technical: Describing production technologies Describing machines/products Explanation and discussion of Business Vocabulary/topics: - company structures - conferences and public speaking - BWL/business economics vocabulary Reading short texts on business and technology-related matters for vocab and discussion (business economics, machines etc.) GRAMMAR Contrast and comparison Future More prepositions Conditional/If- sentences with a focus on technical documentation

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Prerequisites:

n.a.

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Lecture/Seminar profile:

Plant Construction Contracts (PCC2ILV)

Degree course AB.ma

Course title Plant Construction Contracts

Course code PCC2ILV_Gr.V

Level Master

Term SS20

Lecturer Albert Angerbauer

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Types of contract (supply, service agreement, "turn key") operator models The major components of plant contract The performance directory and its forms, Specification, documentation and their legal significance Liability and guarantees Forms of cooperation in plant Patents, licenses, safeguard clauses

Prerequisites:

n.a.

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Lecture/Seminar profile:

Technical Writing (19_TRW2UE)

Degree course AET.ma

Course title Technical Writing

Course code 19_TRW2UE

Level Master

Term SS20

Lecturer Georg Löckinger

Contact hours per week 1

ECTS credits 1,5

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 6

Learning objectives:

n.a.

Content:

The students learn the process of writing and sharing information in a professional setting. The primary task is to convey information to another person or party in the most clear and effective manner possible.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Financing (FIN4IL)

Degree course AET.ma

Course title Financing

Course code FIN4IL

Level Master

Term SS20

Lecturer Andreas Gumpetsberger

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 10

Learning objectives:

n.a.

Content:

Contracting Funding of projects on international degree Financial assessment of international and national projects

Prerequisites:

n.a.

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Lecture/Seminar profile:

Academic Working (ACW2IL)

Degree course AMM.ma

Course title Academic Working

Course code ACW2IL

Level Master

Term SS20

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:

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

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Automotive IT Systems 2 (AIT2IL)

Degree course AMM.ma

Course title Automotive IT Systems 2

Course code AIT2IL

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 1

Learning objectives:

n.a.

Content:

• Basics of LAN network technology • Transfer media (TP, Coax, Fiber), cabling structures • Basics of network protocols (IPv4, IPv6, TCP-protocol stack,...) • Access processes (CSMA/CD, Token Passing, ...) • OSI-reference model • special network protocols (Routingprotocols, Real-Time-protocols) • Bus systems in vehicles (LIN, CAN, TTCAN, FlexRay, MOST)

Prerequisites:

Basic knowledge programming

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Lecture/Seminar profile:

Controlling (CTR2IL)

Degree course AMM.ma

Course title Controlling

Course code CTR2IL

Level Master

Term SS20

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:

• Fundamentals of controlling • Corporate leadership • Strategic and operative controlling • Budgeting • Methods and key figures in controlling • Analysis (target-performance comparison, etc.) • Specifics of R&D and project controlling

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Drive Systems and E-Mobility (DSE2IL)

Degree course AMM.ma

Course title Drive Systems and E-Mobility

Course code DSE2IL

Level Master

Term SS20

Lecturer

Contact hours per week 3

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Conditions and factors influencing E-Mobility • The principle and function of vehicle drives and drive train concepts o combustion engines o hybrid drives o E-drives o further alternative drives • subject-specific problems during the development and integration of different motor concepts into the overall concept

Prerequisites:

Modules AMM401-AMM405

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Lecture/Seminar profile:

Drive Train Control Systems (DTC2IL)

Degree course AMM.ma

Course title Drive Train Control Systems

Course code DTC2IL

Level Master

Term SS20

Lecturer

Contact hours per week 3

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

• Regulation-and safety systems in the drive train • speed regulation systems • Control of gears • Electronic differential systems • Drive slip regulation systems • Anti-blocking systems

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Functional Safety (FUS2IL)

Degree course AMM.ma

Course title Functional Safety

Course code FUS2IL

Level Master

Term SS20

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:

ISO 26262 („Road vehicles – Functional safety“) • sensitivity for safety-relevant electrical/electronic systems in motor vehicles • Procedural model, activities and methods in development and production to guarantee functional safety • Parts of the norm: o management of functional safety o concept phase o product development: system level o product development: hardware level o product development: software level o production, operation and taking out of operation o support processes o ASIL- and safety-oriented analyses

Prerequisites:

Modules AMM401-AMM404

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Lecture/Seminar profile:

Market-Oriented Management (MOM2IL)

Degree course AMM.ma

Course title Market-Oriented Management

Course code MOM2IL

Level Master

Term SS20

Lecturer Alexander Brendel-Schauberger

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:

• Marketing Process • Customer Behavior and Adoption • Marketing Research (Basics) • Strategic Market Planning • Marketing Mix (B2B) • Positioning & Brand Management • Special aspects of high tech marketing • Specific aspects of automotive marketing (OEM B2C/B2B, First/Second/Third Tier Suppliers) • Basic principles of international marketing management

Prerequisites:

According to the prerequisites for degree programme access

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Lecture/Seminar profile:

Automotive Quality Management 2 (QMA2IL)

Degree course AMM.ma

Course title Automotive Quality Management 2

Course code QMA2IL

Level Master

Term SS20

Lecturer

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:

• Automotive process management (VDA 12) o Customer orientated, support and management processes o Process map and sub-processes o Control of processes (KPI) o Process interactions • Requirements for processes of an organization (VDA 13) o Legal, regulatory, industry specific, customer and internal requirements • Automotive requirements for a quality management system o Overview about requirements according to the product creation process and production process (product life cy-cle) • Determination of product requirements o Analysis of the market, definition of target groups, product and process requirements, quality method QFD • Automotive component requirement specification standard struc-ture • Project management during design and development of automotive products o Maturity level assurance for new parts (MLA) o Software development (Automotive Spice) o Advanced product quality planning (APQP) o Project management (PM-1) o Simultaneous and quality Engineering • Automotive risk management (VDA 14)

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o Product and process FMEA (VDA 4 and FMEA 4th edi-tion) o Design verification plan (design of experiments) o Design for manufacturing (DFM) / Design for assembly (DFA) o Use of statistical methods o Measurement process capability VDA 5 and MSA

Prerequisites:

Basic knowledge programming

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Lecture/Seminar profile:

Industrial Image Processing (IBV2LB)

Degree course AT.ma

Course title Industrial Image Processing

Course code IBV2LB

Level Master

Term SS20

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:

Approach to interactive BV-SW Matlab, MeVisLab, Java/ImageJ; coordinate transformation, investigation of geometric parameters, 3D filter methods, registration.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Industrial Image Processing (IBV2VO)

Degree course AT.ma

Course title Industrial Image Processing

Course code IBV2VO

Level Master

Term SS20

Lecturer

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:

Registration, calibration, transformation, 3D-producing processes (CT, stereo, TOF), visualisation, fast algorithmics, FPGA-HW-solutions.

Prerequisites:

n.a.

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Lecture/Seminar profile:

English (ENG2UE)

Degree course BUT.ma

Course title English

Course code ENG2UE

Level Master

Term SS20

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 2

Learning objectives:

n.a.

Content:

Presentation, explanation, translation of topics from other sub-jects in the curriculum Reading and discussion of articles on technologies/topics relevant to the field of study. Audio-visual work (listening practice): watching relevant (=science/technology) documentary films + discussion thereof and vocabulary-building work Intercultural Communication and Awareness Further selected Management topics (e.g. decision-making, leadership) Academic writing: e.g. abstracts and executive summaries of research/scientific papers, technical/scientific reports, technical/scientific translation, norms and standards, (research) project proposals/applications (Anträge), documentation of reports, (business) report writing, test report writing, documentation for the submission of new products/technologies/devices

Prerequisites:

n.a.

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Lecture/Seminar profile:

Control Engineering (CEN2LB)

Degree course EE.ma

Course title Control Engineering

Course code CEN2LB

Level Master

Term SS20

Lecturer Rastko Zivanovic

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:

Control approaches for energy systems (P, Q, U, f control, control approaches in smart grid systems, etc.) Control approaches for battery, wind, PV and charging and e-car systems PLC's Approaches for robust control algorithms for nonlinear systems and systems with dead times Cascaded control systems Intercommunication between control systems PLC programming and PLC program development Please note: Students enrolled in this course must also enroll in CEN2UE and CEN2VO

Prerequisites:

n.a.

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Lecture/Seminar profile:

Control Engineering (CEN2UE)

Degree course EE.ma

Course title Control Engineering

Course code CEN2UE

Level Master

Term SS20

Lecturer Rastko Zivanovic

Contact hours per week 1

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Control approaches for energy systems (P, Q, U, f control, control approaches in smart grid systems, etc.) Control approaches for battery, wind, PV and charging and e-car systems PLC's Approaches for robust control algorithms for nonlinear systems and systems with dead times Cascaded control systems Intercommunication between control systems PLC programming and PLC program development Please note: Students enrolled in this course must also enroll in CEN2VO and CEN2LB

Prerequisites:

n.a.

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Lecture/Seminar profile:

Control Engineering (CEN2VO)

Degree course EE.ma

Course title Control Engineering

Course code CEN2VO

Level Master

Term SS20

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:

Control approaches for energy systems (P, Q, U, f control, control approaches in smart grid systems, etc.) Control approaches for battery, wind, PV and charging and e-car systems PLC's Approaches for robust control algorithms for nonlinear systems and systems with dead times Cascaded control systems Intercommunication between control systems PLC programming and PLC program development Please note: Students enrolled in this course must also enroll in CEN2UE and CEN2LB

Prerequisites:

n.a.

105

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Lecture/Seminar profile:

Electromagnetic Field Theory in Multiphysics Systems (EFT2LB)

Degree course EE.ma

Course title Electromagnetic Field Theory in Multiphysics Systems

Course code EFT2LB

Level Master

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Full Maxwell Equations (MES) · Types of MES / problems of electromagnetic fields · Application MES for the development of models · Analytic solutions for MES · Numeric solutions for MES · Interpretation and reflection of solutions Combination of MES with simple mechanical, heat flow, and flow formulations Applied MES for engineering problems Please note: Students enrolled in this course must also enroll in EFT2UE and EFT2VO

Prerequisites:

n.a.

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Lecture/Seminar profile:

Electromagnetic Field Theory in Multiphysics Systems (EFT2UE)

Degree course EE.ma

Course title Electromagnetic Field Theory in Multiphysics Systems

Course code EFT2UE

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 3

Course type Practice-oriented session

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Full Maxwell Equations (MES) · Types of MES / problems of electromagnetic fields · Application MES for the development of models · Analytic solutions for MES · Numeric solutions for MES · Interpretation and reflection of solutions Combination of MES with simple mechanical, heat flow, and flow formulations Applied MES for engineering problems Please note: Students enrolled in this course must also enroll in EFT2LB and EFT2VO

Prerequisites:

n.a.

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Lecture/Seminar profile:

Electromagnetic Field Theory in Multiphysics Systems (EFT2VO)

Degree course EE.ma

Course title Electromagnetic Field Theory in Multiphysics Systems

Course code EFT2VO

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 4

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Full Maxwell Equations (MES) · Types of MES / problems of electromagnetic fields · Application MES for the development of models · Analytic solutions for MES · Numeric solutions for MES · Interpretation and reflection of solutions Combination of MES with simple mechanical, heat flow, and flow formulations Applied MES for engineering problems Please note: Students enrolled in this course must also enroll in EFT2UE and EFT2LB

Prerequisites:

n.a.

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Lecture/Seminar profile:

Financing (FIN4ILV)

Degree course EE.ma

Course title Financing

Course code FIN4ILV

Level Master

Term SS20

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:

Financial assessment of projects Concept of levelized cost Business plan and energy pricing Energy pricing with respect to examples like • Classical energy utilization • Domestic systems • Island systems • Microgrid systems Overview on marketing and market development Contracting Funding of projects on international degree Financial assessment of international and national projects

Prerequisites:

n.a.

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Lecture/Seminar profile:

Design of Printed Circuit Boards (PCB2PT)

Degree course EE.ma

Course title Design of Printed Circuit Boards

Course code PCB2PT

Level Master

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Project

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Components and techniques for modern printed circuit boards Lay outing of electronic circuits Manufacturing of printed circuit boards Mounting technologies Soldering technologies EMC and EMI concepts Components for connecting, indicating, interacting and housing

Prerequisites:

n.a.

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Lecture/Seminar profile:

Power Electronics (PET2LB)

Degree course EE.ma

Course title Power Electronics

Course code PET2LB

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Materials and components for power electronic components and modern power electronics technologies Magnet material and characterization Control approaches for power electronics Special power electronics applications · Power electronics for energy applications o High current energy conversion o High voltage energy conversion · Hybrid switching · E-cars · Battery systems · PV systems Filtering and filters (active/passive) Simple EMC and EMI design principles Designing of power electronics circuits and lay out approaches Please note: Students enrolled in this course must also enroll in PET2UE and PET2VO

Prerequisites:

n.a.

111

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Lecture/Seminar profile:

Power Electronics (PET2UE)

Degree course EE.ma

Course title Power Electronics

Course code PET2UE

Level Master

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Materials and components for power electronic components and modern power electronics technologies Magnet material and characterization Control approaches for power electronics Special power electronics applications · Power electronics for energy applications o High current energy conversion o High voltage energy conversion · Hybrid switching · E-cars · Battery systems · PV systems Filtering and filters (active/passive) Simple EMC and EMI design principles Designing of power electronics circuits and lay out approaches Please note: Students enrolled in this course must also enroll in PET2LB and PET2VO

Prerequisites:

n.a.

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Lecture/Seminar profile:

Power Electronics (PET2VO)

Degree course EE.ma

Course title Power Electronics

Course code PET2VO

Level Master

Term SS20

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:

Materials and components for power electronic components and modern power electronics technologies Magnet material and characterization Control approaches for power electronics Special power electronics applications · Power electronics for energy applications o High current energy conversion o High voltage energy conversion · Hybrid switching · E-cars · Battery systems · PV systems Filtering and filters (active/passive) Simple EMC and EMI design principles Designing of power electronics circuits and lay out approaches Please note: Students enrolled in this course must also enroll in PET2UE and PET2LB

Prerequisites:

n.a.

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Lecture/Seminar profile:

Statistics (STA2ILV)

Degree course EE.ma

Course title Statistics

Course code STA2ILV

Level Master

Term SS20

Lecturer

Contact hours per week 3

ECTS credits 4

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Probability (density) function, distribution function, expectation, variance of a random variable Binomial distribution, hypergeometric distribution, Poisson process (Poisson distribution, exponential distribution), Normal distribution, Chi-square distribution, Student's distribution Estimation of parameters (moment estimation, Maximum-Likelihood- Estimation), Confidence intervals Parametric tests (z-test and t-test for one and two populations, distribution test, probability test) Non-parametric tests (chi-squared independence test, Mann-Whitney-Test, etc.) Quality control charts Statistical software: Introduction into a statistical software program and use of the program in the above mentioned units

Prerequisites:

n.a.

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Lecture/Seminar profile:

Computer Aided Industrial Design I (CAID2UE)

Degree course IPM.ma

Course title Computer Aided Industrial Design I

Course code CAID2UE

Level Master

Term SS20

Lecturer Bernd Tomasini

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 1

Learning objectives:

n.a.

Content:

• Advanced CAID freeform modelling and introduction to CAID rendering • CAID software packages: Autodesk Alias or Rhino 3D

Prerequisites:

n.a.

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Lecture/Seminar profile:

Computer Aided Manufacturing (CAM2UE)

Degree course IPM.ma

Course title Computer Aided Manufacturing

Course code CAM2UE

Level Master

Term SS20

Lecturer

Contact hours per week 1

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:

• CNC-programming (turning and milling) with a shop floor programming system. • Demonstration workshop: master/control system PLC-, robot-programming and industrial image processing

Prerequisites:

n.a.

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Lecture/Seminar profile:

Computer Aided Manufacturing (CAM2VO)

Degree course IPM.ma

Course title Computer Aided Manufacturing

Course code CAM2VO

Level Master

Term SS20

Lecturer

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:

• CAD/CAM/CIM/CNC and machine tools; Flexible manufacturing systems; • Structure and components of tooling machines; control units (CNC) and there capabilities; operation of a CNC machine; zero points and reference points; control modes; types of interpolation; CNC programming system manual part programming; shop floor programming; computer aided programming; processors and postprocessors; program structure; blocks or sentences; preparatory function path code (G); Miscellaneous functions (M); other NC-Code-functions; tool compensation; et al.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Change Management (CHM2IL)

Degree course IPM.ma

Course title Change Management

Course code CHM2IL

Level Master

Term SS20

Lecturer Konrad Breit

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:

•Understanding the role of change management as driver for innovation management and new business develop-ment •Build knowledge on ways and tools to identify change necessities, barriers to change, and drivers of change •Ability to apply tools for effective corporate change man-agement

Prerequisites:

n.a.

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Lecture/Seminar profile:

Controlling (CTR2IL)

Degree course IPM.ma

Course title Controlling

Course code CTR2IL

Level Master

Term SS20

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:

• Basics of controlling • Corporate leadership and control • Strategic and operative controlling • Budgeting • Methods and key figures in controlling • Analysis (target-performance comparison, etc.) • Specifics of R&D and project controlling

Prerequisites:

n.a.

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Lecture/Seminar profile:

Design Theory (DET2IL)

Degree course IPM.ma

Course title Design Theory

Course code DET2IL

Level Master

Term SS20

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 3

Learning objectives:

n.a.

Content:

• Selected theoretical, methodological and applied problems from the field of design • In-depth examination of selected aspects of the history and future of design

Prerequisites:

n.a.

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Lecture/Seminar profile:

Design Project Technical Design I (DPT2PT)

Degree course IPM.ma

Course title Design Project Technical Design I

Course code DPT2PT

Level Master

Term SS20

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:

• Completing a design project • Using and adapting specific design methodologies • Overview of the design process.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Dynamics (DYN2IL)

Degree course IPM.ma

Course title Dynamics

Course code DYN2IL

Level Master

Term SS20

Lecturer

Contact hours per week 3

ECTS credits 6

Course type Integrated course

Examinations oral or written examination

Language of instruction English

Places for international students 5

Learning objectives:

Kinematics for particles and rigid bodies. Kinetics for particles and rigid bodies. Work and energy methods. Impulse and Momentum methods.

Content:

Dynamics mathematically describes the motions of bodies under the action of forces. The first part introduces kinematics which deals with the geometry of motion without considering applied forces. The second part, kinetics, relates the forces on bodies to the resulting motions. Mathematical description of the motion of bodies. Introduction of kinematics without considering applied force.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Design & Prototyping (EHW2SE)

Degree course IPM.ma

Course title Design & Prototyping

Course code EHW2SE

Level Master

Term SS20

Lecturer Sven-Anwar Bibi

Contact hours per week 2

ECTS credits 3

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Introduction to hardware model construction methodologies • Introduction to tools and materials for design model construction

Prerequisites:

n.a.

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Intercultural Management (IKM2SE)

Degree course IPM.ma

Course title Intercultural Management

Course code IKM2SE

Level Master

Term SS20

Lecturer Regina Oppitz-Pfannhauser

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:

• Intercultural decision-making and responsibility for successful management of intercultural business situations • Acquisition of knowledge of one's own and of different cultures • Overview of culturally different management styles • Specifics of international and intercultural project management. • Synergy effects • Development of intercultural key competencies

Prerequisites:

n.a.

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Lecture/Seminar profile:

Relationship Marketing und Key-Account-Management (KAM2IL)

Degree course IPM.ma

Course title Relationship Marketing und Key-Account-Management

Course code KAM2IL

Level Master

Term SS20

Lecturer Krista Strauß

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

Relationship marketing as the basis for successful key account management • Relationship marketing vs transactional marketing • Principles of relationship marketing • Process-oriented approach to relationship marketing • Customer segmentation and segment-specific programmes Marketing policy and key account management in international business • Sales and distribution channel systems and sales organizations in international business • Management of sales organisations in international business • Basics of marketing policy in international business • Basics of international sales management • Cross-cultural communication: Cultural factors and their importance for sales success in international business • Global sales process Developments, challenges and functions in key account management • Types of key account management • A successful account manager's toolkit

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Prerequisites:

n.a.

126

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Lecture/Seminar profile:

Negotiation (KFK2UE)

Degree course IPM.ma

Course title Negotiation

Course code KFK2UE

Level Master

Term SS20

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 6

Learning objectives:

n.a.

Content:

Harvard negotiating approach Types of argumentation in negotiation Preparing efficiently for a negotiation and carrying it out successfully Obtaining results that satisfy both sides (win-win situations) Understanding negotiating partners better and concluding negotiations Mastering difficult negotiation situations with confidence Examining and developing individual current negotiating styles

Prerequisites:

n.a.

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Lecture/Seminar profile:

Materials & Design (MAD2IL)

Degree course IPM.ma

Course title Materials & Design

Course code MAD2IL

Level Master

Term SS20

Lecturer Stephan Rein

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:

Design-related aspects of materials; product design using suitable materials and production processes; design options using plastics, metals, glass, wood and ceramic with examples from a materials and production perspective

Prerequisites:

n.a.

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Lecture/Seminar profile:

Model Based Engineering - Introduction (MBE2IL)

Degree course IPM.ma

Course title Model Based Engineering - Introduction

Course code MBE2IL

Level Master

Term SS20

Lecturer

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:

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

Prerequisites:

n.a.

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Lecture/Seminar profile:

Model Based Engineering - Introduction (MBE2LU)

Degree course IPM.ma

Course title Model Based Engineering - Introduction

Course code MBE2LU

Level Master

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Identification of modelling parameters, design of regulators and observers, analysis of model behaviour by means of simulation studies, Modelling drive train with concentrated components (‚meta-level‘)

Prerequisites:

n.a.

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Lecture/Seminar profile:

Mechanics of Materials (MOM2IL)

Degree course IPM.ma

Course title Mechanics of Materials

Course code MOM2IL

Level Master

Term SS20

Lecturer Thomas Reiter

Contact hours per week 2

ECTS credits 6

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

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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Lecture/Seminar profile:

Entrepreneurship & New Business Development (NBD2IL)

Degree course IPM.ma

Course title Entrepreneurship & New Business Development

Course code NBD2IL

Level Master

Term SS20

Lecturer Markus Pollhamer

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:

• Personal requirements for starting a business • Important contacts when starting a business • Financing options and the business promotion environment • Structure, content and form of business plans • Business concept, product/service description • Customer value • Market analysis • Legal considerations • Strategic and marketing plans • Organisational and personnel plans • Investment planning • Profit and financial plans

Prerequisites:

n.a.

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Lecture/Seminar profile:

Product Data Management (PDM2IL)

Degree course IPM.ma

Course title Product Data Management

Course code PDM2IL

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Definition of terms: "C" technologies, CIM; • Product lifecycle: EDM, PDM, PLM; exercise with practical examples provided by the lecturer; • CAD technologies: Technical specifications and geometries; exercise with practical examples provided by the lecturer; • Knowledge-based development: Product versions, configuration, automatic tolerance assignment, semantic testing, exchange of design features, exercise with practical examples provided by the lecturer; • Work flow: Drawing management, configuration management, modifications, document management, exercise with practical examples provided by the lecturer; • Digital mock-up: Process integration, simultaneous engineering exercise with practical examples provided by the lecturer.

Prerequisites:

n.a.

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Lecture/Seminar profile:

New Product Development (PEP2IL)

Degree course IPM.ma

Course title New Product Development

Course code PEP2IL

Level Master

Term SS20

Lecturer Matthias Friedrich Kreimeyer

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:

• Designing goal-oriented, efficient, integrated product development and development processes • Product and service development specifics • Approach and processes for the development of products and services • Types of process models and their uses • Problem-solving models • Engineering models • Application of the topics covered using practical problems and case studies

Prerequisites:

n.a.

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Lecture/Seminar profile:

Strategic Innovation Management (SPI2IL)

Degree course IPM.ma

Course title Strategic Innovation Management

Course code SPI2IL

Level Master

Term SS20

Lecturer Christiane Rau

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:

•Risk and R&D •Target planning in strategic technology and innovation management •Types of R&D and innovation strategies •Strategy formulation decision areas •Portfolio techniques •Technology roadmapping •Value innovation •Interactive value creation •Business development and innovation Prerequisites: - Fundamentals of General Management/Business Administration -Fundamentals of Innovation Management

Prerequisites:

n.a.

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Lecture/Seminar profile:

Sustainability (SUS2IL)

Degree course IPM.ma

Course title Sustainability

Course code SUS2IL

Level Master

Term SS20

Lecturer Reinhard Martin Herok

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:

• Basic understanding of sustainability in the context of innovation, design and engineering • View sustainability as a source of innovation and business creation • Be able to define, differ and develop sustainability innovations

Prerequisites:

n.a.

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Lecture/Seminar profile:

Materials Testing (WST2LB)

Degree course IPM.ma

Course title Materials Testing

Course code WST2LB

Level Master

Term SS20

Lecturer

Contact hours per week 1

ECTS credits 2

Course type Laboratory session

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Overview of the most important procedures in materials testing (tensile testing, hardness testing, impact resistance testing, non-destructive testing techniques, thermal analysis, melt flow rate). Practical laboratory exercises, analysis, presentation and evaluation of test results.

Prerequisites:

n.a.

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Lecture/Seminar profile:

Materials Science (WST2VO)

Degree course IPM.ma

Course title Materials Science

Course code WST2VO

Level Master

Term SS20

Lecturer

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:

Overview of materials, atomic structure of materials, standardised description, basic material properties, material properties for design, state diagrams; metallic materials; plastics: Thermoplastics, thermosetting plastics, elastomers; glass, ceramic, wood, composites; selection procedures and application areas

Prerequisites:

n.a.

138

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Lecture/Seminar profile:

2D Presentation Techniques & Drawing (ZET2SE)

Degree course IPM.ma

Course title 2D Presentation Techniques & Drawing

Course code ZET2SE

Level Master

Term SS20

Lecturer Leon Widdison

Contact hours per week 1

ECTS credits 1

Course type Seminar

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

• Training in drawing techniques and perspective presentation methods • Creating sketches and rendering

Prerequisites:

n.a.

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Lecture/Seminar profile:

Future Studies and Technological Impact Assessment (ZTA2IL)

Degree course IPM.ma

Course title Future Studies and Technological Impact Assessment

Course code ZTA2IL

Level Master

Term SS20

Lecturer Michael Ornetzeder

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:

• Introduction to technology intelligence methods and technology assessment (TA) • TA-related design issues

Prerequisites:

n.a.

140

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Lecture/Seminar profile:

Nutrition Physiology and Pathophysiology II (EPP2ILV)

Degree course LTE.ma

Course title Nutrition Physiology and Pathophysiology II

Course code EPP2ILV

Level Master

Term SS20

Lecturer

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:

Development of fat tissue and fat tissue as endocrine organs; muscle contraction and muscle regeneration; special features of renal metabolism and excretion of metabolites and xenobiotics. Plasma levels of minerals in the blood and their regulation; anabolic and catabolic processes in the liver; basics of performance physiology; exercise as prevention factor; endurance performance and effects on the organism; pathophysiology of nutritional diseases; Nutrition modulating effects on the immune system, as well as the assessment of food allergens and cross allergies considering the basics of immunology and important elements of cellular and humoral immune response; influence of renal function on vitamin metabolism; importance of gastrointestinal microbiota on energy metabolism and immune function.

Prerequisites:

n.a.

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Lecture/Seminar profile:

(AKW4SE)

Degree course MKT.ma

Course title Ausgewählte Kapitel der Werkstofftechnik

Course code AKW4SE

Level Master

Term SS20

Lecturer

Contact hours per week 0,53

ECTS credits 1,07

Course type Seminar

Examinations continuous assessment

Language of instruction German/English

Places for international students 2

Learning objectives:

n.a.

Content:

Knowledge expansion and broadening in the areas of: structure, manufacturing /processing and application of special materials (metals, plastics, ceramics), new methods of material characterization and their applications

Prerequisites:

Bachelor-Abschluss einer technischen Studienrichtung

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Lecture/Seminar profile:

Master Thesis (DPA4PT)

Degree course MKT.ma

Course title Master Thesis

Course code DPA4PT

Level Master

Term SS20

Lecturer

Contact hours per week 0

ECTS credits 18

Course type Master's thesis

Examinations continuous assessment

Language of instruction German/English

Places for international students 1

Learning objectives:

n.a.

Content:

Specific theme or problem in the area of material science or manufacturing technology; literature research; methodical and scientific approach; planning and performing technical or scientific tests; analyzing and interpretation of test results; documentation and interpretation, design, formulation and compilation of scientific work

Prerequisites:

Bachelor-Abschluss einer technischen Studienrichtung

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Lecture/Seminar profile:

Project Work 2 (PRJ2PT)

Degree course MKT.ma

Course title Project Work 2

Course code PRJ2PT

Level Master

Term SS20

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 1

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:

Cogeneration of Heat and Power (CHP2UE)

Degree course SES.ma

Course title Cogeneration of Heat and Power

Course code CHP2UE

Level Master

Term SS20

Lecturer Gregor Winkler

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:

Thermal power plant technology Thermal storage systems Steam cycle process Utilisation of fossil energy

Prerequisites:

n.a.

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Lecture/Seminar profile:

Cogeneration of Heat and Power (CHP2VO)

Degree course SES.ma

Course title Cogeneration of Heat and Power

Course code CHP2VO

Level Master

Term SS20

Lecturer Gregor Winkler

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Thermal power plant technology Thermal storage systems Steam cycle process Utilisation of fossil energy

Prerequisites:

n.a.

146

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Lecture/Seminar profile:

Modern Energy Transport and Distribution (ETD2UE)

Degree course SES.ma

Course title Modern Energy Transport and Distribution

Course code ETD2UE

Level Master

Term SS20

Lecturer Josef Stadler, Stephan Österbauer

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:

Essentials of Energy Transport Smart Grids Electrical storage systems like batteries and hydrogen based systems Technical operation, facility management Micro grids as island systems Hybrid systems (e.g. diesel in combination with PV and/or wind) Storage systems electrically and thermal Grid connection of decentralized power plants Balancing in transport and distribution systems

Prerequisites:

n.a.

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Lecture/Seminar profile:

Modern Energy Transport and Distribution (ETD2VO)

Degree course SES.ma

Course title Modern Energy Transport and Distribution

Course code ETD2VO

Level Master

Term SS20

Lecturer Andreas Abart, Georg Achleitner

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Essentials of Energy Transport Smart Grids Electrical storage systems like batteries and hydrogen based systems Technical operation, facility management Micro grids as island systems Hybrid systems (e.g. diesel in combination with PV and/or wind) Storage systems electrically and thermal Grid connection of decentralized power plants Balancing in transport and distribution systems

Prerequisites:

n.a.

148

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Lecture/Seminar profile:

Financing (FIN2IL)

Degree course SES.ma

Course title Financing

Course code FIN2IL

Level Master

Term SS20

Lecturer Andreas Gumpetsberger

Contact hours per week 2

ECTS credits 2

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Contracting Funding of projects on international degree Financial assessment of international and national projects

Prerequisites:

n.a.

149

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Lecture/Seminar profile:

International Project Management (IPM4IL)

Degree course SES.ma

Course title International Project Management

Course code IPM4IL

Level Master

Term SS20

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:

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

Prerequisites:

n.a.

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Lecture/Seminar profile:

Large-Scale Wind and Solar Power Plants (LSP2ILV)

Degree course SES.ma

Course title Large-Scale Wind and Solar Power Plants

Course code LSP2ILV

Level Master

Term SS20

Lecturer

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations continuous assessment

Language of instruction English

Places for international students 2

Learning objectives:

n.a.

Content:

Solar and wind resource estimation (advanced level) Solar inverter concepts and advanced grid features PV and wind energy project development Planning and simulation of large-scale wind and solar power plants using modern design and simulation tools (WindPRO, WAsP, PV Syst, or similar) System integration Operation and monitoring of large-scale wind and solar power plants

Prerequisites:

n.a.

151

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Lecture/Seminar profile:

Renewable Energy Resources II (RER2UE)

Degree course SES.ma

Course title Renewable Energy Resources II

Course code RER2UE

Level Master

Term SS20

Lecturer Werner Ahrer, Sophie Messerklinger, Florian Meindlhumer, Alois Resch

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:

Solar thermal systems for providing: • Hot water • Heating and cooling • Process heating and cooling Solar thermal electric systems / CSP (central receiver, parabolic troughs), Fresnel Biomass energy: • Renewable indices and biomass resources • Conversion processes and concepts (combustion, gasification, hydrolysis, fermentation) • Biomass relevance to energy production • Biofuels • Policy incentives • Problems Geothermal resources: • Drilling • Direct heat utilisation • Electric power generation General: • Status of the technologies • Potential of CO2 reduction • Environmental impact

152

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Prerequisites:

n.a.

153

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Lecture/Seminar profile:

Renewable Energy Resources II (RER2VO)

Degree course SES.ma

Course title Renewable Energy Resources II

Course code RER2VO

Level Master

Term SS20

Lecturer Werner Ahrer, Alois Resch, Hilbert Focke, Sophie Messerklinger

Contact hours per week 2

ECTS credits 3

Course type Lecture

Examinations written examination

Language of instruction English

Places for international students 3

Learning objectives:

n.a.

Content:

Solar thermal systems for providing: • Hot water • Heating and cooling • Process heating and cooling Solar thermal electric systems / CSP (central receiver, parabolic troughs), Fresnel Biomass energy: • Renewable indices and biomass resources • Conversion processes and concepts (combustion, gasification, hydrolysis, fermentation) • Biomass relevance to energy production • Biofuels • Policy incentives • Problems Geothermal resources: • Drilling • Direct heat utilisation • Electric power generation General: • Status of the technologies • Potential of CO2 reduction • Environmental impact

154

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Prerequisites:

n.a.

155

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Lecture/Seminar profile:

Intercultural Management (SSK4UE)

Degree course SES.ma

Course title Intercultural Management

Course code SSK4UE

Level Master

Term SS20

Lecturer Claudia Ender

Contact hours per week 2

ECTS credits 2

Course type Practice-oriented session

Examinations continuous assessment

Language of instruction English

Places for international students 4

Learning objectives:

n.a.

Content:

Intercultural Management: The students are learning the specific characteristics of international project management and the different cultural ways of management Intercultural decision-making and responsibility for a successful management in intercultural business situations Getting knowledge about the own and foreign cultures Overview of different cultural ways of management Leadership in an international context Specific characteristic in international and intercultural project management Enhancements of intercultural key competences Practicing negotiations und conflict resolution in a intercultural context Development of intercultural key competences

Prerequisites:

n.a.

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Lecture/Seminar profile:

Plant Construction Contracts (PCC2ILV)

Degree course AB.ma

Course title Plant Construction Contracts

Course code PCC2ILV_Gr.B

Level Master

Term SS20

Lecturer Albert Angerbauer

Contact hours per week 2

ECTS credits 2,5

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 5

Learning objectives:

n.a.

Content:

Types of contract (supply, service agreement, "turn key") operator models The major components of plant contract The performance directory and its forms, Specification, documentation and their legal significance Liability and guarantees Forms of cooperation in plant Patents, licenses, safeguard clauses

Prerequisites:

n.a.

157

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Lecture/Seminar profile:

Human-Computer Interaction (MMI2ILV)

Degree course MEWI.ma

Course title Human-Computer Interaction

Course code MMI2ILV

Level Master

Term SS20

Lecturer Jean D. Hallewell Haslwanter

Contact hours per week 1

ECTS credits 2

Course type Integrated course

Examinations written examination

Language of instruction English

Places for international students 7

Learning objectives:

n.a.

Content:

Introduction to the usability and utility/usefulness of computer-based systems: • understanding the user needs and the context of use • influences on the interaction, e.g. human perception, the environment • designing user interfaces (possibilities, guidelines), • evaluating usability The students apply the what they learned on a project done in small groups The groups have more focus on either financial, automation or automobile aspects depending on their technical specialisation

Prerequisites:

n.a.

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