drill: draw ldds for:

142
the volume of gas released at 227 o C under 83.1 kPa pressure when 320 kg of NH 4 NO 3 is exploded forming N , O , & H O:

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Drill: Calculate the volume of gas released at 227 o C under 83.1 kPa pressure when 320 kg of NH 4 NO 3 is exploded forming N 2 , O 2 , & H 2 O:. Drill: Draw LDDs for:. SCl 2 C 5 H 8 HSO 4 -1. CHM II HW. Complete the Take-Home Test attached to Poly’s website. Thermo-chemistry. Chm II. - PowerPoint PPT Presentation

TRANSCRIPT

Page 1: Drill: Draw LDDs for:

Drill: Calculate the volume of gas released

at 227oC under 83.1 kPa pressure when 320 kg of

NH4NO3 is exploded forming N2, O2, & H2O:

Page 2: Drill: Draw LDDs for:

Drill: Draw LDDs for:

SCl2

C5H8

HSO4-1

Page 3: Drill: Draw LDDs for:

CHM II HW• Complete the Take-Home

Test attached to Poly’s website.

Page 4: Drill: Draw LDDs for:

Thermo-chemistry

Page 5: Drill: Draw LDDs for:

Chm IIPP-16

Page 6: Drill: Draw LDDs for:

Thermochemistry

•The study of heat transfer in

chemical reactions

Page 7: Drill: Draw LDDs for:

Thermo-chemical

Terms

Page 8: Drill: Draw LDDs for:

Heat (H)•A form of energy

that can flow between samples of

matter

Page 9: Drill: Draw LDDs for:

Heat cannot be measured directly; thus, we measure heat change (H)

Page 10: Drill: Draw LDDs for:

Enthalpy Change•Heat that can flow

in/out of a system

H

Page 11: Drill: Draw LDDs for:

System•That part of nature upon which attention

is focused

Page 12: Drill: Draw LDDs for:

Surroundings•That part of nature

around the part upon which we are

not focused

Page 13: Drill: Draw LDDs for:

Reaction Coordinate

•A graph of energy change versus time in a chemical reaction

Page 14: Drill: Draw LDDs for:

Time

Ene

rgy

RP

Page 15: Drill: Draw LDDs for:

Exothermic Rxn•Chemical reactions

that release, give off heat, or lose

heat

Page 16: Drill: Draw LDDs for:

Exothermic Rxn•Products will

contain less heat than the reactants

H < 0

Page 17: Drill: Draw LDDs for:

Endothermic Rxn

•Chemical reactions that absorb, take in heat, or gain heat

Page 18: Drill: Draw LDDs for:

Endothermic Rxn•Products will

contain more heat than the reactants

H > 0

Page 19: Drill: Draw LDDs for:

Thermochemistry Topics

•Heat Change

•Calorimetry

•Thermochemical Equation

Page 20: Drill: Draw LDDs for:

Topic: Heat

Change

Page 21: Drill: Draw LDDs for:

Specific Heat•The heat required to raise one gram of a substance 1oC

•c: (J/goC, J/kgK)

Page 22: Drill: Draw LDDs for:

Specific Heat Formula

H = mcT

Page 23: Drill: Draw LDDs for:

Heat of Fusion•The heat required to melt one gram of a substance at its normal MP

•Hf: (J/g or J/kg)

Page 24: Drill: Draw LDDs for:

Heat of Fusion Formula

H = mHf

Page 25: Drill: Draw LDDs for:

Heat of Vaporization

•The heat required to boil one gram of a substance at its normal BP

•Hv: (J/g or J/kg)

Page 26: Drill: Draw LDDs for:

Heat of Vap. Formula

H = mHv

Page 27: Drill: Draw LDDs for:

Calculate the heat change when 10.0 g H2O goes from –100.0oC to 200oC.MP = 0oC BP = 100oCHf = 334 J/g HV = 2260 J/g

cice = 2.06 J/gKcwater = 4.18 J/gK csteam = 2.02 J/gK

Page 28: Drill: Draw LDDs for:

Drill: Calculate the heat required to change 25 g of H2O from 140.0oC to 60.0oC

MP = 0oC csteam= 2.02 J/gK

BP = 100oC cwater= 4.18 J/gK

Hf = 334 J/g cice= 2.06 J/gK

HV= 2260 J/g

Page 29: Drill: Draw LDDs for:

Review Drill & Collect

Tests

Page 30: Drill: Draw LDDs for:

CHM II HW•Review PP-16.

•Complete the attached assignment & turn it in tomorrow.

Page 31: Drill: Draw LDDs for:

Topic:

Calorimetry

Page 32: Drill: Draw LDDs for:

Calorimetry•A method to measure the

experimental heat transfer in a system

Page 33: Drill: Draw LDDs for:

Calorimeter•Device used to measure heat transfer

•A calorimeter is an adiabatic system

•Experimental yield

Page 34: Drill: Draw LDDs for:

Adiabatic System•A system that exchanges zero heat with its surroundings

Hsystem = 0

Page 35: Drill: Draw LDDs for:

H (J or kJ)H = q = the heat or enthalpy change in a system

Hsys = mcTsys parts

Page 36: Drill: Draw LDDs for:

CalorimetryHsystem = 0

Hsys = Hcal + Hrxn

Hrxn = -Hcal (all parts)

Hrxn = -mcTcal (all)

Page 37: Drill: Draw LDDs for:

When Q reacts in a 1.5 kg calorimeter containing 2.5 kg water the temp changes from

22.50oC to 26.50oC.Calculate Hrxn. Cwater = 4.18 J/gK Ccal = 2.00 J/gK

Page 38: Drill: Draw LDDs for:

In expensive calorimeters, the mass is constant; thus, the mc can be calculated together as C (J/oC).

Hrxn = -mcTcal

Hrxn = -CTcal

Page 39: Drill: Draw LDDs for:

When X reacts in a 2.0 kg calorimeter containing 1.5 kg water, the temp changes

from 22.5oC to 30.5oC. Calculate Hrxn. Cwater = 4.18 J/gK Ccal = 1.50 J/gK

Page 40: Drill: Draw LDDs for:

When Z reacts in a 1.0 kg calorimeter containing 2.0 kg water, T = 30.5oC to 20.5oC. Calculate Hrxn.

Cwater = 4.18 J/gK Ccal = 2.00 J/gK

Page 41: Drill: Draw LDDs for:

Drill: When 40.0 g NH4NO3 dissolves in

460.0 g water at 25.0oC, the temp. falls to 22.5.oC.

Calculate the Hosoln for

NH4NO3. Csoln = 4.00 J/gK

Page 42: Drill: Draw LDDs for:

Check Drill&

Check HW

Page 43: Drill: Draw LDDs for:

CHM II HW• Review PP-16

• Complete the attached worksheet & turn it in tomorrow (Thermo-1)

Page 44: Drill: Draw LDDs for:

Topic:Thermochemical

Equation (TCE)

Page 45: Drill: Draw LDDs for:

Thermo-chemical Equation

Terms

Page 46: Drill: Draw LDDs for:

Heat of Reaction•The heat or enthalpy change of a chemical reaction

Hrxn

Page 47: Drill: Draw LDDs for:

Typical Reaction

•HCl + NaOH NaCl + HOH

Page 48: Drill: Draw LDDs for:

Heat of Solution

•The heat or enthalpy change when a substance is dissolved

Hsoln

Page 49: Drill: Draw LDDs for:

Typical Ionization

KCl

K+(aq) + Cl-

(aq)

Page 50: Drill: Draw LDDs for:

Heat of Combustion•The heat or enthalpy change when a substance is burned

Hcombustion

Page 51: Drill: Draw LDDs for:

Combustion Reaction

•CxHy + O2

CO2 + HOH

Page 52: Drill: Draw LDDs for:

Heat of Formation•The heat required to form one mole of a compound from pure elements

Hfo (kJ/mole)

Page 53: Drill: Draw LDDs for:

Rxn Making Cpds from ele

H2 + ½ O2 H2O

Page 54: Drill: Draw LDDs for:

The Degree Symbol•Indicates standard conditions & molar

quantities by itself or from a balanced

equation.

Page 55: Drill: Draw LDDs for:

AP Chm HW•Problem: 41

On page 236

Page 56: Drill: Draw LDDs for:

Chm II HW•Problem: 37

On page 638

Page 57: Drill: Draw LDDs for:

Gibb’s Free Energy•Energy of a system that can be converted to work

•Determines spontaneity

G

Page 58: Drill: Draw LDDs for:

Exergonic Reaction•A reaction in which free energy is given off

G < 0

Page 59: Drill: Draw LDDs for:

Endergonic Reaction

•A reaction in which free energy is absorbed

G > 0

Page 60: Drill: Draw LDDs for:

Exergonic Reaction•A reaction which can be spontaneous

G < 0

Page 61: Drill: Draw LDDs for:

Endergonic Reaction

•A reaction which cannot be spontaneous

G > 0

Page 62: Drill: Draw LDDs for:

Reaction at Equilibrium

G = 0

Page 63: Drill: Draw LDDs for:

Interrelation Term (G)

G interrelates thermochemistry,

chemical equilibria,

& electrochemistry

Page 64: Drill: Draw LDDs for:

Energy of Formation•The energy required to form one mole of a compound from pure elements

Gfo (kJ/mole)

Page 65: Drill: Draw LDDs for:

Entropy•A measure of disorder

S (J/K)

Page 66: Drill: Draw LDDs for:

Entropy of Formation•The entropy of one mole of a substance

•Sfo (J/moleoK)

•Sfo (kJ/moleoK)

Page 67: Drill: Draw LDDs for:

Drill: Define:• Heat of reaction

• Heat of solution

• Heat of formation

• Energy of formation

• Entropy of formation

Page 68: Drill: Draw LDDs for:

Drill: Identify type of rxn when:

G > 0G < 0G = 0

Page 69: Drill: Draw LDDs for:

Thermochemical Equation

•An equation that shows changes in heat, energy, etc

Page 70: Drill: Draw LDDs for:

Thermochemical Equation

Ho

rxn Hf

o

productsHf

o

reactants

Page 71: Drill: Draw LDDs for:

Thermochemical Equation

Go

rxn Gf

o

productsGf

o

reactants

Page 72: Drill: Draw LDDs for:

Thermochemical Equation

So

rxnSf

o

products

Sfo

reactants

Page 73: Drill: Draw LDDs for:

Thermochemical Equation

•Stoichiometry of heat change

•Solves theoretical yield

Page 74: Drill: Draw LDDs for:

Thermochemical Equation

•The 2nd & 4th steps in stoichiometry involve molar conversions

•Use the TCE for this

Page 75: Drill: Draw LDDs for:

In stoichoimetric calculations, the TCE

is used for molar conversions from

mole to heat or heat to moles

Page 76: Drill: Draw LDDs for:

Interrelating Equation

GH S

Page 77: Drill: Draw LDDs for:

Calc. H, G, & S when 13.6 g of CaSO4 is changed

into CaO + SO2 + O2 at 25oC

Cmpd CaSO4 SO2 CaO

Hf

o -1434.1 -296.8 -635.1

Gf

o -1321.8 -300.2 -604.0

Page 78: Drill: Draw LDDs for:

Drill: Define:•Heat of Rxn

•Heat of Solution

•Heat of Combustion

•Heat of Formation

Page 79: Drill: Draw LDDs for:

Review Drill&

Check HW

Page 80: Drill: Draw LDDs for:

CHM II HW•Review PP-16

•Complete the attached worksheet & turn it in tomorrow (Thermo-1)

Page 81: Drill: Draw LDDs for:

AP Homework•Problem: 41b

On page 236

Page 82: Drill: Draw LDDs for:

Chm II HW•Problem: 36

On page 638

Page 83: Drill: Draw LDDs for:

Calculate H, G, & S when 19.7 kg of BaCO3 is decomposed into BaO + CO2

Cmpd BaCO3 CO2 . BaO

Hf

o -1216.3 -393.5 -553.5

Gf

o -1137.6 -394.4 -525.1

Sf

o 112.1 213.6 70.4

Page 84: Drill: Draw LDDs for:

Calculate the potential H, G, & S for the reaction & Sf

o for

O2 when burning 8.8 kg of C3H8 Cpd C3H8 CO2 H2O

Hf

o-103.8 -393.5 -241.8

Gf

o- 23.5 -394.4 -228.6

Sf

o269.9 213.6 188.7

Page 85: Drill: Draw LDDs for:

Drill: Calculate Ho

rxn &Go

rxn for:A + B2C3 AC2 + B

Compd B2C3 AC2

Hfo(kJ/mole) -150 -250

Gfo(kJ/mole) -175 -225

Page 86: Drill: Draw LDDs for:

Review Drill&

Review HW

Page 87: Drill: Draw LDDs for:

AP CHM HW•Work problem 45 on page 236

Page 88: Drill: Draw LDDs for:

Chm II HW•Problem: 63

•Page: 640

Page 89: Drill: Draw LDDs for:

CHM II HW• Review PP-16• Complete the attached worksheet

(Thermo-2) & turn it in tomorrow.• Thermo Lab: Monday• Test next week.

Page 90: Drill: Draw LDDs for:

Calculate Ho, G

o, & S for

AD2 + BC AC2 + BD

at (-23oC)

Cpd BC AD2 AC2 BD

Hf

o -150 -250 -300 -175

Gf

o -125 -225 -250 -150

Sf

o 75 50 80 ?

Determine Sf

o

BD

Page 91: Drill: Draw LDDs for:

Drill: Calculate Ho, Go, & So when P + QR PR2 + QCompd QR PR2

Hfo(kJ/mole) -250 -450

Gfo(kJ/mole) -225 -425

Page 92: Drill: Draw LDDs for:

Review Drill&

Check HW

Page 93: Drill: Draw LDDs for:

CHM II HW•Review PP-16

•Lab: Monday

•Test Wednesday

Page 94: Drill: Draw LDDs for:

Ccup = 1.00 J/gK Cwater = 4.18 J/gK CNaOH = 1.00 J/gK

CThermometer = 2.00 J/gK

Page 95: Drill: Draw LDDs for:

Lab Results: Cup H2O NaOH Thermo

5.0 g 50.0 g 4.0 g 15.0 g Ti = 22.0

oC Tf = 27.0

oC

Cmpd NaOH Na+ OH-

Hf

o -425.6 -240.1 -230.0

Determine: theoretical and experimental heat changes

Page 96: Drill: Draw LDDs for:

Drill: When 2.00 g NaOH dissolves in 1.0 L water in a 2.5 kg calorimeter, the temp. went from 22.5oC to 26.5oC.

Calculate: Hosoln

Cwater = 4.18 J/gK Ccal = 2.00 J/gK

Page 97: Drill: Draw LDDs for:

Review Drill&

Check HW

Page 98: Drill: Draw LDDs for:

CHM II HW•The Test on Thermochemistry Will Be Tomorrow

Page 99: Drill: Draw LDDs for:

TestReview

Page 100: Drill: Draw LDDs for:

Calculate H, G, & S in the production of 831mL ammonia from N2 & H2 at 227

oC under

250.0 kPa pressureCompd NH3

Hfo -46.1

Gfo -16.5

Page 101: Drill: Draw LDDs for:

Calculate Ho, Go, S, & Teq at -23oC when: A + BC AC + B

Compd BC ACHf

o(kJ/mole) -150 -250Gf

o(kJ/mole) -175 -225

Page 102: Drill: Draw LDDs for:

When 2.50 g CaCO3 is made

from CaO & CO2 in a 500. g calorimeter (C = 1.50 J/gK) containing 250.0 g of water

(C = 4.18 J/gK), the water changes from 25.0oC to 45.0oC. Calculate Hrxn/mole of CaCO3

Page 103: Drill: Draw LDDs for:

Heat Change•Calculate the heat change when the temperature of 1.0 kg H2O is changed from –100.0oC to 200.0oC.

Page 104: Drill: Draw LDDs for:

Bond Energy•The energy change

when one mole of bonds are broken

Ho

bond

Page 105: Drill: Draw LDDs for:

Bond Equation

Hbondo

rxnHbond

o

products

Hbondo

reactants)

Page 106: Drill: Draw LDDs for:

Bond Energies (kJ/mole)

C-C 347 O=O

C-H 414 498

O-H 464

C=O 715

Page 107: Drill: Draw LDDs for:

Calculate the heat change when 1.00

mole of C2H6 is burned.

Page 108: Drill: Draw LDDs for:

1st Law Thermodynamics

•Total energy change = heat + work

E = q + W

Page 109: Drill: Draw LDDs for:

Work•W = Fd

•P = F/A

•V = Ad

•W = PV = nRT

Page 110: Drill: Draw LDDs for:

2nd Law Thermodynamics

•Total entropy in a system always increases assuming no energy is added to the system

Page 111: Drill: Draw LDDs for:

Thermodynamic Rxns are State

Rxns

Page 112: Drill: Draw LDDs for:

State Reaction•Reactions that are independent of the

path; thus not dependent on intermediates

Page 113: Drill: Draw LDDs for:

Lab 8:•Thermochemistry•HW: P 49•Page: 236

Page 114: Drill: Draw LDDs for:

Drill: Calculate Ho, Go, So, & solve Teq when:

A + BC AC2 + BCompd BC AC2

Hfo(kJ/mole) -150 -250

Gfo(kJ/mole) -125 -225

Page 115: Drill: Draw LDDs for:

Hess’s LawHrxn is the same

whether it occurs in a single step or a series

of steps.

Page 116: Drill: Draw LDDs for:

Write TE for the process2 A + B C + D

C + A H

D + B 2 K

H + K M + B

K + M Product

Page 117: Drill: Draw LDDs for:

Write TE for the process2 A + B C + D

C + A H

D + B 2 K

H + K M + B

K + M Product

Page 118: Drill: Draw LDDs for:

AP Homework•Problem: 32 & 33

On page 235

Page 119: Drill: Draw LDDs for:

Write TE for the process2 A + 2 B C + D

C + A 2 H

D + B 2 K

H + K P + B

Page 120: Drill: Draw LDDs for:

Write TE for the process2 A + 2 B C + D

C + A 2 H

D + B 2 K

2 H + 2 K 2 P + 2 B

Page 121: Drill: Draw LDDs for:

Drill: Calculate Horxn for

the production of CaCO3 from CaO & CO2

Hf

o

(kJ/mole)

CaCO3 CaO CO2

-1206.9 -635.1 -393.5

Page 122: Drill: Draw LDDs for:

Calculate the % yield from the

results of the last two slides

Page 123: Drill: Draw LDDs for:

Bond Equation

Hbondo

rxnHbond

o

products

Hbondo

reactants)

Page 124: Drill: Draw LDDs for:

Bond Energies (kJ/mole)

C-C 347 O=O

C-H 414 685

O-H 464

C=O 715

Page 125: Drill: Draw LDDs for:

Calculate the heat change when 6.0

kg of ethane (C2H6) is burned

in excess oxygen.

Page 126: Drill: Draw LDDs for:

Substance Hof(kJ/mole)

S Hof S Ho

f

A -100 H -150B -150 K -200C -50 P -250D -125 Q -300

Page 127: Drill: Draw LDDs for:

Solve Horxn for TE

A + B 2 C + 2 D

C + A 2 H + P

D + B 2 K + P

H + K P + Q

Page 128: Drill: Draw LDDs for:

Solve Horxn for TE

A + B 2 C + 2 D

2C + 2A 4 H + 2P

2D + 2B 4K + 2P

4H + 4K 4P + 4Q

Page 129: Drill: Draw LDDs for:

Drill: What does each symbol represent?

Define what is represents:

H:G:S:

Page 130: Drill: Draw LDDs for:

Test on Thermochemistry

Tomorrow

Page 131: Drill: Draw LDDs for:

Review

Page 132: Drill: Draw LDDs for:

Calculate Htotal, when 40.0 g of

H2O is changed from - 25oC to

125oC. FPw = 0.0oC

BPw = 100.0 oC Hv = 2260 J/gCice = 2.06 (J/g K) Hf = 334 J/gCwater = 4.18 (J/g K)Csteam = 2.02 (J/g K)

Page 133: Drill: Draw LDDs for:

Calculate Ho, Go, & So for N2O5 + H2O HNO3

Cpd N2O5 H2O HNO3 Hf

o -11.3 -285.8 -174.1

Gfo -10.4 -237.2 -151.5

Page 134: Drill: Draw LDDs for:

When 10.8 g N2O5 is added to a

1.50 kg calorimeter (C = 1.00 J/gK) containing 1.00 kg of H2O

(C = 4.18 J/gK), the N2O5reacts with the water forming HNO3.

The temp. of the system changes from 23.000oC to 23.750oC.

Calculate the Hrxn/mole N2O5.

Page 135: Drill: Draw LDDs for:

Calculate the % yield of the

reaction in the last two slides.

Page 136: Drill: Draw LDDs for:

Solve Ho for TE X + Y 2 W + 2 Z 60 kJ

W + X 2 R + P 40 kJ

2 S + P Z + Y 50 kJ

R + S P + Q 80 kJ

Page 137: Drill: Draw LDDs for:

Ho for TE X + Y 2 W + 2 Z 60 kJ

2W + 2X 4 R + 2P 80 kJ

2Z + 2Y 4 S + 2P -100 kJ

4 R + 4S 4P + 4Q 320 kJ

3X + 3Y 8P + 4Q 360 kJ

Page 138: Drill: Draw LDDs for:

Calculate Ho, Go, & So for PbO2 + CO CO2 + Pb

Cpd PbO2 CO CO2 Hf

o -277.4 -110.5 -393.5

Gfo -217.4 -137.2 -394.4

Calculate: Teq & H of 48 g PbO2

Page 139: Drill: Draw LDDs for:

Test Tomorrow

Page 140: Drill: Draw LDDs for:

When 4.20 g MgCO3 is decomposed to MgO & CO2 in a 2500.0 g calorimeter (C = 2.00 J/gK) containing 1.0.kg of water (C = 4.18 J/gK), the water changes from 23.00oC to 13.00oC. Calculate the heat of rxn/mole of MgCO3

Page 141: Drill: Draw LDDs for:

AP Homework:Read: Chapter 9Power Point: 17

Page 142: Drill: Draw LDDs for:

Chm II Homework:Read: Chapter 16Power Point: 19