If AH°, of H,O the AH°, of evaporation of H,0 in ( KJ/mol) is : is -285.8 KJ/mol and AH°, of H,O is -241.8 KJ/mol, then (6), L)

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Match each of the following with its correct answer
If AH°, of H,O is -285.8 KJ/mol and AH°, of H,0,
2 (g)
the AH°, of evaporation of H,O in ( KJ/mol) is :
2 (L)
is -241.8 KJ/mol, then
(L)
Choose...
Given the following thermochemical equation:
2CH18(1)
+ 25 0,(g)
16CO,o) + 18 H,O
->
AH° = -11020
kJ/mol
If AH°, [CO,o] = -393.5 kJ/mol and AH°, [H,O] = -285.8kJ/mol, calculate the
standard enthalpy of formation of octane ( C,H,) in kJ/mol
Choose... v
Consider the following reactions:
Transcribed Image Text:Match each of the following with its correct answer If AH°, of H,O is -285.8 KJ/mol and AH°, of H,0, 2 (g) the AH°, of evaporation of H,O in ( KJ/mol) is : 2 (L) is -241.8 KJ/mol, then (L) Choose... Given the following thermochemical equation: 2CH18(1) + 25 0,(g) 16CO,o) + 18 H,O -> AH° = -11020 kJ/mol If AH°, [CO,o] = -393.5 kJ/mol and AH°, [H,O] = -285.8kJ/mol, calculate the standard enthalpy of formation of octane ( C,H,) in kJ/mol Choose... v Consider the following reactions:
Consider the following reactions:
2CIF,
+ O2(9)
(6)
AH= +167.4 kJ/mol
2CIF.
3(g)
+ 202 (g)
3F,0 (g)
AH= +341.4 kJ/mol
Cl,0(9)
2F,0(g)
2 F
+ O
AH= 43.4kJ/mol
->
2(g)
Choose...
Use Hess's law to Calculate AH (in kJ/mol) for the following reaction :
CIF,
(g)
+ F.
2(g)
CIF.
3(g)
If AH°, of H,O(L)
the AH°, of condensation of H,0, in ( KJ/mol) is :
is -285.8 KJ/mol and AH°, of H,0, is -241.8 KJ/mol, then
(g)
(L)
Choose... v
Using the following information below, calculate AHO, for PbO,
(s),
in kJ/mol.
+ CO 2(9),
ΔΗΟ
rxn
= -131.4 kJ/mol
+ CO (g)
PbO
(),
Pb,
(s),
AHO
Choose... v
Molecules
-110.5
-393.5
CO 2(g)
Transcribed Image Text:Consider the following reactions: 2CIF, + O2(9) (6) AH= +167.4 kJ/mol 2CIF. 3(g) + 202 (g) 3F,0 (g) AH= +341.4 kJ/mol Cl,0(9) 2F,0(g) 2 F + O AH= 43.4kJ/mol -> 2(g) Choose... Use Hess's law to Calculate AH (in kJ/mol) for the following reaction : CIF, (g) + F. 2(g) CIF. 3(g) If AH°, of H,O(L) the AH°, of condensation of H,0, in ( KJ/mol) is : is -285.8 KJ/mol and AH°, of H,0, is -241.8 KJ/mol, then (g) (L) Choose... v Using the following information below, calculate AHO, for PbO, (s), in kJ/mol. + CO 2(9), ΔΗΟ rxn = -131.4 kJ/mol + CO (g) PbO (), Pb, (s), AHO Choose... v Molecules -110.5 -393.5 CO 2(g)
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