23. Using the following thermochemical equations: 2 SO,(g) →2 SO,g) + 0,(g) ΔΗ TXn 1 = +198 kJ/molm SO;(g) + H,0(g) → H,SO(E) ΔΗ Txn 2 -176 kJ/mol Determine the enthalpy of the reaction represented below: SO,(g) +0,(g) + H,0(g) → H,SO,(E) AH°, = ? EXn 3 = +22 kJ/molxn =-77 kJ/moln (A) AH°. (B) AH°. (C) AH (D) AH°, =-275 kJ/mol, =-374 kJ/molxn

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter4: Energy And Chemical Reactions
Section4.10: Standard Formation Enthalpies
Problem 4.18CE
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234
CHAPTER 8
23. Using the following thermochemical equations:
2 SO,(g) → 2 SO,(g) + O,(g)
ΔΗ
TXn 1
= +198 kJ/molm
So;(g) + H,0(g) → H,SO,(e)
ΔΗ
Ixn 2
=-176 kJ/molm
Determine the enthalpy of the reaction represented below:
SO,(g) +0,(g) + H,O(g) → H,SO,(€) AH°,
= ?
Txn 3
= +22 kJ/molxn
=-77 kJ/mol,pn
=-275 kJ/molxn
(А) ДНО
KOH)
Ixn
(B) ДНе
(C) AHÓ
(D) AH°,
Ixn
=-374 kJ/molxn
Transcribed Image Text:234 CHAPTER 8 23. Using the following thermochemical equations: 2 SO,(g) → 2 SO,(g) + O,(g) ΔΗ TXn 1 = +198 kJ/molm So;(g) + H,0(g) → H,SO,(e) ΔΗ Ixn 2 =-176 kJ/molm Determine the enthalpy of the reaction represented below: SO,(g) +0,(g) + H,O(g) → H,SO,(€) AH°, = ? Txn 3 = +22 kJ/molxn =-77 kJ/mol,pn =-275 kJ/molxn (А) ДНО KOH) Ixn (B) ДНе (C) AHÓ (D) AH°, Ixn =-374 kJ/molxn
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