Given the following thermochemical equations, 4B(s) + 30,(g) → 2B,03(s) AHº= -2543.8 kJ H2 (g) + ½ O2(g) → H,0 (g) AHº= -241.8 kJ B,H,(s) + 30,(g) → B,03(s) + 3H,0 (g) AH°= -2032.9 kJ Calculate the AHº for the decomposition of B,H, into its elements.

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter16: Thermodynamics: Directionality Of Chemical Reactions
Section: Chapter Questions
Problem 65QRT
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1st Law of Thermodynamics
Given the following thermochemical equations,
4B(s) + 30,(g) → 2B,O3(s)
AHº= -2543.8 kJ
H2 (g) + ½ O,(g) → H,0 (g)
AHº= -241.8 kJ
B2H,(s) + 30,(g) → B,O3(s) + 3H,0 (g) AHº= -2032.9 kJ
Calculate the AHº for the decomposition of B,H, inte
elements.
Transcribed Image Text:1st Law of Thermodynamics Given the following thermochemical equations, 4B(s) + 30,(g) → 2B,O3(s) AHº= -2543.8 kJ H2 (g) + ½ O,(g) → H,0 (g) AHº= -241.8 kJ B2H,(s) + 30,(g) → B,O3(s) + 3H,0 (g) AHº= -2032.9 kJ Calculate the AHº for the decomposition of B,H, inte elements.
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