2. Consider the following thermochemical equations: C(graphite) + 0, (g) → co; (g) AH = -393.5 kJ H2 (g) + % O; (g) → H,O (/) AH = -285.8 kJ 2 C:HG (g) + 7 02 (g) → 4 CO2 (g) + 6 H20 (1) AH°n = -3119.6 kJ a. Derive the thermochemical equation describing the combustion of two moles of C(graphite). b. Derive the thermochemical equation describing the combustion of three moles of H2 (g).
2. Consider the following thermochemical equations: C(graphite) + 0, (g) → co; (g) AH = -393.5 kJ H2 (g) + % O; (g) → H,O (/) AH = -285.8 kJ 2 C:HG (g) + 7 02 (g) → 4 CO2 (g) + 6 H20 (1) AH°n = -3119.6 kJ a. Derive the thermochemical equation describing the combustion of two moles of C(graphite). b. Derive the thermochemical equation describing the combustion of three moles of H2 (g).
General Chemistry - Standalone book (MindTap Course List)
11th Edition
ISBN:9781305580343
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Publisher:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Chapter6: Thermochemisty
Section: Chapter Questions
Problem 6.136QP: Sulfur dioxide gas reacts with oxygen, O2(g), to produce SO3(g). This reaction releases 99.0 kJ of...
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