7.) Use the following thermochemical equations as needed to find the heat of formation of diamond: C(diamond) + O;(g) →CO;(g) AH = -395.4 kJ 2 CO:(g)→ 2 CO(g) + O; (g) AH = 566.0 kJ C(graphite) + O;(g)→CO-(g) AH° = -393.5 kJ 2 CO(g) → C(graphite) + CO;(g) AH® = -172.5 kJ

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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 6.146QP: Given the following (hypothetical) thermochemical equations:...
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7.) Use the following thermochemical equations as needed to find the heat of formation of diamond:
C(diamond) + O;(g) →CO;(g)
AH = -395.4 kJ
%3D
2 CO:(g) → 2 CO(g) + O; (g)
AH = 566.0 kJ
C(graphite) + O;(g)→ CO:(g)
AH = -393.5 kJ
2 CO(g)→ C(graphite) + CO,(g)
AH = -172.5 kJ
%3D
Transcribed Image Text:7.) Use the following thermochemical equations as needed to find the heat of formation of diamond: C(diamond) + O;(g) →CO;(g) AH = -395.4 kJ %3D 2 CO:(g) → 2 CO(g) + O; (g) AH = 566.0 kJ C(graphite) + O;(g)→ CO:(g) AH = -393.5 kJ 2 CO(g)→ C(graphite) + CO,(g) AH = -172.5 kJ %3D
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