The oxidation of copper(I) oxide, Cu,O(s), to copper(II) oxide, CuO(s), is an exothermic process. 2 Cu,O(s) + 0,(g) kJ = -292.0 mol 4 CuO(s) ΔΗΚΠ Calculate the energy released as heat when 83.00 g Cu,O(s) undergo oxidation at constant pressure. energy released: kJ

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter5: Thermochemistry
Section: Chapter Questions
Problem 5.41QE
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What is the heat of combustion of ethane, C, H,, in kilojoules per mole of ethane? Enthalpy of formation values can be found
in this list of thermodynamic properties.
1427.7
AHixn
kJ/mol ethane
Incorrect
Transcribed Image Text:What is the heat of combustion of ethane, C, H,, in kilojoules per mole of ethane? Enthalpy of formation values can be found in this list of thermodynamic properties. 1427.7 AHixn kJ/mol ethane Incorrect
The oxidation of copper(I) oxide, Cu, O(s), to copper(II) oxide, CuO(s), is an exothermic process.
2 Cu, O(s) + 0,(g)
kJ
-292.0
mol
4 CuO(s)
ΔΗΚΗ
Calculate the energy released as heat when 83.00 g Cu, O(s) undergo oxidation at constant pressure.
energy released:
kJ
Transcribed Image Text:The oxidation of copper(I) oxide, Cu, O(s), to copper(II) oxide, CuO(s), is an exothermic process. 2 Cu, O(s) + 0,(g) kJ -292.0 mol 4 CuO(s) ΔΗΚΗ Calculate the energy released as heat when 83.00 g Cu, O(s) undergo oxidation at constant pressure. energy released: kJ
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