The space shuttle orbiter utilizes the oxidation of methyl- hydrazine by dinitrogen tetroxide for propulsion: 4N,H,CH3(1) + 5N,0,(1) - 12H,O(g) + 9N,(g) + 4CO,(g) Calculate AH for this reaction using data in Appendix 4.

Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter20: Chemistry Of Hydrogen, Elements In Group 3a Through 6a, And The Noble Gases
Section: Chapter Questions
Problem 20.43QE
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Data from appendix 4
N2H3CH3(1)= 54
N204(1)= -20
N2(g) =0
CO2(g)%D -393..5
H2O(g)= -242
Transcribed Image Text:Data from appendix 4 N2H3CH3(1)= 54 N204(1)= -20 N2(g) =0 CO2(g)%D -393..5 H2O(g)= -242
57. The space shuttle orbiter utilizes the oxidation of methyl-
hydrazine by dinitrogen tetroxide for propulsion:
4N,H,CH3() + SN,0,(1) →
12H,0(g) + 9N,(g) + 4CO,(g)
Calculate AH for this reaction using data in Appendix 4.
Transcribed Image Text:57. The space shuttle orbiter utilizes the oxidation of methyl- hydrazine by dinitrogen tetroxide for propulsion: 4N,H,CH3() + SN,0,(1) → 12H,0(g) + 9N,(g) + 4CO,(g) Calculate AH for this reaction using data in Appendix 4.
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