The isomerization reaction: H3C-NEC → H3C-C=N obeys the rate law: rate= K[H3C-N=C] with k= 6.6 x 104 s-1 at 500 K and activation energy E₂ = 161 kJ/mol. Calculate AH if the C-N bond enthalpy is 305 kJ/mol and the C-C bond enthalpy is 348 kJ/mol 1. 13 kJ/mol 2. -23 kJ/mol 3. 33 kJ/mol 4. -43 kJ/mol 53 kl/mol

Introduction to General, Organic and Biochemistry
11th Edition
ISBN:9781285869759
Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Chapter7: Reaction Rates And Chemical Equilibrium
Section: Chapter Questions
Problem 7.34P
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1.
2.
The isomerization reaction:
H3C-NEC → H3C-C=N
obeys the rate law: rate = K[H3C-N=C]
with k= 6.6 x 104 s-1 at 500 K and
activation energy E₂ = 161 kJ/mol.
Calculate AH if the C-N bond enthalpy is
305 kJ/mol and the C-C bond enthalpy is
348 kJ/mol
13 kJ/mol
-23 kJ/mol
3. 33 kJ/mol
4.
-43 kJ/mol
53 kl/mol
Transcribed Image Text:1. 2. The isomerization reaction: H3C-NEC → H3C-C=N obeys the rate law: rate = K[H3C-N=C] with k= 6.6 x 104 s-1 at 500 K and activation energy E₂ = 161 kJ/mol. Calculate AH if the C-N bond enthalpy is 305 kJ/mol and the C-C bond enthalpy is 348 kJ/mol 13 kJ/mol -23 kJ/mol 3. 33 kJ/mol 4. -43 kJ/mol 53 kl/mol
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