e equation below for the formation of one mole of ammonia, NH3, fro N2 + H2 NH3 AH = -38 kJm a in the table above to calculate the bond energy of N - H bond in N in (i) above. Comment on why the value obtained is referred to as 'r quation below and data from the table to calculate a value for the C= H-H C-H C-C 418 ergy /kJ mol 436 348 нн H-H→H-C CH AH=-136 kJ mor нн Ethane

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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The table below contains some mean bond energy data:
Bond
C-C
348
H-H
N=N
Mean bond energy /kJ mol| 436
944
(i) Balance the equation below for the formation of one mole of ammonia, NH3, from its elements.
N2
+ H2
NH3
AH = -38 kJmol"
(ii)Use the data in the table above to calculate the bond energy of N - H bond in NH3 in the
reaction given in (1) above. Comment on why the value obtained is referred to as 'mean bond
enthalpy
(ii) Use the equation below and data from the table to calculate a value for the C=C bond energy in
ethene.
Bond
H-H
C-H C-C
348
Mean bond energy /kJ mol 436
418
нн
нн
С—С + Н Нэнс- с н
AH = -136 kJ mol
нн
н
Ethene
Ethane
Transcribed Image Text:The table below contains some mean bond energy data: Bond C-C 348 H-H N=N Mean bond energy /kJ mol| 436 944 (i) Balance the equation below for the formation of one mole of ammonia, NH3, from its elements. N2 + H2 NH3 AH = -38 kJmol" (ii)Use the data in the table above to calculate the bond energy of N - H bond in NH3 in the reaction given in (1) above. Comment on why the value obtained is referred to as 'mean bond enthalpy (ii) Use the equation below and data from the table to calculate a value for the C=C bond energy in ethene. Bond H-H C-H C-C 348 Mean bond energy /kJ mol 436 418 нн нн С—С + Н Нэнс- с н AH = -136 kJ mol нн н Ethene Ethane
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