Consider a Newman projection of 2-methylbutane shown. Calculate the energy from the strain present in this conformation. CH3 CH3 kcal/mol H. 3 CH3 5. 6. wn Ener rteracton Type he CH he CC, ed CHH ed CHCH 7 +/- x 100 1, 4.
Consider a Newman projection of 2-methylbutane shown. Calculate the energy from the strain present in this conformation. CH3 CH3 kcal/mol H. 3 CH3 5. 6. wn Ener rteracton Type he CH he CC, ed CHH ed CHCH 7 +/- x 100 1, 4.
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Chapter1: Chemical Foundations
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![Consider a Newman projection of 2-methylbutane shown. Calculate
the energy from the strain present in this conformation.
CH3
CH3
kcal/mol
H.
1
H
CH3
6
Strain Enery
kcalmo
Interaction Type
guche H
guche CCH,
cosed CH,
cioned C C,
07
7
8
9
33
+/-
x 100
3.
2.
4.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F23029c3f-32e4-4946-9f07-7f9c026ab9f8%2F407c977d-a636-487e-906c-89904faf18a6%2F4brx7qn_processed.png&w=3840&q=75)
Transcribed Image Text:Consider a Newman projection of 2-methylbutane shown. Calculate
the energy from the strain present in this conformation.
CH3
CH3
kcal/mol
H.
1
H
CH3
6
Strain Enery
kcalmo
Interaction Type
guche H
guche CCH,
cosed CH,
cioned C C,
07
7
8
9
33
+/-
x 100
3.
2.
4.
![The general values for steric and torsional strain are provided. Use
these values to calculate the amount of strain in the molecule in the
box.
kJ/mol
1
3
H ond
4m toronan
6
C ond
SAma
CHyCH, d
11ma n
7
8
9.
+/-
х 100
2.
5.
4.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F23029c3f-32e4-4946-9f07-7f9c026ab9f8%2F407c977d-a636-487e-906c-89904faf18a6%2Fp1kkjwjh_processed.png&w=3840&q=75)
Transcribed Image Text:The general values for steric and torsional strain are provided. Use
these values to calculate the amount of strain in the molecule in the
box.
kJ/mol
1
3
H ond
4m toronan
6
C ond
SAma
CHyCH, d
11ma n
7
8
9.
+/-
х 100
2.
5.
4.
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