ORGANIC CHEMISTRY BOOK& SG/SM
ORGANIC CHEMISTRY BOOK& SG/SM
6th Edition
ISBN: 9781264094493
Author: SMITH
Publisher: MCG
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Chapter 6.5, Problem 12P

The equilibrium constant for the conversion of the axial to the equatorial conformation of methoxycyclohexane is 2.7 .

Chapter 6.5, Problem 12P, The equilibrium constant for the conversion of the axial to the equatorial conformation of

a. Given these data, which conformation is present in the larger amount at equilibrium?

b. Is Δ G ° for this process positive or negative?

c. From the values in Table 6.3 , approximate the size of Δ G ° .

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Given the following data: 4C(s) + 4H2(g) + O2(g) → CH3CH2OCOCH3(l)  ΔH°=-480.0 kJ CH3CH2OH(l) + O2(g) → CH3COOH(l) + H2O(l)  ΔH°=-492.0 kJ 2C(s) + 3H2(g) + 1/2O2(g) → CH3CH2OH(l)  ΔH°=-278.0 kJ H2(g) + 1/2O2(g) → H2O(l)  ΔH°=-286.0 kJ calculate ΔH° for the reaction:CH3COOH(l) + CH3CH2OH(l) → CH3CH2OCOCH3(l) + H2O(l)
Given the following data:     2 C6H6(l) + 15 O2(g) → 12 CO2(g) + 6 H2O(l)    ΔG0= -6399 kJ     C(s) + O2(g) → CO2(g) ΔG0= -394 kJ     H2(g) + ½O2(g) → H2O(l) ΔG0= -237 kJ       Calculate the ΔG0rxn for the reaction      6 C(s) + 3 H2(g) → C6H6(l)
Difluoroacetylene (C2F2) gas has a ΔHf° = 241.2 kJ/mole and a a ΔGf° = 191.2 kJ/mole. Hexafluorobenzene(C6F6) gas has a ΔHf° = 132.8 kJ/mole and a a ΔGf° = 78.2 kJ/mole. For the following reaction: C6F6(g) ⇌ 3C2F2(g)  Calculate:a) The ΔS for the reaction at 25 °Cb) The equilibrium constant K at 25 °Cc) The equilibrium constant K at 2700 °C (assuming there is no temperature dependance on ΔH and ΔS)

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