Organic Chemistry Third Edition + Electronic Solutions Manual And Study Guide
Organic Chemistry Third Edition + Electronic Solutions Manual And Study Guide
3rd Edition
ISBN: 9781119351610
Author: David Klein
Publisher: Wiley Plus
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Chapter 6, Problem 21PP

(a)

Interpretation Introduction

Interpretation:

It should be determined that whether or not the equilibrium will favour product over reactants under the given condition.

Concept Introduction:

Equilibrium constant: At equilibrium the ratio of products to reactants has a constant value. And it is represented by the letter K.

For a general reaction, aA+bBcC+dD .

The equilibrium constant Kc = [C]c[D]d[A]a[B]b a, b, c and d are the stoichiometric coefficients of reactant and product in the reaction. Concentration value for solid substance is 1.

If the value of K>1 then the reaction will be product-favoured which means product predominates at equilibrium.

If the value of K<1 then the reaction will be reactant-favoured which means reactant predominates at equilibrium.

The Gibbs free energy or the free energy change is a thermodynamic quantity represented by ΔG. The expression for the free energy change with respect to the Keq is written below,

 ΔG=-RTlnKeq where, R is the gas constant, T is the temperature in Kelvin.

(b)

Interpretation Introduction

Interpretation:

It should be determined that whether or not the equilibrium will favour product over reactants under the given condition.

Concept Introduction:

Equilibrium constant: At equilibrium the ratio of products to reactants has a constant value. And it is represented by the letter K.

For a general reaction, aA+bBcC+dD

The equilibrium constant Kc = [C]c[D]d[A]a[B]b    a, b, c and d are the stoichiometric coefficients of reactant and product in the reaction. Concentration value for solid substance is 1.

If the value of K>1 then the reaction will be product-favoured which means product predominates at equilibrium.

If the value of K<1 then the reaction will be reactant-favoured which means reactant predominates at equilibrium.

The Gibbs free energy or the free energy change is a thermodynamic quantity represented by ΔG. The expression for the free energy change with respect to the Keq is written below,

 ΔG=-RTlnKeq  where, R is the gas constant, T is the temperature in Kelvin.

(c)

Interpretation Introduction

Interpretation:

It should be determined that whether or not the equilibrium will favour product over reactants under the given condition.

Concept Introduction:

The Gibbs free energy or the free energy change is a thermodynamic quantity represented by ΔG. The expression for the free energy change with respect to the Keq is written below,

 ΔG=-RTlnKeq  where, R is the gas constant, T is the temperature in Kelvin.

If ΔG<0 then the reaction is spontanous in forward reaction and so the reaction will favor products.

If ΔG>0 then the reaction is spontanous in backward reaction and so the reaction will favor reactants.

If ΔG=0 then the reaction is at equilibrium.

(d)

Interpretation Introduction

Interpretation:

It should be determined that whether or not the equilibrium will favour product over reactants under the given condition.

Concept Introduction:

The Gibbs free energy or the free energy change is a thermodynamic quantity represented by ΔG. The expression for the free energy change as a function of  entropy ΔS and enthalpy ΔH, is written below,

 ΔG=ΔHTΔS  where, T is the temperature in Kelvin.

If ΔG<0 then the reaction is spontanous in forward reaction and so the reaction will favor products.

If ΔG>0 then the reaction is spontanous in backward reaction and so the reaction will favor reactants.

If ΔG=0 then the reaction is at equilibrium.

An exothermic process is one that loses heat to the surroundings.

An endothermic reaction is one that gains heat from the surroundings.

(e)

Interpretation Introduction

Interpretation:

It should be determined that whether or not the equilibrium will favour product over reactants under the given condition.

Concept Introduction:

The Gibbs free energy or the free energy change is a thermodynamic quantity represented by ΔG. The expression for the free energy change as a function of  entropy ΔS and enthalpy ΔH, is written below,

 ΔG=ΔHTΔS  where, T is the temperature in Kelvin.

If ΔG<0 then the reaction is spontanous in forward reaction and so the reaction will favor products.

If ΔG>0 then the reaction is spontanous in backward reaction and so the reaction will favor reactants.

If ΔG=0 then the reaction is at equilibrium.

An exothermic process is one that loses heat to the surroundings.

An endothermic reaction is one that gains heat from the surroundings.

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• Part II. a) Elucidate The structure of compound c w/ molecular formula C10 11202 and the following data below: • IR spectra % TRANSMITTANCE 1002.5 90 80 70 60 50 40 30 20 10 0 4000 3600 3200 2800 2400 2000 1800 1600 • Information from 'HAMR MICRONS 8 9 10 11 14 15 16 19 25 1400 WAVENUMBERS (CM-1) 1200 1000 800 600 400 peak 8 ppm Integration multiplicity a 2.1 1.5 (3H) Singlet b 3.6 1 (2H) singlet с 3.8 1.5 (3H) Singlet d 6.8 1(2H) doublet 7.1 1(2H) doublet Information from 13C-nmR Normal carbon 29ppm Dept 135 Dept -90 + NO peak NO peak 50 ppm 55 ppm + NO peak 114 ppm t 126 ppm No peak NO peak 130 ppm t + 159 ppm No peak NO peak 207 ppm по реак NO peak
Could you redraw these and also explain how to solve them for me pleas
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Organic Chemistry Third Edition + Electronic Solutions Manual And Study Guide

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