Chemistry
Chemistry
13th Edition
ISBN: 9781259911156
Author: Raymond Chang Dr., Jason Overby Professor
Publisher: McGraw-Hill Education
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Chapter 13, Problem 13.27QP

The rate constant for the second-order reaction

2 NOBr ( g ) 2 NO ( g ) + Br 2 ( g )

is 0.80/M · s at 10°C. (a) Starting with a concentration of 0.086 M, calculate the concentration of NOBr after 22 s. (b) Calculate the half-lives when [NOBr]0 = 0.072 M and [NOBr]0 = 0.054 M.

(a)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation:

The concentration of NaOBr after 22s from the given information has to be calculated.

Concept introduction:

Rate equation for the general reaction A+BProduct is,

Rate=krateconstat[A][B]

The rate of the reaction is proportinal to the concentration of A to the power of x, is [A]x

The rate of the reaction is proportional to the concentration of B to the power of y is [B]y

Then the rate equation becomes,

Rate=k[A]x[B]y

Order of this reaction is the sum of the powers to which all reactant concentrations appearing in the rate law are  raised.

Orderx+y

Answer to Problem 13.27QP

The concentration of NaOBr after 22s from the given information is 0.034 M

Explanation of Solution

The given reaction is

2NaOBr(g)2NO(g)+Br2(g)

The reaction follows second order kinetics.

Rate constant of the given reaction is k=0.80M1s1

The concentration of NaOBr after 22s can be determined as follows,

For a second order reaction the relationship between concentrations of reactant and time is,

1[NaOBr]t=kt+1[NaOBr]01[NaOBr]t=(0.80/Ms)(22s)+10.086M1[NaOBr]t=29M1[NOBr] = 0.034 M

Therefore, the concentration of NaOBr after 22s is 0.034 M

(b)

Expert Solution
Check Mark
Interpretation Introduction

Interpretation:

The half-life when [NaOBr]0=0.072Mand [NaOBr]0=0.054M has to be calculated.

Concept introduction:

Rate equation for the general reaction A+BProduct is,

Rate=krateconstat[A][B]

The rate of the reaction is proportinal to the concentration of A to the power of x, is [A]x

The rate of the reaction is proportional to the concentration of B to the power of y is [B]y

Then the rate equation becomes,

Rate=k[A]x[B]y

Order of this reaction is the sum of the powers to which all reactant concentrations appearing in the rate law are  raised.

Orderx+y

Half-life is the time required for one half of a reactant to react.

Half-life for a second order reaction is

t12=1k[A]0where[A]0istheinitialconcentrationofreactantA

Answer to Problem 13.27QP

The half-life when [NaOBr]0=0.072Mand [NaOBr]0=0.054M is 23s

Explanation of Solution

The given reaction is

2NaOBr(g)2NO(g)+Br2(g)

The reaction follows second order kinetics.

Rate constant of the given reaction is k=0.80M1s1

The concentration of NaOBr after 22s can be determined as follows,

We know that for a second order half-life reaction and half-life of a second order reaction is dependent on initial concentration

t12=1k[A]0t12=1(0.80/Ms)(0.072M)t12=17 s

The half-life when [NaOBr]0=0.054M can be determined as follows,

t12=1k[A]0t12=1(0.80/Ms)(0.054M)t12=23 s

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Chapter 13 Solutions

Chemistry

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