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Chapter 4, Problem 4.11P

(a)

Interpretation Introduction

Interpretation:

Rate law for the given reaction has to be written has a function of conversion, numerically evaluating all possible symbols.

Concept introduction:

Rate of a reaction: It represents the speed at which a chemical reaction runs.  How much concentration of substrates (reactants) consumed and how much concentration of targets (products) formed in a unit of time is said to be rate of reaction.

The partial pressure of a gas in a mixture can be expressed as,

PA=XAPTotalPAPartialpressureofgasAXAMolefractionofgasAPTotalTotalpressureofmixture

The ideal gas Law equation is,

PV=nRTPPressureVVolumenNumberofmolesRIdealgasconstantTTemperature

(b)

Interpretation Introduction

Interpretation:

The conversion and the reaction rate have 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

Rate of a reaction: It represents the speed at which a chemical reaction runs.  How much concentration of substrates (reactants) consumed and how much concentration of targets (products) formed in a unit of time is said to be rate of reaction.

The partial pressure of a gas in a mixture can be expressed as,

PA=XAPTotalPAPartialpressureofgasAXAMolefractionofgasAPTotalTotalpressureofmixture

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