Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 14, Problem 104AP

A gas mixture containing CH 3 fragments. C 2 H 6 molecules, and an inert gas (He) was prepared at 600 K with a total pressure of 5.42 atm. The elementary reaction

CH 3 +C 2 H 6 CH 4 +C 2 H 5

has a second-order rate constant of 3 .0 x 10 4 /M S . Given that the mole fractions of CH 3 at C 2 H 6 are 0.00093 and 0.00077, respectively, calculate the initial rate of the reaction at this temperature.

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Interpretation Introduction

Interpretation:

The initial rate of the reaction at given temperature is to be calculated.

Concept introduction:

The branch of chemistry thatdeals with the relative rates of chemical reactions and the factors affecting the rates of reactions is known as chemical kinetics.

The mathematical expression thatdefines the dependence of the rate of reaction on the concentration of reactants is known as the rate law equation or the rate law.

Answer to Problem 104AP

Solution: 2.6×104M/s.

Explanation of Solution

Given information: The reaction is given as follows:

CH3+C2H6CH4+C2H5

The rate constant of the reaction is 3.0×104M1s1.

The total pressure of the system is 5.42atm.

The partial pressure of methyl molecule is calculated by the expression as follows:

PCH3=XCH3PT

Here, PCH3 is the partial pressure of the methyl group, XCH3 is the mole fraction of the methyl group, and PT is the total pressure.

Substitute the values of XCH3 and PT in the above equation,

PCH3=(0.00093)(5.42atm)=0.0050atm

The partial pressure of ethane molecule is calculated by the expression as follows:

PC2H6=XC2H6PT

Here, PC2H6 is the partial pressure of ethyl group, XC2H6 is the mole fraction of ethyl group, and PT is the total pressure.

Substitute the values of XC2H6 and PT in the above equation,

PC2H6=(0.00077)(5.42atm)=0.0042atm a

According to the ideal gas equation:

PV=nRTnV=PRT(M=nV)M=PRT

Here, n is the number of moles, V is the volume, P is the pressure, R is the universal gas constant, M is the molarity, and T is the absolute temperature.

The molarity concentration of CH3 is calculated by the expression as follows:

MCH3=PCH3RT

Here, MCH3 is the molarity of methyl, PCH3 is the partial pressure of methyl group, R is the gas constant, and T is the absolute temperature.

Substitute the values of PCH3, R, and T in the above equation,

MCH3=0.0050atm(0.0821L.atm/mol.K)(600K)=0.005049.26M=1.01×104M

The molarity concentration of C2H6 is calculated by the expression as follows:

MC2H6=PC2H6RT

Here, MC2H6 is the molarity concentration of ethane, PC2H6 is the partial pressure of ethane, R is the gas constant, and T is the absolute temperature.

Substitute the values of PC2H6, R, and T in the above equation,

MC2H6=0.0042atm(0.0821L.atm/mol.K)(600K)=0.004249.26M=8.5×105M

The rate of the reaction is calculated by the expression as follows:

rate=k[CH3][C2H6]

Substitute the values of k,[CH3], and [C2H6] in the above equation,

rate=(3.0×104M1s1)(1.01×104M)(8.5×105M)=25.5×105M/s=2.6×104M/s

Conclusion

The initial rate of the reaction is 2.6×104M/s.

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Chapter 14 Solutions

Chemistry

Ch. 14.2 - Answer questions 14.2.1 through 14.2.4 using the...Ch. 14.2 - Answer questions 14.2.1 through 14.2.4 using the...Ch. 14.2 - 14.2.5 The diagrams represent three experiments in...Ch. 14.3 - Prob. 1PPACh. 14.3 - Practice Problem BUILD For the following general...Ch. 14.3 - Practice Problem CONCEPTUALIZE Three initial-rate...Ch. 14.3 - The first-order decomposition of dinitrogen...Ch. 14.3 - The first-order decomposition of dinitrogen...Ch. 14.3 - 14.3.3 Consider the first-order reaction in which...Ch. 14.3 - Which figure below represents the numbers of...Ch. 14.3 - 14.3.5 Of the plots shown here, ___________...Ch. 14.4 - Practice Problem ATTEMPT The rate constant for the...Ch. 14.4 - Practice Problem BUILD Refer again to the reaction...Ch. 14.4 - Practice Problem CONCEPTUALIZE The diagrams on...Ch. 14.4 - Use the table of data collected for a first-order...Ch. 14.4 - Prob. 2CPCh. 14.4 - Prob. 3CPCh. 14.5 - Practice Problem ATTEMPT Ethyl iodide ( C 2 H 5 I)...Ch. 14.5 - Practice Problem BUILD Use the calculated k from...Ch. 14.5 - Practice Problem CONCEPTUALIZE Use the graph in...Ch. 14.5 - Use the following information to answer questions...Ch. 14.5 - Use the following information to answer questions...Ch. 14.5 - Use the following information to answer questions...Ch. 14.5 - 14.5.4 A plausible mechanism for the reaction: Ch. 14.6 - Practice ProblemATTEMPT Calculate the half-life of...Ch. 14.6 - Practice ProblemBUILD Calculate the rate constant...Ch. 14.6 - Practice Problem CONCEPTUALIZE The diagrams show a...Ch. 14.7 - Practice Problem ATTEMPT The reaction is second...Ch. 14.7 - Practice Problem BUILD Determine the initial...Ch. 14.7 - Practice ProblemCONCEPTUALIZE The diagrams below...Ch. 14.8 - Practice ProblemATTEMPT The second-order rate...Ch. 14.8 - Practice Problem BUILD Use the graph to determine...Ch. 14.8 - Prob. 1PPCCh. 14.9 - Practice ProblemATTEMPT Use the data in the...Ch. 14.9 - Practice ProblemBUILD Based on the data shown in...Ch. 14.9 - Practice Problem CONCEPTUALIZE According to the...Ch. 14.10 - Practice ProblemATTEMPT Calculate the rate...Ch. 14.10 - Practice ProblemBUILD Calculate the rate constant...Ch. 14.10 - Practice ProblemCONCEPTUALIZE According to the...Ch. 14.11 - Practice Problem ATTEMPT The reaction between and...Ch. 14.11 - Practice ProblemBUILD Propose a plausible...Ch. 14.11 - Practice Problem CONCEPTUALIZE How many steps are...Ch. 14.12 - Practice Problem ATTEMPT Show that the following...Ch. 14.12 - Practice Problem BUILD The reaction proceeds via...Ch. 14.12 - Practice Problem CONCEPTUALIZE The reaction of is...Ch. 14 - Prob. 1KSPCh. 14 - Prob. 2KSPCh. 14 - Prob. 3KSPCh. 14 - Prob. 4KSPCh. 14 - 14.1 What is meant by the rate of a chemical...Ch. 14 - Distinguish between average rate and instantaneous...Ch. 14 - What are the advantages of measuring the initial...Ch. 14 - Identify two reactions that are very slow (take...Ch. 14 - Write the reaction rate expressions for the...Ch. 14 - Write the reaction rate expressions for the...Ch. 14 - Consider the reaction: 2NO ( g ) + O 2 ( g ) → 2NO...Ch. 14 - 14.8 Consider the reaction: Suppose that at a...Ch. 14 - 14.9 Explain what is meant by the rate law of a...Ch. 14 - Prob. 10QPCh. 14 - What are the units for the rate constants of...Ch. 14 - 14.12 Consider the zeroth-order reaction: a ...Ch. 14 - 14.13 The rate constant of a first-order reaction...Ch. 14 - Identify two reactions that are very slow (take...Ch. 14 - The rate law for the reaction: N H 4 + ( a q )+N O...Ch. 14 - Use the data in Table 14.2 to calculate the rate...Ch. 14 - 14.17 Consider the reaction: From the following...Ch. 14 - Consider the reaction: X + Y → Z From the...Ch. 14 - Determine the overall orders of the reactions to...Ch. 14 - 14.20 Consider the reaction: The rate of the...Ch. 14 - Cyclobutane decomposes to ethylene according to...Ch. 14 - The following gas-phase reaction was studied at...Ch. 14 - Write an equation relating the concentration of a...Ch. 14 - 14.24 Define half-life. 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Kinetics: Initial Rates and Integrated Rate Laws; Author: Professor Dave Explains;https://www.youtube.com/watch?v=wYqQCojggyM;License: Standard YouTube License, CC-BY