CHEMISTRY+CHEM...HYBRID ED.(LL)>CUSTOM<
CHEMISTRY+CHEM...HYBRID ED.(LL)>CUSTOM<
9th Edition
ISBN: 9781305020788
Author: John C.Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher: CENGAGE C
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Chapter 14, Problem 86IL

The acid-catalyzed iodination of acetone

CH3COCH3(aq) + I2(aq) → CH3COCH2I(aq) + HI(aq)

is a common laboratory experiment used in general chemistry courses to teach the method of initial rates. The reaction is followed spectrophotometrically by the disappearance of the color of iodine in the solution. The following data (J. P. Birk and D. L Walters, Journal of Chemical Education, Vol. 69, p. 585, 1992) were collected at 23 °C for this reaction.

Chapter 14, Problem 86IL, The acid-catalyzed iodination of acetone CH3COCH3(aq) + I2(aq)  CH3COCH2I(aq) + HI(aq) is a common

Determine the rate law for this reaction.

Expert Solution & Answer
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Interpretation Introduction

Interpretation:

The rate law should be determined for the given chemical reaction.

Concept Introduction:

Rate law: It is generally the rate equation that consists of the reaction rate with the concentration or the pressures of the reactants and constant parameters.

Rate constant: The rate constant for a chemical reaction is the proportionality term in the chemical reaction rate law which gives the relationship between the rate and the concentration of the reactant present in the chemical reaction.

Answer to Problem 86IL

The rate law for the given reaction is as follows,

Rate law = k[CH3COCH3][H+]

Explanation of Solution

The rate law is obtained by first determining the order of each reactant present in the given reaction. The order of each reactant is obtained by using the given set of concentration and the rate data as follows,

The order for CH3COCH3 is obtained by considering the experiment 2 and 3 from the given data.

  23isasfollows,[CH3COCH3]2[CH3COCH3]3[H+]2[H+]3[I2]2[I2]3=[Rate]2[Rate]31.330.3230.006651.7×10-50.6670.3230.006657.6×10-6 _2m21

The order for CH3COCH3 is 1.

Similarly, the order for H+ is obtained as follow,

  12isasfollows,[CH3COCH3]1[CH3COCH3]2[H+]1[H+]2[I2]1[I2]2=[Rate]1[Rate]21.330.1620.006658.1×10-61.330.3230.006651.7×10-5 _0.5n0.51

The order for H+ is 1.

Similarly the order for I2 is determined by using experiments 4 and 5 shows that it is zero order.

  45isasfollows,[CH3COCH3]4[CH3COCH3]5[H+]4[H+]5[I2]4[I2]5=[Rate]4[Rate]50.3330.3230.006653.8×10-60.3330.3230.003323.6×10-6 _21 20 1

The order for I2 is 0.

Therefore, the rate law for the given reaction is as follows,

  Rate law = k[CH3COCH3]1[H+]1[I2]0Rate law = k[CH3COCH3][H+]

Conclusion

The rate law for the given reaction was determined.

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Chapter 14 Solutions

CHEMISTRY+CHEM...HYBRID ED.(LL)>CUSTOM<

Ch. 14.4 - Prob. 3CYUCh. 14.4 - The catalyzed decomposition of hydrogen peroxide...Ch. 14.4 - Americium is used in smoke detectors and in...Ch. 14.4 - The decomposition of N2O5 is a first-order...Ch. 14.4 - Which of the following will confirm that the...Ch. 14.4 - 3. The equation for the decomposition of NO2(g) at...Ch. 14.5 - Prob. 1CYUCh. 14.5 - The colorless gas N2O4, decomposes to the brown...Ch. 14.5 - Prob. 1RCCh. 14.5 - Prob. 2RCCh. 14.6 - Nitrogen monoxide is reduced by hydrogen to give...Ch. 14.6 - Prob. 2CYUCh. 14.6 - One possible mechanism for the decomposition of...Ch. 14.6 - The rate equation for a reaction A + B C was...Ch. 14.6 - A reaction is believed to occur by the following...Ch. 14.6 - Prob. 1QCh. 14.6 - Prob. 2QCh. 14.6 - Prob. 3QCh. 14.6 - Prob. 4QCh. 14.6 - Prob. 5QCh. 14.6 - Determine the activation energy for the reaction...Ch. 14 - Give the relative rates of disappearance of...Ch. 14 - Give the relative rates of disappearance of...Ch. 14 - In the reaction 2 O3(g) 3 O2(g), the rate of...Ch. 14 - In the synthesis of ammonia, if [H2]/t = 4.5 104...Ch. 14 - Experimental data are listed here for the reaction...Ch. 14 - 6. 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NO2(g) NO(g) + ...Ch. 14 - The decomposition of HOF occurs at 25 C. 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