1. Consider the following chemical reaction which is first order with respect to H2 and second order with respect to NO: 2NO(g) + 2H2(g) - N2(g) + 2H20(g) a. What is the rate law for this reaction? b. What is the order of the reaction overall? cif the rate constant for this reaction at 1000 K is 6.0 x 104 M-2s-1, what is the reaction rate if (NO) = 0.050 M and (H2)0.010 M? d. What is the rate of this reaction at 1000 K if the concentration of H2 is doubled but the concentration of NO remains the same? e. What is the rate of this reaction at 1000 Kif the concentration of NO is doubled but the concelaration of H2 remains the same?

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
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Chapter14: Chemical Kinetics: The Rates Of Chemical Reactions
Section: Chapter Questions
Problem 10PS: Nitrosyl bromide, NOBr, is formed from NO and Br2: 2 NO(g) + Br2(g) 2 NOBr(g) Experiments show that...
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1. Consider the following chemical reaction which is first order with respect to H2 and second order with respect to NO: 2NO(g) + 2H2(g) - N2(g) + 2H20(g)
a. What is the rate law for this reaction?
b. What is the order of the reaction overall?
cif the rate constant for this reaction at 1000 K is 6.0 x 104 M-2 s-1, what is the reaction rate if [NO] = 0.050 M and (H2] 0.010 M?
d. What is the rate of this reaction at 1000 K if the concentration of H2 is doubled but the concentration of NO remains the same?
e. What is the rate of this reaction at 1000 K if the concentration of NO is doubled but the concelaration of H2 remains the same?
Transcribed Image Text:1. Consider the following chemical reaction which is first order with respect to H2 and second order with respect to NO: 2NO(g) + 2H2(g) - N2(g) + 2H20(g) a. What is the rate law for this reaction? b. What is the order of the reaction overall? cif the rate constant for this reaction at 1000 K is 6.0 x 104 M-2 s-1, what is the reaction rate if [NO] = 0.050 M and (H2] 0.010 M? d. What is the rate of this reaction at 1000 K if the concentration of H2 is doubled but the concentration of NO remains the same? e. What is the rate of this reaction at 1000 K if the concentration of NO is doubled but the concelaration of H2 remains the same?
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