Dinitrogen tetroxide decomposes to form nitrogen dioxide according to the following reaction:  at  A reaction vessel contains 0.45  of  and 2.0 . Which statement is true of the reaction system? a. The reaction system proceeds to the right (forming more product). b. The reaction system is at equilibrium. c. The reaction system proceeds to the left (forming more reactant). d. It is impossible to determine the future progress of the reaction based on the information given.

Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Dinitrogen tetroxide decomposes to form nitrogen dioxide according to the following reaction:

N2O4(g)⇌2NO2(g), Kp=6.7N2O4(g)⇌2NO2(g), Kp=6.7 at 298K298K

A reaction vessel contains 0.45 atmatm of N2O4N2O4 and 2.0 atm NO2atm NO2. Which statement is true of the reaction system?

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Dinitrogen tetroxide decomposes to form nitrogen dioxide according to the following reaction:

 at 

A reaction vessel contains 0.45  of  and 2.0 . Which statement is true of the reaction system?

a. The reaction system proceeds to the right (forming more product).
b. The reaction system is at equilibrium.
c. The reaction system proceeds to the left (forming more reactant).

d. It is impossible to determine the future progress of the reaction based on the information given.

 

Consider the reaction between bromine and chlorine gases to form bromochloride:

Br2(g)+Cl2(g)⇌2BrCl(g), Kc=1.11×10−4Br2(g)+Cl2(g)⇌2BrCl(g), Kc=1.11×10−4 at 150K150K

A reaction vessel contains 0.20M Br20.20M Br2, 0.35M0.35M Cl2Cl2, and 3.0×10−3M BrCl3.0×10−3M BrCl. Calculate the reaction quotient, QQ, and determine in which direction the reaction proceeds to reach equilibrium.

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Consider the reaction between bromine and chlorine gases to form bromochloride:

 at 

A reaction vessel contains ,  , and . Calculate the reaction quotient, , and determine in which direction the reaction proceeds to reach equilibrium.

a. 4.3×10–24.3×10–2, the reaction system proceeds to the left
b. 1.1×10–41.1×10–4, the reaction system is at equilibrium
c. 1.3×10−41.3×10−4, the reaction system proceeds to the left
d. 1.3×10–41.3×10–4, the reaction system proceeds to the right

 

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