Butenes, such as 1-butene undergo isomerization in the presence of a catalyst to form isobutene according to the equation: Part A Which of the following statements below is true? O Q= 1.43, therefore, the reaction will shift to make more 1-butene to reach equilibrium. 1-butene isobutene O Q= 1.43, therefore the reaction will shift to make more isobutene to reach equilibrium. The equilibria were studied in the gas phase at high temperatures (Petroleum Chemistry. 2001. 41, 144-148). The equilibrium constant for the isomerization of 1-butene to isobutene at 599 °C is K= 0.80. O Q= 0.702, therefore, the reaction will shift to make more isobutene to reach equilibrium. O Q = 0.801, therefore the reaction is at equilibrium and will not prooeed in either direction. A mixture of 1-butene (P= 1.80 bar) and isobutene (P= 2.28 bar) were placed in a vessel at 599 °C and were allowed to come to equilibrium. Q= 0.702, therefore, the reaction will shift to make more 1-butene to reach equilibrium
Butenes, such as 1-butene undergo isomerization in the presence of a catalyst to form isobutene according to the equation: Part A Which of the following statements below is true? O Q= 1.43, therefore, the reaction will shift to make more 1-butene to reach equilibrium. 1-butene isobutene O Q= 1.43, therefore the reaction will shift to make more isobutene to reach equilibrium. The equilibria were studied in the gas phase at high temperatures (Petroleum Chemistry. 2001. 41, 144-148). The equilibrium constant for the isomerization of 1-butene to isobutene at 599 °C is K= 0.80. O Q= 0.702, therefore, the reaction will shift to make more isobutene to reach equilibrium. O Q = 0.801, therefore the reaction is at equilibrium and will not prooeed in either direction. A mixture of 1-butene (P= 1.80 bar) and isobutene (P= 2.28 bar) were placed in a vessel at 599 °C and were allowed to come to equilibrium. Q= 0.702, therefore, the reaction will shift to make more 1-butene to reach equilibrium
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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
Transcribed Image Text:Butenes, such as 1-butene undergo isomerization in the presence of a catalyst to form
isobutene according to the equation:
Part A
Which of the following statements below is true?
O Q = 1.43, therefore, the reaction will shift to make more 1-butene to reach equilibrium.
1-butene
isobutene
O Q= 1.43, therefore the reaction will shift to make more isobutene to reach equilibrium.
The equilibria were studied in the gas phase at high temperatures (Petroleum Chemistry. 2001.
41, 144-148). The equilibrium constant for the isomerization of 1-butene to isobutene at 599 °C is
K= 0.80.
O Q = 0.702, therefore, the reaction will shift to make more isobutene to reach equilibrium.
O Q= 0.801, therefore the reaction is at equilibrium and will not prooeed in either direction.
A mixture of 1-butene (P= 1.80 bar) and isobutene (P= 2.28 bar) were placed in a vessel at 599
°C and were allowed to come to equilibrium.
O Q= 0.702, therefore, the reaction will shift to make more 1-butene to reach equilibrium
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