Q7. a) Consider the below-given reaction: X+2Y- Z Information: [X]: molarity of component X. i. the reaction rate remains constant when we doubled the [X] whereas the [Y] is kept constant. ii. the reaction rate is doubled when the [Y] is doubled and the [X] held constant. Define the orders of X and Y components for this reaction and explain with details. b) Determine the equilibrium concentration of X after that 1.0 mol of Y, 2.0 mol of Z, and 0.50 mol of W are introduced into a 1.0 L of reaction flask and waited to reach to equilibrium. The equation: 2 Y+Z W+2X K=1.5 x 10-3

Chemistry: An Atoms First Approach
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ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
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Chapter12: Chemical Equilibrium
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Q7. a) Consider the below-given reaction:
X+2Y Z
Information: X]: molarity of component X.
i. the reaction rate remains constant when we doubled the [X] whereas the [Y] is kept constant.
ii. the reaction rate is doubled when the [Y] is doubled and the [X] held constant.
Define the orders of X and Y components for this reaction and explain with details.
b) Determine the equilibrium concentration of X after that 1.0 mol of Y, 2.0 mol of Z , and 0.50 mol
of W are introduced into a 1.0 L of reaction flask and waited to reach to equilibrium.
The equation:
2 Y+Z W+2 X
K=1.5 x 10-
Transcribed Image Text:Q7. a) Consider the below-given reaction: X+2Y Z Information: X]: molarity of component X. i. the reaction rate remains constant when we doubled the [X] whereas the [Y] is kept constant. ii. the reaction rate is doubled when the [Y] is doubled and the [X] held constant. Define the orders of X and Y components for this reaction and explain with details. b) Determine the equilibrium concentration of X after that 1.0 mol of Y, 2.0 mol of Z , and 0.50 mol of W are introduced into a 1.0 L of reaction flask and waited to reach to equilibrium. The equation: 2 Y+Z W+2 X K=1.5 x 10-
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