Le Chatelier's Principle and Equilibrium Shifts 1. If the reaction below is initially at equilibrium, and then each of the following changes are made, predict which direction the reaction rate will be fastest until equilibrium is once again established: forward, reverse, or no change. Reactant 2 CO + O2g) = 2COzg) a. The concentration of O₂ is increased. -forward, reactant b. The concentration of CO₂ is decreased? forward, reactant c. The concentration of oxygen gas is decreased. reverse, product Product
Le Chatelier's Principle and Equilibrium Shifts 1. If the reaction below is initially at equilibrium, and then each of the following changes are made, predict which direction the reaction rate will be fastest until equilibrium is once again established: forward, reverse, or no change. Reactant 2 CO + O2g) = 2COzg) a. The concentration of O₂ is increased. -forward, reactant b. The concentration of CO₂ is decreased? forward, reactant c. The concentration of oxygen gas is decreased. reverse, product Product
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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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Can you help me with number 1 part A, number 1 part B, and number 1 part C?
![Le Chatelier's Principle and Equilibrium Shifts
1. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
2COg+O2g) # 2 CO2(g)
a. The concentration of O₂ is increased. -forward, reactant
b. The concentration of CO₂ is decreased? forwardl, eactant
c. The concentration of oxygen gas is decreased. reverse, product
Product
2. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
C(s) + H₂O(g)
a. adding H₂0) forward.
b. removing H₂ forward
decrea. adding PC13 reverse
increasc b. removing Ch₂ forward
increast c. removing PC13 forward
decreased. adding Cl₂ reverse
Product
CO(g) + H2(g)
3. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
Product
PC15)
PC13(g) + Cl2(g)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe9d21aa1-e00c-47f7-bbf3-3b2703c44204%2F840c398e-6839-45da-9c80-d31533a7380f%2Fbesoidp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Le Chatelier's Principle and Equilibrium Shifts
1. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
2COg+O2g) # 2 CO2(g)
a. The concentration of O₂ is increased. -forward, reactant
b. The concentration of CO₂ is decreased? forwardl, eactant
c. The concentration of oxygen gas is decreased. reverse, product
Product
2. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
C(s) + H₂O(g)
a. adding H₂0) forward.
b. removing H₂ forward
decrea. adding PC13 reverse
increasc b. removing Ch₂ forward
increast c. removing PC13 forward
decreased. adding Cl₂ reverse
Product
CO(g) + H2(g)
3. If the reaction below is initially at equilibrium, and then each of the following changes are
made, predict which direction the reaction rate will be fastest until equilibrium is once again
established: forward, reverse, or no change.
Reactant
Product
PC15)
PC13(g) + Cl2(g)
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