2.. Indicate how each of the following changes affects the amount of each gas in the system below, for which. AHreaction = +9.9 kcal. H2(g) + CO2(g) = H2O(g) + CO(g) RHS/ LHS/No Explain your answer shift A. addition of CO2 В. addition of H2O С. addition of a catalyst D. increase in temperature E. decrease in the volume of the container
2.. Indicate how each of the following changes affects the amount of each gas in the system below, for which. AHreaction = +9.9 kcal. H2(g) + CO2(g) = H2O(g) + CO(g) RHS/ LHS/No Explain your answer shift A. addition of CO2 В. addition of H2O С. addition of a catalyst D. increase in temperature E. decrease in the volume of the container
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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
Transcribed Image Text:2.. Indicate how each of the following changes affects the amount of each gas in the system
below, for which.
AHreaction = +9.9 kcal.
H2(g) + CO2(g) =
H20(g) + CO(g)
RHS/
LHS/No
Explain your answer
shift
А.
addition of CO2
В.
addition of H2O
С.
addition of a catalyst
D.
increase in temperature
Е.
decrease in the volume of the container
Expert Solution
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Step 1
Le Chatelier's principle:
This principle is used to predict the effect of a change in conditions on chemical equilibrium. This principle states that when any system at equilibrium for a long period of time is subjected to a change in concentration, temperature, volume, or pressure the system changes to a new equilibrium, and this change partly counteracts the applied change.
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