d. Predict the direction of shift if a strong acid is added to the equilibrium reaction mixture. (Hint: recall strong acids function as a source of H,O'.) e. Predict the direction of shift if a catalyst is added to the equilibrium reaction mixture. f. Predict the direction of shift if H,O is removed from the equilibrium reaction mixture. (This is a bit hard to imagine in a backyard pool, but evaporation of the water under a hot sun would cause this effect at the surface of the pool.)
d. Predict the direction of shift if a strong acid is added to the equilibrium reaction mixture. (Hint: recall strong acids function as a source of H,O'.) e. Predict the direction of shift if a catalyst is added to the equilibrium reaction mixture. f. Predict the direction of shift if H,O is removed from the equilibrium reaction mixture. (This is a bit hard to imagine in a backyard pool, but evaporation of the water under a hot sun would cause this effect at the surface of the pool.)
Living By Chemistry: First Edition Textbook
1st Edition
ISBN:9781559539418
Author:Angelica Stacy
Publisher:Angelica Stacy
ChapterU6: Showtime: Reversible Reactions And Chemical Equilibrium
Section: Chapter Questions
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Need the answers to d-g
![d. Predict the direction of shift if a strong acid is added to the
equilibrium reaction mixture. (Hint: recall strong acids
function as a source of H,O'.)
e. Predict the direction of shift if a catalyst is added to the
equilibrium reaction mixture.
f. Predict the direction of shift if H,O is removed from the
equilibrium reaction mixture. (This is a bit hard to imagine
in a backyard pool, but evaporation of the water under a hot
sun would cause this effect at the surface of the pool.)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5c4e58c0-9419-4846-b6d5-2843743a6878%2Ff659351a-e799-4142-825c-44c196d03b88%2Flqv2kx9.jpeg&w=3840&q=75)
Transcribed Image Text:d. Predict the direction of shift if a strong acid is added to the
equilibrium reaction mixture. (Hint: recall strong acids
function as a source of H,O'.)
e. Predict the direction of shift if a catalyst is added to the
equilibrium reaction mixture.
f. Predict the direction of shift if H,O is removed from the
equilibrium reaction mixture. (This is a bit hard to imagine
in a backyard pool, but evaporation of the water under a hot
sun would cause this effect at the surface of the pool.)
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