17. When a person hyperventilates, they breathe very quickly, exhaling CO2 more quickly than it can be produced. This reduces the concentration of CO2 in the blood. According to the chemical equation below and LeChatelier's principle, how is the bicarbonate equilibrium affected by the reduction of CO2 in the blood? СО2 + Н.С НАСОЗ НаО НСОЗ + Нз+ a. The equilibrium is unchanged. b. More H3O+ is produced. c. The equilibrium is shifted to the right. d. The H3O+ concentration decreases. e. More HCO3¯ is produced.

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HW9 #17

17. When a person hyperventilates, they breathe very quickly, exhaling CO2 more
quickly than it can be produced. This reduces the concentration of CO2 in the
blood. According to the chemical equation below and LeChatelier's principle, how
is the bicarbonate equilibrium affected by the reduction of CO2 in the blood?
СО2 + Н.С
НАСОЗ
НаО
НСОЗ + Нз+
a. The equilibrium is unchanged.
b. More H3O+ is produced.
c. The equilibrium is shifted to the right.
d. The H3O+ concentration decreases.
e. More HCO3¯ is produced.
Transcribed Image Text:17. When a person hyperventilates, they breathe very quickly, exhaling CO2 more quickly than it can be produced. This reduces the concentration of CO2 in the blood. According to the chemical equation below and LeChatelier's principle, how is the bicarbonate equilibrium affected by the reduction of CO2 in the blood? СО2 + Н.С НАСОЗ НаО НСОЗ + Нз+ a. The equilibrium is unchanged. b. More H3O+ is produced. c. The equilibrium is shifted to the right. d. The H3O+ concentration decreases. e. More HCO3¯ is produced.
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