7 Calculate the inspiratory capacity, vital capacity, and total lung capacity for a patient with the following respirator volumes: I Inspiratory Reserve Volume = I Residual Volume = 3,000 ml I Tidal Volume = 450 ml 1,200 ml I Expiratory Reserve Volume = 1,100 ml Inspiratory Capacity Vital Capacity %3D Total Lung Capacity %3D 8 Carbon dioxide is transported through the blood primarily as a. dissolved gas. b. bicarbonate. c. carbonic anhydrase. d. carbaminohemoglobin. 9 Fill in the blanks: Hyperventilation the amount of carbon dioxide exhaled and therefore the blood pH. Hypoventilation the amount of carbon dioxide exhaled and therefore the blood pH. 10 The enzyme that converts carbon dioxide and water into carbonic acid is called a. bicarbonate dehydrogenase. b. adenosine deaminase. c. carbonic anhydrase. d. hemoglobin carboxylase. LLThe condition emphysema results in loss of elastic recoil of the lung tissue. Would this make inspiration or expiration difficult? Explain.
7 Calculate the inspiratory capacity, vital capacity, and total lung capacity for a patient with the following respirator volumes: I Inspiratory Reserve Volume = I Residual Volume = 3,000 ml I Tidal Volume = 450 ml 1,200 ml I Expiratory Reserve Volume = 1,100 ml Inspiratory Capacity Vital Capacity %3D Total Lung Capacity %3D 8 Carbon dioxide is transported through the blood primarily as a. dissolved gas. b. bicarbonate. c. carbonic anhydrase. d. carbaminohemoglobin. 9 Fill in the blanks: Hyperventilation the amount of carbon dioxide exhaled and therefore the blood pH. Hypoventilation the amount of carbon dioxide exhaled and therefore the blood pH. 10 The enzyme that converts carbon dioxide and water into carbonic acid is called a. bicarbonate dehydrogenase. b. adenosine deaminase. c. carbonic anhydrase. d. hemoglobin carboxylase. LLThe condition emphysema results in loss of elastic recoil of the lung tissue. Would this make inspiration or expiration difficult? Explain.
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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Transcribed Image Text:7 Calculate the inspiratory capacity, vital capacity, and total lung capacity for a patient with the following respiratory
volumes:
I Inspiratory Reserve Volume =
I Residual Volume =
3,000 ml
I Tidal Volume = 450 ml
1,200 ml
I Expiratory Reserve Volume = 1,100 ml
Inspiratory Capacity
Vital Capacity
%3D
Total Lung Capacity
%3D
8 Carbon dioxide is transported through the blood primarily as
a. dissolved gas.
b. bicarbonate.
c. carbonic anhydrase.
d. carbaminohemoglobin.
9 Fill in the blanks: Hyperventilation
the amount of carbon dioxide exhaled and therefore
the blood pH. Hypoventilation
the amount of carbon dioxide
exhaled and therefore
the blood pH.
10 The enzyme that converts carbon dioxide and water into carbonic acid is called
a. bicarbonate dehydrogenase.
b. adenosine deaminase.
c. carbonic anhydrase.
d. hemoglobin carboxylase.
II The condition emphysema results in loss of elastic recoil of the lung tissue. Would this make inspiration or
expiration difficult? Explain.
118 I BIO 142 - Human Anatomy and PhysioloqY "
Northern Vireinia Conmmunity College
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