Given: Assume that in a particular capillary the pressure at the arteriolar end is 35 mmHg and it decreases linearly with distance to 15 mmHg at the venule end. Assume the capillary is 500 mm long. Assume further that the hydrostatic pressure in the ISF is 2 mm Hg and is constant. The oncotic (osmotic) pressure inside the capillary is 25 mm Hg and is constant. The oncotic pressure of the ISF is 3 mmHg. a. Is there a filtration or reabsorption of fluid at the venule end? b. What is the net driving force? (answer a and b)
Given: Assume that in a particular capillary the pressure at the arteriolar end is 35 mmHg and it decreases linearly with distance to 15 mmHg at the venule end. Assume the capillary is 500 mm long. Assume further that the hydrostatic pressure in the ISF is 2 mm Hg and is constant. The oncotic (osmotic) pressure inside the capillary is 25 mm Hg and is constant. The oncotic pressure of the ISF is 3 mmHg. a. Is there a filtration or reabsorption of fluid at the venule end? b. What is the net driving force? (answer a and b)
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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Given: Assume that in a particular capillary the pressure at the arteriolar end is 35 mmHg and it decreases linearly with distance to 15 mmHg at the venule end. Assume the capillary is 500 mm long. Assume further that the hydrostatic pressure in the ISF is 2 mm Hg and is constant. The oncotic (osmotic) pressure inside the capillary is 25 mm Hg and is constant. The oncotic pressure of the ISF is 3 mmHg.
a. Is there a filtration or reabsorption of fluid at the venule end?
b. What is the net driving force?
(answer a and b)
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