Calculate the pressure drop (in mmHg) across the following arterial systems using Poiseuille’s Law with ηblood = 4 X10−3 Pa-s, for a total flow of 80 cm3/s across each system; (1 Pa=0.0075 mmHg). a. aorta (internal radius r = 1.30 cm, length L = 11 cm, all of the flow in this one aorta) b. large arteries (r = 0.3 cm, L = 80 cm, n = 200 of them, each with equal flow and the same dimensions) c. arterioles (r = 35 μm, L = 0.8 cm, n = 5 X 10^5)
Calculate the pressure drop (in mmHg) across the following arterial systems using Poiseuille’s Law with ηblood = 4 X10−3 Pa-s, for a total flow of 80 cm3/s across each system; (1 Pa=0.0075 mmHg). a. aorta (internal radius r = 1.30 cm, length L = 11 cm, all of the flow in this one aorta) b. large arteries (r = 0.3 cm, L = 80 cm, n = 200 of them, each with equal flow and the same dimensions) c. arterioles (r = 35 μm, L = 0.8 cm, n = 5 X 10^5)
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Calculate the pressure drop (in mmHg) across the following arterial systems using Poiseuille’s Law with
ηblood = 4 X10−3 Pa-s, for a total flow of 80 cm3/s across each system; (1 Pa=0.0075 mmHg).
a. aorta (internal radius r = 1.30 cm, length L = 11 cm, all of the flow in this one aorta)
b. large arteries (r = 0.3 cm, L = 80 cm, n = 200 of them, each with equal flow and the same dimensions)
c. arterioles (r = 35 μm, L = 0.8 cm, n = 5 X 10^5)
d. capillaries (r = 3.8 μm, L = 3 mm, n = 10^10)
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