2. Use the figure to answer the problem. Calculate the difference in pressures (in atmospheres) that the blood vessels in a giraffe's head have to accommodate as the head is lowered from a full upright position to ground level for a drink. Assume a blood density of pblood = (1060 ). a. 4 m What must be the pressure in the aorta in a giraffe be for its brain to receive blood if the mean arterial pressure at its brain should be 110 mm Hg? Answer must be in units of mm Hg. b. - 3m 2 m 1m -

College Physics
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Chapter12: Fluid Dynamics And Its Biological And Medical Applications
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Problem 44PE: When physicians diagnose arterial blockages, they quote the reduction in flow rate. If the flow rate...
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Fluids

2.
Use the figure to answer the problem.
Calculate the difference in pressures (in
atmospheres) that the blood vessels in a giraffe's
head have to accommodate as the head is lowered
from a full upright position to ground level for a
a.
- 4 m
drink. Assume a blood density of Pblood = (1060 ).
What must be the pressure in the aorta in a
giraffe be for its brain to receive blood if the mean
arterial pressure at its brain should be 110 mm Hg?
Answer must be in units of mm Hg.
b.
- 3 m
2 m
1 m
Transcribed Image Text:2. Use the figure to answer the problem. Calculate the difference in pressures (in atmospheres) that the blood vessels in a giraffe's head have to accommodate as the head is lowered from a full upright position to ground level for a a. - 4 m drink. Assume a blood density of Pblood = (1060 ). What must be the pressure in the aorta in a giraffe be for its brain to receive blood if the mean arterial pressure at its brain should be 110 mm Hg? Answer must be in units of mm Hg. b. - 3 m 2 m 1 m
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