4. The human heart pumps the average adult's 6.0 liters (6000 cm3) of blood through the body every minute. The heart must do work to overcome frictional forces that resist blood flow. The average blood pressure is 1.3x104 N/m² a) How much work does the heart do to move the 6.0 liters of blood completely through the body? b) What power output must the have to do this task once a minute? Hint: When the heart contracts, it applies a force to the blood. Pressure is force/area. Model the circulatory system as a single closed tube, with crosssectional area A and volume V=6.0 liters, filled with blood to which the heart applies

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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4. The human heart pumps the average adult's 6.0 liters (6000 cm3) of blood
through the body every minute. The heart must do work to overcome frictional
forces that resist blood flow. The average blood pressure is 1.3x104 N/m²
a) How much work does the heart do to move the 6.0 liters of blood completely
through the body?
b) What power output must the have to do this task once a minute?
Hint: When the heart contracts, it applies a force to the blood. Pressure is
force/area. Model the circulatory system as a single closed tube, with crosssectional
area A and volume V=6.0 liters, filled with blood to which the heart applies
a force.
Transcribed Image Text:4. The human heart pumps the average adult's 6.0 liters (6000 cm3) of blood through the body every minute. The heart must do work to overcome frictional forces that resist blood flow. The average blood pressure is 1.3x104 N/m² a) How much work does the heart do to move the 6.0 liters of blood completely through the body? b) What power output must the have to do this task once a minute? Hint: When the heart contracts, it applies a force to the blood. Pressure is force/area. Model the circulatory system as a single closed tube, with crosssectional area A and volume V=6.0 liters, filled with blood to which the heart applies a force.
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