b) In a hemodialysis machine, blood (p-994 kg/m', u= 3.5 x 10 kg/m.s) is drawn out from a person's body and circulated through a series of filtration apparatuses before pumping back into the person's body. The blood is circulated at a rate of 400 mL/min through 3-m length of tubing in laminar flow. Calculate the required pumping power of the machine.
b) In a hemodialysis machine, blood (p-994 kg/m', u= 3.5 x 10 kg/m.s) is drawn out from a person's body and circulated through a series of filtration apparatuses before pumping back into the person's body. The blood is circulated at a rate of 400 mL/min through 3-m length of tubing in laminar flow. Calculate the required pumping power of the machine.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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can you assume any diameter of the tubing for top of you head. thanks
![b) In a hemodialysis machine, blood (p = 994 kg/m², u = 3.5 x 10 kg/m.s) is drawn out
from a person's body and circulated through a series of filtration apparatuses before
pumping back into the person's body. The blood is circulated at a rate of 400 mL/min
through 3-m length of tubing in laminar flow. Calculate the required pumping power
of the machine.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fac07f6f1-1927-487a-abc7-2c867c9d6e14%2F8a3ece80-f6e5-4b80-ba3a-09d8b17a3d96%2F1a7bu8r_processed.jpeg&w=3840&q=75)
Transcribed Image Text:b) In a hemodialysis machine, blood (p = 994 kg/m², u = 3.5 x 10 kg/m.s) is drawn out
from a person's body and circulated through a series of filtration apparatuses before
pumping back into the person's body. The blood is circulated at a rate of 400 mL/min
through 3-m length of tubing in laminar flow. Calculate the required pumping power
of the machine.
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