Life science: Poiseuille’s Law. The flow of blood in a blood vessel is faster toward the center of the vessel and slower toward the outside. The speed of the blood is given by V = p 4 L v ( R 2 − r 2 ) , where R is the radius of the blood vessel, r is the distance of the blood from the center of the vessel, and p , v , and L are physical constants related to the pressure and viscosity of the blood and the length of the blood vessel. If R is constant, we can regard V as a function of r : V ( r ) = p 4 L v ( R 2 − r 2 ) . Q = π p R 4 8 L v The total blood flow, Q, is given by Q = ∫ 0 R 2 π ⋅ V ( r ) ⋅ d r . Find Q.
Life science: Poiseuille’s Law. The flow of blood in a blood vessel is faster toward the center of the vessel and slower toward the outside. The speed of the blood is given by V = p 4 L v ( R 2 − r 2 ) , where R is the radius of the blood vessel, r is the distance of the blood from the center of the vessel, and p , v , and L are physical constants related to the pressure and viscosity of the blood and the length of the blood vessel. If R is constant, we can regard V as a function of r : V ( r ) = p 4 L v ( R 2 − r 2 ) . Q = π p R 4 8 L v The total blood flow, Q, is given by Q = ∫ 0 R 2 π ⋅ V ( r ) ⋅ d r . Find Q.
Life science: Poiseuille’s Law. The flow of blood in a blood vessel is faster toward the center of the vessel and slower toward the outside. The speed of the blood is given by
V
=
p
4
L
v
(
R
2
−
r
2
)
, where R is the radius of the blood vessel, r is the distance of the blood from the center of the vessel, and p, v, and L are physical constants related to the pressure and viscosity of the blood and the length of the blood vessel. If R is constant, we can regard V as a function of r:
Hi, can you guys help me with this? Thank you!
Can you guys help me calculate again the Term GPA, Combined GPA, Cumulative GPA, Transfer GPA & Combined Cumulative GPA section? It's just not right right now.
Here's the transfer totals point that I want to provide just in case you guys may ask where I get these from:
Use undetermined coefficients to find the particular solution to
y"-3y+2y=4e3
Y(t) =
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