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There are two reservoirs- one containing blood, another containing plasma. Reservoir 1, containing blood, is at a higher level than Reservoir 2 containing plasma. They are connected with a clamped tube at the bottom of the reservoirs. The initial temperatures of the two fluids are different. Neglect the difference in density between blood and plasma and assume the pressure at the bottom of each reservoir is equal to the hydrostatic pressure rho*gh. Show that after the clamp is released the flow rate decreases exponentially with time. How to set up the problem to prove that the flow rate decreases exponentially with time?
what is value of convective heat transfer coefficient for pebble glass in air medium?
5m3 of air at 2bar 270c is compressed up to 6bar pressure following pv1.3 constant. it is subsequently expanded
consider fully developed constant-property laminar flow between parallel planes with constant heat rate per unit of
If the maximum shear stress is limited to one-half of its yield strength and the fillet radius is 0.3 in, what is the maximum torque that can be applied? What power could be transmitted by a similar shaft rotating at 400 rpm?
a gearbox is needed for an input shaft that rotates at 1000-1600 rpm and an output shaft that rotates at 75 plusmn1 and
the brakes of a car are applied causing it to slow down at a rate of 10 fts2. knowing that the car stops in 300 ft
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A cylindrical steel pressure vessel with mean diameter 1.5 m
in the movie eraser the bad guys had a gun that would shoot a 5 g aluminum slug at one quarter the speed of light. lets
scenarioprepare a power point presentation and a short report relating to the capabilities of solidworks motion
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