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I need to be able to derive the velocity profile from the navier-stocks equations. Basically from scratch. Problem 4.36 in the fluid mechanics seventh edition Frank M. White In need to get derived down to the Differential form and find the constant or constants in terms of h. They exact question is :A thin film of constant thickness, h, flows down a angled plate due to the influence of gravity. Using viscosity and density find the velocity profile u(y).
ten kilograms of water in a pistoncylinder arrangement exists at saturated liquid and vapor at 100 kpa with a quality
Assume a diffusion coefficient of 1 × 10-8 m2/s, that the concentrations at the high- and low-pressure sides of the plate are 2.4 and 0.6 kg of hydrogen per cubic meter of palladium, and that steady-state conditions have been attained.
water in a piston-cylinder assembly undergoes two processes in series from an initial state where the pressure is 1.0
Determine the outlet temperature of the hot fluid.
five kilograms of saturated vapor water at 1 mpa is contained in a cylinder fitted with a movable piston. this system
heat treatment is common in processing semiconductor materials. a 200- mm-diameter silicon wafer with thickness of 725
What strategies could be used to counteract the increased Nitric oxides emissions with ethanol blended petrol?
Plot the total mass in the tank, in kg, and the amount of heat transfer, in kJ, versus the final quality x ranging from 0.2 to 1.0
Write a literature review and the title is "the effect of fluid cooling on the performance of building integrated photovoltaic thermal systems. Using some BIPVT prototypes measure their thermal and electrical output and dtermine their effectiveness"
The acceleration of the car is defined by a=(2t^2+t)m/s^2. Find the position of the car at t = 3 seconds. The car starts from rest.
a thick cylindrical sleeve when shrunk onto a hollow shaft of a different material had its internal diameter extended
the diffusion constant do and activation energy q of c in bcc fe is 0.01 cm2sec and 80kjmol respectively. in fcc fe the
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