Explain the kinetic and potential energy effects
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Integrate the resulting equations to obtain a velocity prole for the fluid in the annular region, uz(r). Do not try to determine the constants of integration.
Develop an expression for the water hieight, y, inside the container in terms of the container height, H, and depthe of submersion, h.
Air enters the duct of an air-conditioning system at 15 psia and 50F at a volume flow rate of 450 ft^3/min. The diameter of the duct is 10 inches and heat is transferred to the air in the duct from the surroundings at a rate of 2 Btu/s.
A particle of mass m starting with an initial velocity v0 is acted on by a force F = m(kv + cv2), where k and c are constants. Calculate the displacement as a function of time.
A system consisting of 3 lb of water vapor in a piston-cylinder assembly initially at 350 degrees F and a volume of 71.7 degrees F, is expanded in a constant-pressure process to a volume of 85.38 ft3.
Assume the surface distribution of charge on each sphere is uniform. Determine the tension in the wire.
Heat transfer to a 1.5kg block of ice at -10 degrees Celsius melts it to a liquid at 10 degrees Celsius in a kitchen. How much work does the water give out?
Air trapped in the container is compressed isothermally as the hydrostatic pressure increases. Develop an expression for the water hieight, y, inside the container in terms of the container height, H, and depth of
An ice skating rink is located in a building where the air is Tair = 20C and the walls are at Tw = 25C. The convection heat transfer coefficient between the ice and the surrounding air is h = 10 W/m^2K.
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