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Water enters a 20ft long cylindrical pipe at a mass flow rate of 20 slugs/sec. The inside pipe diameter is 8cm. The other end of the pipe is closed. The side wall of the pipe is porous such that water escapes radially through the side walls. If one assumes the lateral velocity varies linearly with x, measure from the inlet, determine the lateral velocity at 10ft from the inlet.
a standard door into a house rotates about a vertical axis through one side as defined by the doors hinges. a uniform
water is pump from a lake to a storage tank at 18m above at a rate of 70 ls while consuming 20.4 kw of electric power.
a crate sliding down a ramp reaches the bottom of the ramp and slides across a flat floor. at an instant after reaching
a cylindrical bar of steel e 209 gpa or 30 times106 psi v 0.30 9.6 mm 0.3780 in. in diameter is to be deformed
a subway train with cars a b and c is traveling at 66fts when the brakes are applied on cars a and b causing them to
a three-blade helicopter blade rotates at 200 rpm. if each blade is 12 ft long and 1.5 ft wide estimate the torque
a rigid chamber contains 100 kg of water at 500 kpa 100 c. a paddle wheel stirs the water at 1000 rpm with a torque of
consider fully developed laminar flow between parallel plate. the heat flux through the walls of the chanel is uniform.
In the an ideal turbo jet, the engine is designed such that the turbine work is divided equally between the compressor and the propeller. The gas from the turbine discharges to a nozzle for additional thrust.
calculate the critical heat flux on a large horizontal surface for the following fluids at 1 atm mercury ethanol and
Calculate the ultimate tensile strength (engineering) of a material whose strength coefficient is 700 MPa and a tensile test specimen which necks at an engineering tensile strain of 0.35.
review the logic used to develop brake systems of the motor vehicle historically. make critical analysis of each phase
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