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A drainage structure for an industrial park has a trapezoidal cross-section similar to that shown in Fig. 14.2(c). The bottom width is 3.50 ft and the sides are inclined at an angle of 60° from the horizontal. Compute the hydraulic radius for this channel when the fluid depth is 1.50 ft.
consider an ideal vapor-compression refrigeration cycle. the refrigerator employs refrigerant 134a as the working fluid
air an ideal gas contained in a rigid insulated tank fitted with a paddle wheel initially at 27 degrees celcius 2 bar
argon gas initially at 1 bar 100 k undergoes a polytropic process with n k to a final pressure of 15.59 bar. the work
water at a temperature of 40 c and a pressure of 100 kpa enters a pump at the rate of 50000 kghr. the water leaves the
the need arises in a laboratory for 2000cm3 of an antifreeze consisting of a 30 mole-percent solution methanol in
a piston-cylinder device contains 6 kg of h2 and 21 kg of n2 at 160 k and 5 mpa. heat is now transferred to the device
you are working as a summer intern at a company and a fellow intern obviously an u of a engineering student accidently
a one dimensional wall of material kw10wmk is 50 mm thick with uniform heat generation qlsquolsquolsquo5106wm3. the
Analyze the structure in Figure by moment distribution. Draw the shear and moment diagrams. Sketch the deflected shape.
steel rods of 0.05m diameter are heat treated by being passed through a heat-treating furnace in which the atmosphere
Design the rectangular reinforced concrete beam for moment and shear. Use only tension steel for flexure. The loads shown are service loads.
Determine the coefficient of friction between the pin and the surface of the hole. normal to the tapered pin surface remains unchanged until the pin actually moves.
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