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Flow of water takes place in a rectangular channel with b = 4 m, n = 0.012, L = 500 m, S0 = 0.00087. The discharge is 33 m3 /s. At the entrance to the channel, the depth is 0.68 m, and at the downstream end a free-outfall condition exists. Perform a profile synthesis to determine the nature of the water surface and energy grade line.
A five-cylinder, 3.5-liter SI engine operates on a four-stroke cycle at 2500 RPM. At this condition, the mechanical efficiency of the engine is 62% and 1000 J of indicated work are produced each cycle in each cylinder.
What is going on here? Is it likely that the customer could see so many bad assemblies, given what the manufacturer observed in its process? Perform appropriate calculations, and write up your results in a short report. Make whatever assumptions y..
Consider a large plane wall of thickness L = 0.3 m, thermal conductivity k = 2.5 W/m-K, and surface area A = 12.0 m2. The left side of the wall at x = 0 is subjected to a net heat flux q” = 700 W/m2 while the temperature at the surface is measured to..
determine the maximum pressure across a 10 hp pump that has an inlet diameter of 1.0 inches and velocity of 10 fps. the
a string is attached to the drum radius r of a spool radius r as shown in side and end views here. a spool is device
assignment overview carbon fibre reinforced polymers cfrp have been used extensively in aerospace applications due to
The final report will include schematics, circuit diagrams, a parts list, and a suggested retail cost based on comprehensive costing.
an automobile of weight w that has a wheel base of lenght l during fourwheel braking. the center of gravity is a
A product whose total work content time = 50 min is to be assembled on a manual production line. The required production rate is 30 units/hr.
a container is supported by three cables that are attached to a ceiling as shown. determine the weight w of the
Compute the energy loss for gradual enlargements with cone angles from 2° to 60° in the increments shown in Fig. 10.5. For each case, water at 60°F is flowing at 85 gal/ min in a 2-in Schedule 40 steel pipe that enlarges to a 6-in Schedule 40 pipe..
Water at 15°C flows steadily through the contraction shown in Fig. P3.69 such that V2 = 4V1. If the gage reading is maintained at 120 kPa, determine the maximum velocity V1 possible before cavitation occurs.
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