B 45 ft 18 ft 36 ft 54 ft Z 30° 28.8 ft
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- One acre equals 43,560 ft2. One gallon equals 231 in.3.Determine the number of liters of water in 2500 acre · ft ofwater.30 MENG201 Mechanical workshop practicea) A locomotive is travelling at 35 m/s up an incline of 0.006 radians when the engine cuts out. How far will the locomotive travel up the incline before coming to rest? Assume there are no frictional losses, no energy input from the engine, and take acceleration due to gravity to be 9.81 m/s². Give your answer in km. Round your answer to 4 significant figures. b) What is the speed (in m/s) of the locomotive after it has travelled a distance 5.83 km? Round your answer to 3 significant figures.
- Show your complete solution for each problem. Only the final answer in your calculation should be rounded off to two decimal digits. Box your final answer. 1. The increase in the specific internal energy is 33.8 BTU/Ibm in a reciprocating compressor draws 40 lbm/min of air whose density is 0.074 lbm/ft³ and discharge it with a density of 0.311 lbm/ft³. At the suction, the pressure is 18 lb:/in² and discharge 88 lb:/in². If the changed in kinetic energy was neglected, determine the work on the air in horsepower (hp).a) A wind turbine generates power by transferring the kinetic energy of the wind to rotational energy used to spin a generator, generating electrical power. Wind travelling at 7 m/s contacts the turbine blades and is slowed to 1.75 m/s. The wind turbine has a blade diameter of 41 m, and the air has a density of 1007 kg/m³. What is the power generated in MW if the efficiency is 58%? Round your answer to 3 significant figures. b) What is the torque acting on the shaft if the blades are rotating at 9.3 rpm? Give your answer in kNm. Round your answer to 4 significant figures.M Whwel = 50 kg (k.) wheel =0.15 m 2) The 50-kg wheel is connected to a 10-kg block as shown. The block is moving downward with a speed of 2.4 m/S, and suddenly, friction between the wheel and 0.5 m ground was applied, and caused the block to decelerate at 10.0 m/ S. A) Draw the FBD and KD for the wheel alone, H= 0.5 and show all external and effective forces on these diagrams. B) Calculate the angular acceleration of the wheel. Mg = 10 kg +0.2 m C) Assuming the wheel has angular acceleration of 25 rad/ S find the acceleration vector of the center of mass of the wheel. (Vail = 2.4 m/S