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A gas-turbine power plant operates on a simple ideal Brayton cycle with air as the working fluid. The air enters the compressor at 95 kPa and 290K and the turbine at 760 kPa and 1100K. Heat is transferred to air at a rate of 35,000 kJ/s. Determine the power delivered by this plant. Assume constant specific heats at room temperature.
a small steel cylinder is used as a pressure vessel for a paint gun. the label says 24 grams co2 filled. assume the
a temperature sensor has a transfer function of 5 mvoc with an accuracy of plusmn 1.5 a find the possible range of the
air at 1.0 atmosphere pressure and 77 0c enters a 5.0 mm i.d. tube with a bulk average velocity of 2.5 ms. the velocity
finding the time interval for the motorcyclist to reach a given acceleration if the motorcyclist starts from rest
hot air is contained in a vertical frictionless piston-cylinder device.the piston has a mass of 4 kg and a
water flows at a rate of 20 ls through a horz pipe dia .03 m. the pressure drop across the valve in the pipe is
Steam at 100 psia, 500oF is throttled to 20 psia. Changes in kinetic energy are negligible for this process. Determine the final temperature and specific volume of the steam.
Determine an equation for the efficiency of the gear train in terms of the load (torque) on shaft 2 (all other factors remaining constant).
a sealed rigid container of volume .6 m3 contains water in the form of saturated vapor at 550 kpa. energy in the form
some kg of ari is at an inital pressuuer aand temp of 1.73mnm2 and 175c it is expanded iso thermal to three volme and
water enters an insulated nozzle operating under steady conditions at a pressure of 60 psia a temperature of 350 degf
the two blocks in the figureoscillate on a frictionless surface with a period of 1.7 s. the upper block just begins to
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