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Applied Thermodynamics 5th ed. by Eastop and Mcconkey Problem 3.1: 1 kg of air enclosed in a rigid container is initially at 4.8 bar and 150 degree C. the container is heated until temperature is 200 degree C. calculate the pressure of the air finally and the heat supplied during the process?
the motion of a linkage in a mechanical system is examined by engineers. it has been determined that the velocity of an
Propane gas enters a continuous adiabatic heat exchanger' at 40°C and 250 kPa and exits at 240°C superheated steam at 300°C and 5.0 bar enters the exchanger flowing counter currently to the propane and exits as a saturated liquid at the same press..
saturated water vapor at 400 f is heated at constant pressure until its volume is doubled. determine the final
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water is contained in a vertical cylinder fitted with a frictionless piston and two sets of stops. the volume is 0.1m3
B) Determine the minimum amount of work [kJ ] required to reach this end state. C) If more than the minimum work is actually used, where does this extra energy go? That is what becomes of the extra energy?
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A) Calculate the velocity in the tunnel test section. B) Compute the total pressure at the test section.
question 1 what four processes make up the ideal rankine cycle? what is happening in an actual power plant during the
a rigid tank initially contains 3 kg of air at 500 kpa 290k. the tank is connected by a valve to a piston-cylinder
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