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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, and the mixture expands at constant pressure until the temperature rises to 200 K. Determine the heat transfer during this process by treating the mixture (a) as an ideal gas and (b) as a nonideal gas and using Amagat's law.
The heat transfer convection coefficient between the wall and the fluid is 500 W/m2.K. Find the maximum temperature in wall.
Use the bisection method to determine the drag coefficient (cd) needed so that a 80 kg bunjee jumper has a velocity of 36 m/s after 4 s of free fall.
two hollow metal cylinders are to be press-fitted together. the outer steel member has outer and inner diameters of
a 10-l radiator filled with superheated water vapor at 200 kpa and 300 degc with both inlet and exit valves closed. the
a cylindrical nuclear fuel rod of 1 cm in diameter is encased in a concentric tube of 2 cm in diameter where cooling
a 3 kg piece of steel is removed from an oven at 700c and placed a water bath.the final temperature of the water is 80c
consider a 300 mm x 300 mm window in an aircraft. for a temperature difference of 80 c from the inner to the outer
if the volume of a bucketful of water is described by the normal distribution with a mean of 2.7 gallons and a standard
a piston-cylinder device contains 5 kg of r134a at 800 kpa and 60 c. the refrigerant is now cooled at constant pressure
air at 1 atm and 25 ordmc occupies an initial volume of 1200 cm3 in a cylinder. the air is confined by a piston which
a piston-cylinder device containing carbon-dioxide gas undergoes an isobaric process from 15 psia and 80of to 200of.
air at atmospheric pressure and with a mean velocity of 0.5 ms flows inside a thin walled square cross-section duct of
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