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? Required information A piston-cylinder device contains 4.000kg of H_(2) and 21kg of N_(2) at 160K and 5MPa . Heat is now transferred to the

?\ Required information\ A piston-cylinder device contains

4.000kg

of

H_(2)

and

21kg

of

N_(2)

at

160K

and

5MPa

. Heat is now transferred to the\ device, and the mixture expands at constant pressure until the temperature rises to

200K

.\ Determine the heat transfer during this process by treating the mixture as a nonideal gas and using Amagat's law. The universal gas\ constant is

R_(u)=8.314kPa*(m^(3))/(k)mol*K

. Use the table containing the molar mass, gas constant, and critical-point properties;\ the generalized enthalpy departure chart; and the table containing the ideal-gas properties of air. (Round the final answer to the\ nearest whole number.)\ The heat transfer during this process is\ kJ.

image text in transcribed
Required information A piston-cylinder device contains 4.000kg of H2 and 21kg of N2 at 160K and 5MPa. Heat is now transferred to the device, and the mixture expands at constant pressure until the temperature rises to 200K. Determine the heat transfer during this process by treating the mixture as a nonideal gas and using Amagat's law. The universal gas constant is Ru=8.314kPam3/kmolK. Use the table containing the molar mass, gas constant, and critical-point properties; the generalized enthalpy departure chart; and the table containing the ideal-gas properties of air. (Round the final answer to the nearest whole number.) The heat transfer during this process is kJ

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