Question: Given Data: When enters: Air Pressure at ( mathrm { { 2 8 } ^ { { o } } { C }

Given Data:
When enters: Air Pressure at \(\mathrm{{28}^{{o}}{C}}\)28^oC is 101kPa.
When discharge Air Pressure is 350 kPa, at \(\mathrm{{40}^{{o}}{C}}\)40^oC.
The area of the medium through which air passes is given as 0.1\(\mathrm{{m}^{{2}}}\)m^2.
The Steady-state mass flow rate is given as 10 kg/s.
If the input Power is 450W.
Specific heat capacity at constant pressure, 1.e.\(\mathrm{{C}_{{p}}}\)C_p is 1kJ/kg-K.
Molecular weight is 29 kg/mol.
Here, it is given that we have to assume the air as an Ideal gas.
To determine:
The Change in enthalpy (in kJ).
The rate of heat transfer (in kW).
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 Given Data: When enters: Air Pressure at \(\mathrm{{28}^{{o}}{C}}\)28^oC is 101kPa. When

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