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Atmospheric air at 90o F and 60% relative humidity flows over a cooling coil at an inlet volumetric flow rate of 2000 ft3/min. The cooling coil temperature is 40oF. The liquid condensate is removed from the system at 60o F. The air is then reheated until a final state of 80 oF and 40% relative humidity is reached. Determine:
a. The mass flow rate of the condensate leaving the unit
b. The heat transfer rate in the cooling section
c. The heat transfer rate in the reheat section.
find the average velocity of flow at section B, and the pressure difference between sections A and B.
Obtain a new solution, and determine whether any buckling constraints are active. If no buckling constraints are active for L = 10 in., re-run the analysis by increasing L , and estimate the value of L at which at least one buckling constraint b..
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determine diameter of a circular rod of ductile material with a fatigue strength ,e=280 Mpa. Add a tensile yield strength of 350 Mpa. The member is subjected to a varying axial load from 700 kN to -300kN. Assume Kt=1.8 and factor of safety=2.
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during this process heat is exchanged with surrounding such that the entire air remains at 30 degree celsius at all times.determine the heat transfer for this process.
a battle has erupted over a local power plant owners decision to raise the power delivered by the plant from 186 mw to
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