Q2 Figure Q2, A turbo-compressor supplies power to the air-conditi- (Refrigerant) with 900.0 kw. Calculate the volume per minute of operating through the unit where the density is 1 lb/ft³. Given Data: Atmospheric temperature = 520ºR TH Compressor gas temperature = 607°R Cp=0.539, J=778J/S, Conversion factor =33000.0 QH One-hours power = 746 watts. QL Figure (Q2), Refrigerant unit TL R 9

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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Q2
Figure Q2, A turbo-compressor supplies power to the air-condition unit
(Refrigerant) with 900.0 kw. Calculate the volume per minute of the gas
operating through the unit where the density is 1 Ib/ft.
Given Data:
TH
Atmospheric temperature = 520°R
Compressor gas temperature = 607°R
CP 0.539, J=778J/S, Conversion factor =33000.0
One-hours power = 746 watts.
QH
R
900.0kw
Figure (Q2), Refrigerant unit
TL
Transcribed Image Text:Q2 Figure Q2, A turbo-compressor supplies power to the air-condition unit (Refrigerant) with 900.0 kw. Calculate the volume per minute of the gas operating through the unit where the density is 1 Ib/ft. Given Data: TH Atmospheric temperature = 520°R Compressor gas temperature = 607°R CP 0.539, J=778J/S, Conversion factor =33000.0 One-hours power = 746 watts. QH R 900.0kw Figure (Q2), Refrigerant unit TL
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