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G M Reistad
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Electric power
Energy
Volumetric flow rate
Thermodynamics
Design
Exergy
Energy conservation
Heat exchanger
HVAC
Mathematical optimization
Coefficient of performance
Fluid dynamics
Physical property
Geothermal energy
Heat transfer
Temperature
Power station
Air conditioning
Economics
Measuring instrument
Performance
Mathematical model
Fossil fuel
Energy transfer
Anemometer
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Electric power
Energy
Volumetric flow rate
Thermodynamics
Design
Exergy
Energy conservation
Heat exchanger
HVAC
Mathematical optimization
Coefficient of performance
Fluid dynamics
Physical property
Geothermal energy
Heat transfer
Temperature
Power station
Air conditioning
Economics
Measuring instrument
Performance
Mathematical model
Fossil fuel
Energy transfer
Anemometer
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G M Reistad
Oregon State University
36
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