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Engineering, 17.03.2020 04:26, angelaguero9877
Imagine it is a clear night. The surface wind speed is 2 m/s, and 49g/s of a nonreactive gas-phase pollutant is released at ground level. Calculate the ground-level concentration (μg/m3) 1000m directly downwind.
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Engineering, 04.07.2019 19:20, rida10309
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Engineering, 04.07.2019 19:20, mariahmimibrooks
Liquid flows at steady state at a rate of 2 lb/'s through a pump, which operates to raise the elevation of the liquid 100 ft from control volume inlet to exit. the liquid specific enthalpy at the inlet is 40.09 btu/lb and at the exit is 40.94 btub. the pump requires 3 btu/s of power to operate. if kinetic energy effects are negligible and gravitational acceleration is 32.174 tt/s, the heat transfer rate associated with this steady state process is most closely 1)-2,02 btu/s from the liquid to the surroundings 2)-3.98 btu/s from the surroundings to the liquid. 3)-4.96 btu/s from the surroundings to the liquid. 4)-1.04 btu/s from the liquid to the surroundings.
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Imagine it is a clear night. The surface wind speed is 2 m/s, and 49g/s of a nonreactive gas-phase p...
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