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Engineering, 19.10.2019 04:20, Tellyy8104
Air enters a diffuser operating at steady state at 540 r, 15 psi, with a velocity of 600 ft/s, and exits with a velocity of 60 ft/s. the ratio of the exit area to the inlet area is 8. assuming the ideal gas model for the air and ignoring heat transfer, determine the temperature, in r, and pressure, in psi at the exit.
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Engineering, 04.07.2019 18:10, kevin72836
Consider a large isothermal enclosure that is maintained at a uniform temperature of 2000 k. calculate the emissive power of the radiation that emerges from a small aperture on the enclosure surface. what is the wavelength ? , below which 10% of the emission is concentrated? what is the wavelength ? 2 above which 10% of the emission is concentrated? determine the wavelength at which maximum spectral emissive power occurs. what is the irradiation incident on a small object placed inside the enclosure?
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Engineering, 04.07.2019 18:20, sanchez626
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Air enters a diffuser operating at steady state at 540 r, 15 psi, with a velocity of 600 ft/s, and e...
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