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A device with an inlet cross-sectional area of 1 ft2 receives oxygen flowing at M=0.2 with pt=100 psia and Tt=1000 ºR. The gas flow process is reversible through this well-insulated device, which involves no work transfer. At the exit plane, the static pressure is measured to be 14.7 psia. Calculate the following fluid and flow parameters using the EES unit system: 1. Static density, velocity, and mass flow rate at the inlet plane; 2. Static temperature & density, Mach number, velocity, and cross-sectional area at the exit plane.
a rigid well-insulated tank with a volume of 3 fe contains air at p1 22 lbfin2 and t1 475 bullr. the air is stirred by
piston cylinder device contains 0.06 m3 of saturated water vapor at 350 KPa pressure. Determine the temperature and the mass of the vapor in.
plot the evolution of the height, h, of the stable boundary layer and the strength, delta thetas, as a function of time.
in moving from point b in a particular circuit to point a an electron gains 4 aj of potential energy. what is the
the material hoist and the load have a total mass of 900 kg and the counterweight c has a mass of 150 kg. at a given
Calculate the maximum bending stress at mid-span, and, for the same section, locate the neutral axis. Neglect the weight of the beam
which of the following characteristics that relate the solutes and solvents and their atoms determine the degree to
control engineeringyou have to design a control system for an annealing furnace. the furnace is used to anneal special
find the average velocity of flow at section B, and the pressure difference between sections A and B.
a coin of diameter 2.5 cm is placed concentrically at the bottom of a can 5 cm in diameter and 10 cm high. the coin is
A circular specimen of MgO is loaded using a three point bending mode. Compute the minimum possible radius of the specimen without fracture, given that the applied load is 5560N, the flexural strength is 165 MPa. and the separation between load po..
The diffusion constant (Do) and activation energy (Q) of C in BCC Fe is 0.01 cm2/sec and 80kJ/mol respectively. In FCC Fe, the values are 0.21 cm2/sec and 148kJ/mol. At exactly 910oC these two phases can co-exist.
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