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A short compression member is subjected to two compressive loads, as shown. The member is 6 in. by 12 in. in cross section. Calculate the combined stress at outer edges AA and BB.
the surface temperature of a 100 w incandescent lightbulb is 60.0degc. the surface temperature of a 20.0 w fluorescent
A ski lift has a one-way length of 1495m and a vertical rise of 285 m. The chairs are spaced 23 m apart, and each chair can seat three people. The lift is operating at a steady speed of 12 km/h.
an incompressible velocity field is given byuurthetazurrthetazuthetarthetazuzrthetaz1-1r2costheta -11r2sintheta 0adoes
A high altitude aircraft has an airspeed of 750 ft/s at an altitude of 70,000 ft above sea level. What is the Mach number of the aircraft in this flight condition? A hypersonic flight vehicle is in flight at Mach number of 5.2 at an altitude of 98..
a 6-cylinder 3.8 l spark ignition engine operating on the ideal otto cycle takes in air at 104 kpa and 20 degrees
The solid concrete cylinder 6 ft long and 4 ft in diameter is supported in a half-submerged position in fresh water by a cable which passes over a fixed pulley at A. Compute the tension T in the cable. The cylinder is waterproofed by a plastic coa..
Air enters a compressor operating at steady state at 1 atm. with a specific enthalpy of 290 kJ/kg and exits at a higher pressure with a specific enthalpy of 1023 kJ/kg. The mass flow rate is 0.1 kg/s. If the compressor power input is 77 kW. Neglect f..
calculate the gibbs free energy change of a rubber band stretched to 5 times its original length with concurrent
a vehicle is powered by motors that have a maximum speed of 5000 rpm. each motor is coupled to the wheel using a gear
A wedge splits a sheet of 20°C water, as shown in Fig. P3.39. Both wedge and sheet are very long into the paper. If the force required to hold the wedge stationary is F = 124 N per meter of depth into the paper, what is the angle θ of the wedge?
the azimuth from station a of a link traverse to an azimuth mark is 212o 12 36. the azimuth from the last station of
solve for t≥0 the following differential equations
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