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Counters A and B are non-paralyzable with dead times of 30 or 100 microseconds, respectively. At what true event rate will dead time losses (not to be confused with dead time) in counter B be twice as great as those for counter A?
A fireclay brick cube, 10 cm in length is removed from a furnace where it was maintained at a temperature of 500 degrees C. The brick cube is then placed in ambient temperature conditions.
an air turbine is a continuous flow device that produces shaft power by expanding high pressure air. a particular air
Determine the minimum thickness of fibreglas insulation that needs to be used in the wall in order to avoid condensation on the outer surfaces.
4-in square steel bar subjected to transverse biaxial tensile stressesconsider a 4-in square steel bar subjected to
a 10 kw electric heater is used to heat 2 kg of air contained in an insulated rigid tank from 400 kpa and 50 degc to
consider a homogenous spherical radioactive material of radius ro 0.075 m that is generating heat at a constant rate of
Calculating the heat transfer rate and the rate that entropy is produced in a gear box. A gearbox operating under steady state conditions recieves 24 hp along the input shaft and delivers 10hp along the output shaft
large cylindrical bales of hay used to feed livestock in the winter months are d2m in diameter and are stored
In a refrigerator 1 kW is removed from the -10 degree C cold space and 1.3 kW is moved into the 30 degree C warm space. Find the exergy fluxes including direction associated with the two heat transfers.
collar c moves along a circular guide with radius R=2ft with a constant speed v=18ft/s. at the instant, the bars AB and BC are vertical and horizontal respectively. Letting L=4ft and H=5ft, determine the angular acceleration of the bars AB and BC ..
a particle of mass m kg carrying q coulombs enters the space between two charged plates with the horizontal velocity
A triangular field with vertices OPQ has sides OP equal 402 m, PQ equal 388 m, and QO equal 254 m . find perpendicular distance from the vertex P to the opposite side.
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