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Determine the magnitude of the resultant force acting on a 5 kg particle at the instant t=2 s. if the particle is moving along a horizontal path defined by the equations r=(2t+10) m and theta = (1.5t^2-6t) rad, where t is in seconds
r-134a vapor enters an adiabatic turbine at 250 psia and 175 f. the temperature at the outlet is 20 f. determine the
the cylinder and hub have a total mass of 30 kg and a radius of gyration of 0.5 m. assume no slippage. determine the
a flywheel rotating freely at 1800 revmin cw is subjected to a variable ccw torque which is first applied at time t 0.
superheated steam at 500 celsius and 3 mpa enters a steady state turbine with a mass flow rate of 500 kgs. the steam
saturated water at mean temperature 20 degc flows inside a 25-mm-idnbspcircular tube which is electrically heated to
air enters an evaporative cooler at 95 kpa 35 degrees celcius and 30 relative humidity and exits saturated. determine
consider an ideal steam combined reheat and regenerative cycle in which steam enters the high-pressure turbine at 500
consider a regenerative rankine cycle with a 600c and 4-mpa throttle a 5-kpa condenser and an open feedwater heater at
a stainless steel bar 10 inch long and 38 inch in diameter is loaded in tension and experiences an elastic stretch of
q1 figure shows a scale drawing of the temperature profile through a composite plane wall.i identify the layer with the
Calculate the actual power transmitted to the second pulley and calculate the power which can be transmitted if the maximum tension in the belt is limited to half of the ultimate strength of the belt.
a quartz sphere of 20mm diameter is pressed into a flat thick carbon steel plate with a force of 5 n. find the maximum
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