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A tank of 0.05 m^3 volume air at 800 kpa (absolute) and 15 c. at t=0, air begins escaping from the tank through a valve with a flow area of 65 mm^2. The air passing through the valve has a speed of 300 m/s and a density of 6 kg/m^3. Determine the instantaneous rate of change of density in the tank at t+0.
Derive at least four concept designs to satisfy the given specification - draw a central cross-section of the heat exchanger
Finding Metal Removal Rate In an electrochemical machining operation, the frontal working area of the electrode is 2.5in squared
an insulated system is divided into 2 parts by a partition . one part of the tank contain 2.5 kg of compressed liquid
two vectors a with magnitude 32.0 units directed at an angle of 56.0 deg above the x-axis and b 32.0 units long
a 10-m long and 10-mm inner-diameter pipe made of commercial steel is used to heat a liquid in an industrial process.
can the flow field given by v 1x2 i - 2 x 1y j represents a steady and incompressible two dimensional flow?a if yes
a 1.5 m3tank fills through inlet a while supplying water through outlets b and c at the rates given below. determine
air enters an evaporative cooler at 95 kpa 35 degrees celcius and 30 relative humidity and exits saturated. determine
the piston-cylinder assembly shown in the figure is fitted with a linear spring. the spring constant is k 15 knm and
hockey player a carries the puck on his stick and moves in the direction shown with a speed va4 ms. in passing the puck
Need help with determining the rate of heat generation required at the welding source to accomplish a weld. A fillet weld is used to join two medium carbon steel plates each having a thickness of 5.0mm.
a mass of 3kg of nitrogen at 100kpa and 20oc is contained in a piston-cylinder device. it is now expanded to a final
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