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Closely coiled helical spring of round Steel wire 5mm in diameter having 12 complete coils of 40mm means diameter is subjected to an axial load of 150 N . Analyze the deflection of the spring and the maximum sheering stress of materials. Modulus of rigidity(c) = 80Gba
Determine the axial stress and strain of the axially loaded nail plate. How much does the nail plate shorten as a result of this axial response?
A 0.7-lb block rests on top of a 0.5-lb block supported by but not attached to a spring of constant 9 lb/ft. The upper block is suddenly removed. Determine (a) the Maximum velocity reached by the 0.5-lb block, (b) the maximum height reached by the..
Two samples of different pure substances having equal mass are each placed in rigid containers. The first container is half as large as the second container. After the containers are sealed, the pressure of the first container is observed to be twice..
refrigerant 134-a is contained in a 4 ft3 tank at 160 lpfin2. at the beginning the saturated vapour occupies a volume
write a report (that includes three references) on the concept of tolerable risk and risk reduction. In this report, provide definitions for hazard, probability, residual risk, risk, safety, severity, and tolerable risk.
a coil spring is stretched by two equal and opposite forces f120n. the wire diameter is 5 mm and the mean coil diameter
Estimate the mass of the gas in the tank in kg assuming the gas behaves as an ideal gas. If the gas warms up to 35 deg C as it sits in the sun all day, what would the pressure rise to?
a balanced wheel supported on springs is rotating at 1200 rpm. if a bolt weighing 15 g and located 5 cm from center
Steam flows at steady state through a well-insulated pressure-reducing valve. At the inlet, the pressure is 4 MPa, the temperature is 320°C, and the velocity is 60 m/s. The pressure of the steam at the exit is 700 kPa.
zoologists estimate that the average adult cheetah can run at a speed of 100 kmhr and that the average antelope can run
As shown in Fig. 16.15, the water leaves the cup vertically downward in the form of an annular ring having an outside diameter of 4.00 in and an inside diameter of 3.80 in. Compute the external force required to hold the cup down.
Assuming the ball to be in planar motion, find the energy conservation equation for the ball. Deduce the acceleration of the ball.
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