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The position of a point p on a line is given by the equation x = t sin(pi t/2). The point starts moving at t=0. Find the total distance traveled by p when it passes through the origin (counting the start as the first pass) for the third time.
If the pipe is to be insulated with glass wool insulation (k=.05 W/m C) in order to decrease the temperature rise of water to .25 degrees C, determine the required thickness of the insulation.
Find the diameter of a pipe to convey the superheated steam flowing into the mixing process if the speed of the steam is 20m/s and also ascertain the condition of the resulting mixture.
Assuming a coefficient of static friction equal to 0.2 at the common surface, find the maximum torque that may be transmitted by the flywheel without slippage.
Find the velocity of the bullet and the distance it has traveled into the water after 4 seconds. Please show detailed step by step process to solution.
A) Calculate the velocity in the tunnel test section. B) Compute the total pressure at the test section.
A small hydroelectric power plant produces electrical power at a rate of 30 kW. The plant utilizes a stream of water that drops 40 m from a lake to the turbine and flows at a rate of 100 kg/s. What is the efficiency of the turbine-generator?
Describe the four incorrect assumptions concerning robot - arm movement that are most frequently responsible for impact accidents.
Evaluate the maximum theoretical power that can be developed by the turbine, in kW, and the corresponding exit temperature.
the tank is being filled with water by two one-dimensional inlets.nbspthe water height is h. a find an expression for
a satellite is in earth orbit with an altitude at perigee of 555.0 km and an altitude at apogee of 1200.0 km.a. what is
If the density of air is 1.20 kg/m^3 at the inlet and 1.05 kg/m^3 at the exit, determine the percent increase in the velocity of air as it flows through the dryer.
the load is being lifted upward at a constant rate of 9 ms relative to the crane boom ab. at the instant shown the boom
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