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The image for this problem can be found through this link : https://imgur.com/fQjT0w5 Please show all work/formulas so that I may understand this problem for the future. Letting theta = 53 degrees, determine the vertical component of the velocity of A if B is moving downward with a speed vB = 9 ft/s.
a machinist is making engine parts with axle diameter of 0.7 inch. a random sample of 15 parts shows mean diameter
A spur gear has 48 teeth with a diametral pitch of 8 and a pressure angle of 20 deg. The face width is 0.75 inches. If the gear is transmitting 25 HP at 250 rpm
Assume you are given a spherical joint where the ball has a radius of 20 mm and socket has a radius of 22 mm. If the contact load is 50 N, E = 210 GPa, and ν = 0.3, determine (a) the radius of the contact area, (b) the maximum contact pressure.
Determine the thermal efficiency of the cycle and the net specific work. Assume each turbine stage isentropic efficiency to be 99% and assume the FWH is open.
a calculate the number of electrons in a small electrically neutral silver pin that has a mass of 8.0 g. silver has 47
What is the total force reaction (magnitude) at pin joint O when the square plate is released from rest? Assume the plate has a uniform thickness.
ten kilograms of water initially at 3000 kpa 200degc are contained in a piston-cylindernbspdevice shown below. a
a smoke stream from a smoke generating tube is often used as a simple method of flow visualization in wind tunnels.
the metal rhodium has a fcc crystal structure. if the angle of diffraction for the 311 set of planes occurs at 36.12deg
What is the best approach to learn programming directed towards numerical methods and CFD for a beginner.
Obtain a new solution, and determine whether any buckling constraints are active. If no buckling constraints are active for L = 10 in., re-run the analysis by increasing L , and estimate the value of L at which at least one buckling constraint b..
Air at 250 kPA and 15C is being forced into a tire, which has a volume of 0.5m^3, at a velocity of 60 m/s through a 6 mm opening. Find the rate of change of the density in the tire.
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