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Train starts from rest and accelerates uniformly at 0.35g to reach its max speed of 150 mph. Just before arriving to its destination it decelerates at -0.5g and comes to complete stop. what is the time it takes the train to make this 350 mile trip?
the end of a large tubular workpart is to be faced on a nc vertical boring mill. the part has an outside diameter 45.0
On a single graph, plot "Hardness" as the ordinate versus "Aging Time" as the abscissa for each aging temperature - Discuss the effect of aging time and temperature on the effect of material hardness.
25 washers have a combined mass of 1 lb. how much money is recovered per day from the sale of scrap washers?
At what location s will the combined moment of the weights of the man and platform about point B be zero.
in the design of an automobile radiator an engineer has a choice of using either a brass-copper alloy casting or a
If the filling is done rapidly, calculate the final temperature in the small cylinder, (a) assume that oxygen is an ideal gas with Cv= 5R/2 and (b) using accurate thermodynamic data for oxygen.
a 4m long quarter-circular gate of radius 3 m and of negligible weight is hinged aboutnbspits upper edge a. the gate
What is the velocity and rate of flow of the metal into the mold? Is the flow turbulent or laminar? (Pure aluminum density ρ = 2.7 g/cm3).
The compression strength of Kevlar 49 fiber is about one-eight of its tensile stress. Estimate the smallest diameter of a rod on which 12 um diameter Kevlar fiber can be wound without causing kinks on its compression side.
the motion of the slender 10kg rod AB is guided by collars of negligible mass that slide freely on the vertical and horizontal rods. knowing that the bar is released from rest when θ=30, determine the velocity of the collars A and B when θ = 60.
B) Determine the minimum amount of work [kJ ] required to reach this end state. C) If more than the minimum work is actually used, where does this extra energy go? That is what becomes of the extra energy?
Determine the magnitude of the horizontal and vertical components of the force of the water on the gate.
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