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Draw the moment diagram for the elbow-biceps-forearm-hand system and determine the magnitude and location of the maximum moment if the total weight w of the forearm and hand are included and are assumed to act at the midpoint of the forearm.
a trailer truck enters a 2 percent uphill grade traveling at 72 kmh and reaches a speed of 108 kmh in 300 m. the cab
a 3-lb collar can slide on a horizontal rod which is free to rotate about a vertical shaft. the collar is intially held
A stainless steel pressure vessel is made of long tubing having an outside diameter of 1.5 in and a wall thickness of 1/4 in. (1) what maximum internal pressure (zero external pressure) can the cylinder carry if the permissible tangential stress is 6..
two flows of h2o one of which is saturated vapor at .6 mpa and the other of which is at .6 mpa 600 deg c mix
A 550-V series motor takes 112 A and operates at 820 r/min when the load is 75 hp. If the effective Ra = 0.1 Q Rf = 100 Q When running at 1,100 r/min with no load connected to the shaft, the motor draws 4 A from the line. Find E and the rotational..
What can you say about the output of the filter? That is, derive an equation describing the output as a function of time.
A six cylinder engine runs at 4000 RPM with a compression ratio of 8:1 and a total clearance volume (total for all 6 cylinders) of 600 mL at TDC. The engine intakes atmospheric air at 100 kPA & 20C. The maximum temperature during the cycle is 1500 C
The convective rate of heat loss is given by Q = h A(T - Tf ), where h(W/m2 · ?C) is the convection coefficient, A is the surface area, and Tf is the temperature of the surrounding fluid. Derive the describing partial differential equation.
A water brake is used to measure the power output of an engine, ?W . The water mass flow rate through the brake is m? = 7 kg s?1. Water temperatures at the brake inlet and outlet are T1 = 290K and T2 = 305K, respectively. The heat loss from the engin..
The pipe flow experiment deals with fluid flow through a non-circular cross-section “pipe”. Please explain, using supporting equations, how you would calculate the pressure loss during fluid flow between two points along the pipe.
An airplane flying at 185 kts with heading 320? Towards a target 300 nmi (nautical miles) away, experiences a steady wind of 23 kts from 020? If the time, without wind, to fly to the target was t.
a 13.2 kg axial load is uniformly carried by an aluminum pipe with an outside diameter of 10.0000 cm and an inside
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