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Question: A 1/8 in-thick plate supports a load of 100 lb as shown in the accompanying figure. The plate is made of steel, with E = 29 x 1061b/M2 and v 03.Using ANSYS, determine the principal stresses in the plate. When modeling. Distribute the load over pan of the bottom portion of the hole
Comment on storage needs in both locations.Low-temperature organic and steam efficiencies were computed with the following assumptions: expander efficiency, 80%; pump efficiency, 50%; mechanical efficiency, 95%; condensing temperature, 95°F; regen..
a certain metal frame supports a platform and motor. the combined mass of the platform and motor is 600kg. at a motor
a thermal reservoir at 1500 r transfers heat to 1lbm of air in a piston-cylinder device maintained at a constant
Determine the angular velocity of precession of a gyroscope of 16.1 lb weight spinning at 6000 rpm. The radius r is 4 in. and a is 17.9 in.
1. consider the element platinum which has an atomic radius of 0.139 nm and a room temperature density of 21.45 gcm3.a.
Determine the COP of a refrigerator that removes heat from the food compartment at a rate of 5040 kJ/ h for each kW of power it consumes. Also, determine the rate of heat rejection to the outside air.
A stream consisting of two organic chemicals: 1) Benzene (C6H6) and 2) Toluene (C7H8), enters a separation column. The total mass flow rate of the stream is 10,000 lbm/hr (pounds/hour). The mass percent of benzene in the stream is 40%.
A compressor of mass 120 kg has a rotating unbalance of 0.2 kg-m. If an isolator of stiffness 0.5 MN/m and damping ratio 0.06 is used, find the range of operating speeds of the compressor over which the force transmitted to the foundation will be ..
Repeat Problem 15-12 using a cam with a 20-mm symmetric double harmonic rise and fall (180° rise -180° fall). See Chapter 8 for cam formulas.
The slotted wheel rolls to the right without slipping,
water at 60f flows through 5000 ft of pipe with a 50 ft headloss. the pipe is riveted steel with smooth walls. the
Capture the Rayleigh line between Mach number 0.2 to 4.0 initially by adding heat q in small increments taking the flow to M = 1 at location 2, there after removing heat until you achieve M = 4. Use the differential equations
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