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A sphere of 1.25 m dia floats half submerged in water. If a chain is used to tie it at the bottom so that it is submerged completely, determine the tension in the chain.
An AC induction machine has six poles and is designed for 60-Hz, 240-V (rms) operation. When the machine operates with 10 percent slip, it produces 60 N-m of torque.
A copper vessel of mass 2kg contains 6kg of water. If the initial temperature of the vessel plus water is 20C and the final temperature is 90C, how much heat is added to accomplish this change assuming that there is no heat loss?
Steam enters an insulated de-super heater operating at steady state at 3 MPa and 320°C, where it is mixed with liquid water at 2.5 MPa and 200°C to produce saturated vapor at 2 MPa. Neglect kinetic and potential energy changes, determine the mass flo..
The shaft of a rolling machine is driven by means of a motor placed horizontally. The flywheel which also acts as a pulley is of 1.5 m diameter and has belt tension 5.4 kn and 1.8 kn on tight and slack side respectively.
the position of an object is moving along an x axis is given by x3t - 4t2t3 where x is in meters and t is in
a system consisting of 3 lb of water vapor in a piston-cylinder assembly initially at 350 degrees f and a volume of
Where Operand is any standard 9S12 addressing mode and r is any of the 9S12 registers. This instruction exchanges the 8- or 16-bit contents of the Operand and data register. It does not set any condition code bits.
The gutter is designed for a sudden rainstorm of up to 5 inches per hour. For this condition, what is the maximum roof area that can be drained successfully?
determine diameter of a circular rod of ductile material with a fatigue strength ,e=280 Mpa. Add a tensile yield strength of 350 Mpa. The member is subjected to a varying axial load from 700 kN to -300kN. Assume Kt=1.8 and factor of safety=2.
Plot a calibration curve from these data.
The excess pressure inside a bubble is known to be dependent on bubble radius and surface tension. After finding the pi terms, determine the variation in excess pressure if we (a) double the radius and (b) double the surface tension.
Calculate the equivalence ratio, the maximum pressure and temperature achieved during the cycle, and also the composition (by volume) of the dry exhaust gas.
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