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A pure aluminum conical section with Cross Sectional diameter of D= ax^(1/2). a = 0.5meters^(1/2). The small end of the cone is at x1=25mm and the large end at x2=125mm. T1=600K, T2 = 400K. The lateral surfaces are well insulated. Determine an expression for temperature distribution assuming 1D heat transfer.
assume the cost of a robotic system is 151. the salary and other costs of workers replaced is 27 the saving for using
the acceleration of a particle is defined as a25-3x2 a is expressed in msec2 and x is in meters. the particle starts
the tank shown has a 180 mm inside diameter and a 12 mm wall thickness. knowing that the tank contains compressed air
an air standard brayton closed cycle receives air at 1 atm and 298 k. the upper temperature and pressure limits are 5
Determine the natural frequencies of the system-For the baseline system and find a design that changes the ?rst two natural frequencies more than any of the previous slight modi?cations.
a fossil-fuel steam power plant operates at about 50 of carnot thermal efficiency. it has been suggested that the air
What is the discharge revised discharge pressure of the compressor.
if the 50 kg. crate starts from rest and attains a speed of 6ms when it has traveled a distance of 15m. determine the
determine the work done by a 1-lb fluid system as it expands slowly within a piston-cylinder arrangement from an
A car accelerates uniformly rest to 81 ft/s over a distance of 700 ft along a curve of 800ft radius .Determine the magnitude of the total acceleration at the instant that speed of 81ft is reached.
the aluminum shade for the small high intensity lamp has a uniform thickness of 1mm. Knowing that the density of aluminum is 2800 kg/m^3, determine the mass of the shade.
determine the new differential reading along the inclined leg of the mercury manometer of the figure if the pressure in
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