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Explain the fundamental difference in scaling principles between a “time constant related system” and a “diffusion related system”.
Briefly describe an example of how the similarity approach for the analysis of scaling can break down when applied to sub-micron scale fluidic systems.
consider a plane wall 100mm thick and of thermal conductivity 100 w/m .k seady state conditions are known to exist with T1 = 400 k T2= 600 K. determine the heat flux and the temperature gradient off the coordinate systems.
question a soap bubble with walls 398 thick floats in air. if this bubble is illuminated perpendicularly with sunlight
a machine part in a turbine-generator unit operates near room temperature and is made of astm a470-8 steel yield
draw the shear and bending-moment diagrams for the beam and loading shown and determine the maximum normal stress due to bending.
a particle a is pulled horizontally by a scotch-yoke with a constant velocity v along the elliptical slot given by the
a commercial heat pump has energy in to the system at a rate of 60 kw from a thermal reservoir. ifnbspthe power input
a machine of total mass 100 kg is mounted on a suspension which has a static deflection under the weight of the machine
hockey player a carries the puck on his stick and moves in the direction shown with a speed va4 ms. in passing the puck
a frictionless piston is raised by slowly heating the gas contained in the cylinder. the initial pressure is 2 bar and
problem i. steam at 5.0 mpa 500 degrees c enters an insulated turbine operating at steady state with a mass flow rate
In a sealed piston cylinder device Nitrogen gas executes a CARNOT POWER CYCLE. The source and sink temperatures are 999 K and 333 K. Minimum pressure in the cycle is 20 kPa. The minimum volume is (1/40) of the maximum volume in the cycle. The cycle w..
what fraction n of the weight of the jet airplane is the net thrustnozzle thrust t minus air resistance r required for
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