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1. Reduce the monoclinic stress-strain relationships to those of an orthotropic material.
2. Show the difference between monoclinic and orthotropic materials by applying normal stress in principal directions and shear stress in principal planes, one at a time and studying the resulting nonzero and zero strains.
1. If the x-component of the velocity vector is constant in a plane ?ow, what is true of the y-component of the velocity vector?
what are individual cutting tool with a number of cutting edges. they are useally held on the tool shank with various
the crane shown below consists of a 10 m swinging arm that is pinned at point a in the horizontal axis. the load at
a person pushes a car from rest adn accelerates to 4kmh in 5 seconds. the veolicty stays constant for 1km the first 500
consider a piston-cylinder system containing 0.1 kg of water. initially the volume of the system is 0.0125m3 while the
consider a concentric tube annulus for which the inner and outer diameter are 25 and 50 mm. water enters the annular
an ideal gas carnot cycle with air in a piston cylinder has a high temperature of 1200 k and a heat rejection at 400 k.
If the lift L is a function of the free-stream velocity U∞, density ρ, chord c, angle of attack α, and viscosity ν, what are the dimensionless groups (π parameters) that characterize this problem?
The saturated unit weight of a soil is 20.1 kN/m3 at a moisture content of 22%. Determine (a) the dry unit weight and (b) the specific gravity of soil solids, Gs.
a hollow fiber membrane separator with a nominal molecular weight cutoff of 100000 is fed a solution of proteins at the
Piston-cylinder device contains 0.2kg of water initially at 800 kPa and 0.06m^3. Now 200 kJ of heat is transferred to the water while its pressure is held constant. Determine the final temperature of the water. Also, show the process on a T-v d..
Determine the maximum bending stress in the pipe due to its own weight
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