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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.
Consider a supersonic wind tunnel with test section Mach number of 2 and fixed geometry diffuser designed to operate with minimum stagnation pressure losses (smallest diffuser area).
an air conditioner uses r134 the condenser pressure is 1400 kpa and the evaporator pressure is 201 kpa. find the cycle
Interview one of your professors who is involved with a research project. Discuss the advantages and disadvantages of a career in research
the rate of heat transfer from the working fluid passing through the condenser to the cooling water, in kJ per kg of steam entering the first-stage turbine.
carbon is diffused into steel at 900oc over a period of 10 hrs. the solubility of carbon in steel at this temperature
estimate the nominal size of the smallest sae grade 1 standard unc bolt that will not yield under a tightening torque
differentiate between macroscopic and microscopic approaches. which approach is used in the study of engineering
In which boiling regime does the chip operate after the power dissipation returns to its design value? To return to the nucleate boiling regime, how much must the clock speed be reduced relative to the design value?
the uniform slender bar abc weighs 6 lb and is intially at rest with end a bearing against the stop in the horizontal
Estimate the average pressure C in the seal area of design (a) and the average increase T in the initial tension in each of the 16 bolts of design (b).
the 65-mm diameter steel shaft is subjected to the two loads that act in the directions shown. if the journal bearings
a well known architect designed a 1600 m tall building. in the building steam for the heating system enters at ground
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