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Determine the criteria for isothermal equilibrium of a system at
(a) constant volume, and
(b) constant pressure. Assume that the system is:
a. constant, and invariant, in composition;
b. variable in composition
consider a house in winter. it is heated by the sun at a rate of 2 kw. electrical appliances in the house are drawing
Design a private sewage system (seepage pits) for the apartment building in Appendix B. In this design, use a percolation rate of 16 min. Assume the maximum water table elevation is 2 ft (0.6 m) below grade.
Evaluate the valve closure to achieve a water exit velocity
A closed system contains 0.5 kg of nitrogen, initially at 150 KPa with a volume of 0.3 m^3. The system undergoes a poly tropic process resulting in the final state of 240 KPa and 100 C. Determine a) the poly tropic coefficient and b) the associated b..
The electric and magnetic field intensities at a general point in space for a given current. All monopoles carry identical currents.
Determine the work input and entropy generation during the compression of steam from 100 kPa to 5 MPa in (a) an adiabatic pump and (b) an adiabatic compressor is the inlet state is saturated liquid in the pump and saturated vapor in the compressor an..
Consider a discrete-time LTI system with impulse response h[n] given by h [n] = anu [n]
Find an exponential regression model for the data. Estimate (to the nearest billion) the annual expenditures in 2017.
A steam power plant operates on the reheat rankine cycle between 15 mpa and 10 kpa. System enters the high pressure turbine at 15 Mpa and 500c at rate of 12 kg/s. steam is then reheated at constant pressure to 500c befe it expands in the low pressure..
What is the inner tube surface temperature at the outlet, where fully developed conditions may be assumed?
A train accelerates uniformly along a straight track and passes three trackside markers. The distance between the first two markers is equal to 0.25 km and between the second and third the distance is 0.4km
Schematically draw the evolution of the microstructure of Fe-C alloy as T decreases from 1000C to 500C, with the following composition (wt % of C)
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