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Reinforced concrete highway pavement has a depth of 250 mm with 24 mm diameter steel rebars located 180 mm from the top. The rebars are spaced 200 mm apart. Sketch and analyze one segment of this pavement centered on a rebar. For an allowable stress of 9 Mpa for concrete and 120 Mpa for steel, determine the largest allowable bending moment bending moment for a 1 meter wide section of the highway.Assume E=185 Gpa for steel and E=22 GPa for concrete.
Simics Central Simics can simulate real workloads at reasonable speeds Is the reported performance a result of optimization or simulator simplicity? What are some of the potential drawbacks of making a completely general simulation environment?
Water drips at the rate of 5 drops per second from a leaking tap. Determine the vertical distance between two consecutive drops after the lower drop has attained a velocity of 3 m/s.
the process and volume relation is given p8-4vbar for a non flow process where v is in cubic meter.if 130kj of work is
500 galmin 30 ls of 100 degree f 40 degree c water flows through 300 ft 90m of 6-inch sch 40 steel pipe. the pipe
consider a steam power plant with reheat that operates on a modified rankine cycle. steam enters the high-pressure
an inventor claims to have developed a refrigeration unit that maintains a cold space at -10degc while operating in a
Determine the smallest horizontal force required to lift the 260- crate. The coefficient of static friction at all contacting surfaces is = 0.7. Neglect the mass of the wedge.
describe the mechanical properties of strength as an example lets choose a metal cutting file as it relates to
a walk-in cooler using a vapor compression refrigeration cycle is configured as shown below. the cycle uses cfc22 or
determine the vertical velocity vo with which a ball must be thrown in order for the time of flight to the bottom of
determine the compressor work input requireed to compress steam isentropically from 100 kpa to 1 mpa assuming that the
If the efficiency of the turbine in converting the mechanical energy given up by the fluid to the turbine shaft is 89% (nt = 0.89), calculate the friction loss in the turbine in J/kg.
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