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A particle moves along a straight line with an acceleration of a = 5/(3s^1/3 + s^5/2)m/s^2, where s is in meters. Determine the particle's velocity when s=2m, if it starts from rest when s=1m. Use simpson's rule to evaluate the integral.
air enters an ideal diffuser operating at steady state at 1 bar -3degc and 260 ms and exits at with a velocity of 130
air enters the duct of an air conditioning system at 100 kpa and 100c at a volume flow rate of 15 m3min. the diameter
water vapor at 800 lbfin.2 1000 degrees f enters a turbine operating at steady state and expands to 2 lbfin.2 the mass
saturated vapor steam at 5 psia eneters an adiabatic heat exchanger and leaves as saturated liquid at 5 psia. the steam
a gas turbine burns natural gas assume methane where the air is supplied to the combustor at 1000 kpa 500 k and the
imagine that the heart acts as a pump. blood enters the heart from the lungs at 6mm hg and leaves to the rest of the
a mass of 1.0 kg sits atop a spring mounted to the ground. the system is subjected to a half-sine shock pulse of
when you move up from the surface of the earth the gravitation is reduced as g 9.807 - 3.32 times 10-6 z with z as the
a boat and trailer are being pulled along a bumpy road at a velocity v. the contour of the road can be approximated by
a well-insulated steam turbine is operating at a steady state with an inlet temperature of 780k inlet specific
Estimate the Schmid Factor, which is used to convert the CRSS into a critical tensile 'yield' stress. Use the measured angle between the slip trace and the sample long axis
the total cross-sectional area of the inlet to the jet engines is 20 ft2. assume that the flow properties of the air
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