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Moments of Inertia
Determine the moment of inertia Ix of a triangle of base b and altitude h with respect to its base (see Case 4, Appendix D).
Write an abstract on the Quadcopter Demonstrator. the `significance' points within the abstract evaluation section. Do not include an appendix in your abstract.
r-134a is flowed into an insulated 0.2m3 initially container from a line at 500kpa saturated vapor until the flow stops
a gate in the shape of a quarter cylinder hinged at a and sealed at b is 3 m wide. the bottom of the gate is 4.5 m
part a.the slender bar ab rests on a smooth surface at b and is attached to a collar a that slides freely on the smooth
air goes through an adiabatic nozzle. at the inlet pressure is 15 bar temperature 700 k velocity 100 ms and
water is circulating through a closed system of pipes in a two floor apartment. on the first floor the water has a
a mass of 5kg of saturated liquid-vapor mixture of water is contained in a piston-cylinder device at 100 kpa. initially
1 kg of water executes a cycle in a piston cylinder assembly starting out at high t 300 deg c and high p 15 mpa. the
steam at 320oc flows in a stainless steel pipe k 15wm. oc whose inner and out diameters are 5 cm and 5.5 cm
Water at 10C and a velocity of .6 m/s flows over one surface of a 1.5 m long flat plate maintained at 44C. Consider the following: Determine the heat transfer rate per unit width (W/m) from plate.
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)
the tank has a 180mm diameter and 12 mm wall thickness. knowing that the tank contains compressed air under a pressure of 8 Mpa, determine the magnitude t of applied torque for which the maximum normal stress in tank is 75 Mpa.
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