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A solid truncated cone is subjected to an axial force P as shown. The exact elongation is (PL)/(2πc2E). By replacing the cone by n circular cylinders of equal thickness, write a computer program that can be used to calculate the elongation of the truncated cone. What is the percentage error in the answer obtained from the program using (a) n = 6, (b) n = 12, (c) n = 60?
water is sprayed radially outward over 180 degrees. the jet is in the horizontal plane. if the jet velocity at the
applied thermodynamics 5th ed. by eastop and mcconkey problem 3.1 1 kg of air enclosed in a rigid container is
the qb q throws a football when the wr r is in the postion shown 30 yards away the wr velocity is constance at 10 ydsec
Rhodium (Rh) has an atomic weight of 102.91 g/mol and atomic radius of 1.345 Å. Determine whether it has an FCC or BCC crystal structure, if its density is 12.41 g/cm3. What is its lattice constant? Explain your answers.
thin rubber strips are used to provide increasing resistance to orthopedic patients during large motion exercises.the
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.
Determine the velocity ratios that can be achieved by the gear box in terms of number of teeth in the sun wheel and determine which component (out of the sun wheel, planet carrier and annular wheel) has to be used as the input shaft to get the req..
a stone is released from an elevator moving up at a speed of 12 fts and reaches the bottom of the shaft in 2.5 s. a how
engineers plan to build a pipeline 1000 km in length to transport water to a drought-stricken region. they wish to have
Determine the moment about point B of each of the three forces acting on the beam. Determine the moment of each of the three forces about point A.
the compression ratio of an ideal dual cycle is 14. air is at 100 kpa and 300 k at the beginning of the compression
a) It is observed that the velocity 'V' of a liquid leaving a nozzle depends upon the pressure drop 'P' and its density ρ. Show that the relationship between them is of theform V =C * sq(P/ρ)
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