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There is a vertical engine, having piston at the top and crank at the bottom, running at 2400 rpm. The length of crank and connectivity rod is 50 mm and 300 mm respectively. The diameter of the pistons is 100 mm and the mass of the reciprocating parts is 1.5 kg. The crank has turned 300 from the top dead centre during the expansion stoke and the gas pressure is 600 kN/m2. The net force on the piston is _____ N.
    Correct answer is between '229,230'. Can you explain this answer?
    Verified Answer
    There is a vertical engine, having piston at the top and crank at the ...
    Given:
    Length of crank, r = 50 mm = 0.05 m
    Length of connecting rod, l = 300 mm = 0.3 m
    N = 2400 rpm
    Gas pressure, P = 600 kN/m2
    Mass of reciprocating parts, m = 1.5 kg
    Diameter of piston, d = 0.1 m
    θ = 300

    Now,
    n = l/r = 0.3/0.05 = 6

    Force due to gas pressure, Fp = Area x Pressure
    = 4712.39 N

    Net force on the piston, F
    F = Fp – Fb + mg = 4712.39 – 4497.59 + 1.5 x 9.81 = 229.52 N
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    There is a vertical engine, having piston at the top and crank at the bottom, running at 2400 rpm. The length of crank and connectivity rod is 50 mm and 300 mm respectively. The diameter of the pistons is 100 mm and the mass of the reciprocating parts is 1.5 kg. The crank has turned 300from the top dead centre during the expansion stoke and the gas pressure is 600 kN/m2. The net force on the piston is _____ N.Correct answer is between '229,230'. Can you explain this answer?
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