8.2. Consider the following three particles: m₁ = 1 kg. 3 kg. m, = 5 kg. Calculate the following at 10 and r = 10 s. (a) The position of the center of mass. (b) the velocity of the center of mass, (c) the linear mo- mentum, and (d) the kinetic energy of the system. r₁ = 2² + 36 + 4k r₂ = (1+²+(2+ 50ĵ r₁ = (1 + 2) + 4r³k

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8.2. Consider the following three particles:
m₁ = 1 kg. r, = 21²³1 + 3 + 4k
m₂ = 3 kg. r₂ = (1 + r) + (2 + 50))
m, = 5 kg. r, = (1 + 2r³)i +4r³k
10 s.
Calculate the following at 10 and r =
(a) The position of the center of mass, (b) the velocity of the center of mass, (c) the linear mo-
mentum, and (d) the kinetic energy of the system.
Transcribed Image Text:8.2. Consider the following three particles: m₁ = 1 kg. r, = 21²³1 + 3 + 4k m₂ = 3 kg. r₂ = (1 + r) + (2 + 50)) m, = 5 kg. r, = (1 + 2r³)i +4r³k 10 s. Calculate the following at 10 and r = (a) The position of the center of mass, (b) the velocity of the center of mass, (c) the linear mo- mentum, and (d) the kinetic energy of the system.
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