Two masses constrained to move in a horizontal plane collide. Given initially that m, = 7 kg and m2 = 3 kg, ö, = 2i + 35 and v, = 4i + 5j. Find the velocity vector Veom of the center of mass. a) Veom = 0.67+ 1.6j b) Veom = 1.67 + 2.6j c) Veom = 2.67 + 3.6j d) None of the above

Principles of Physics: A Calculus-Based Text
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Chapter8: Momentum And Collisions
Section: Chapter Questions
Problem 39P: A 2.00-kg particle has a velocity (2.00i3.00j)m/s, and a 3.00-kg particle has a velocity...
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Two masses constrained to move in a horizontal plane collide. Given initially that m, = 7 kg and
m2 = 3 kg, ö, = 2i + 3j and i
Find the velocity vector Veom of the center of mass.
döz = 4i + 5j.
a) Veom = 0.67 + 1.6j
b) Veom = 1.67 + 2.6j
c) Veom = 2.67 + 3.6j
d) None of the above
Transcribed Image Text:Two masses constrained to move in a horizontal plane collide. Given initially that m, = 7 kg and m2 = 3 kg, ö, = 2i + 3j and i Find the velocity vector Veom of the center of mass. döz = 4i + 5j. a) Veom = 0.67 + 1.6j b) Veom = 1.67 + 2.6j c) Veom = 2.67 + 3.6j d) None of the above
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