2. A 1.50-kg particle moves in the xy plane with a velocity of y = (4.20i – 3.60j )m/ s. Determine the particle's angular momentum in of the particle about the origin in kg m²/s when its position vector is r= (1.50i + 220j )m. Sketch the situation, labeling the vectors. a. 6k b. 6k c. -11k d. -22 k e. +22k

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter11: Collisions
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2. A 1.50-kg particle moves in the xy plane with a velocity of y = (4.20i – 3.60j )m/ s. Determine the particle's
angular momentum in of the particle about the origin in kg m²/s when its position vector is r = (1.50i + 2.20j)m.
Sketch the situation, labeling the vectors.
a. 6k
b. -6k
c. -11k
d. -22 k
e. +22 k
Transcribed Image Text:2. A 1.50-kg particle moves in the xy plane with a velocity of y = (4.20i – 3.60j )m/ s. Determine the particle's angular momentum in of the particle about the origin in kg m²/s when its position vector is r = (1.50i + 2.20j)m. Sketch the situation, labeling the vectors. a. 6k b. -6k c. -11k d. -22 k e. +22 k
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