A 1.10-kg particle moves in the xy plane with a velocity of v = (4.30 î - 3.50 j) m/s. Determine the angular momentum of the particle about the origin when its position vector is r = (1.50 î + 2.20 j) m. î + 0 j + 13.85 Review the equation for the angular momentum in terms of components of the vectors, k) ka - m2/s

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A 1.10-kg particle moves in the xy plane with a velocity of v = (4.30 î –- 3.50 ĵ) m/s. Determine the angular momentum of the particle about the origin when its position vector is ŕ = (1.5o î + 2.20 ĵ)
m.
(0
î + 0
j + 13.85
Review the equation for the angular momentum in terms of components of the vectors. k) kg · mʻ/s
Transcribed Image Text:A 1.10-kg particle moves in the xy plane with a velocity of v = (4.30 î –- 3.50 ĵ) m/s. Determine the angular momentum of the particle about the origin when its position vector is ŕ = (1.5o î + 2.20 ĵ) m. (0 î + 0 j + 13.85 Review the equation for the angular momentum in terms of components of the vectors. k) kg · mʻ/s
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