A particle of mass 1.30 kg is moving with velocity = (7.41 +5.6j) m/s. Find the angular momentum L relative to the origin when the particle is at = (2.0ĵ +4.2k) m. Enter your answers in indicated order separated by commas. Express your answer using two significant figures. ΜΕ ΑΣΦ Lx, Ly, Lx = Submit Request Answer Part B ? kg-m²/s At position ŕ a force of F = 4.3 NÎ is applied to the particle. Find the torque relative to the origin. Enter your answers in indicated order separated by commas. Express your answer using two significant figures. Tx, Ty, Tz = ΜΕ ΑΣΦ ? m-N

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Chapter9: Momentum And Its Conservation
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A particle of mass 1.30 kg is moving with velocity
(7.41 +5.6) m/s.
Part A
Find the angular momentum ₺ relative to the origin when the particle is at ŕ = (2.0ĵ +4.2k) m.
Enter your answers in indicated order separated by commas. Express your answer using two significant figures.
| ΑΣΦ
Lx, Ly, Lx =
Submit
Request Answer
?
kg-m²/s
Part B
At position ☛ a force of ☛ = 4.3 NÎ is applied to the particle. Find the torque relative to the origin.
Enter your answers in indicated order separated by commas. Express your answer using two significant figures.
Tx, Ty, Tz =
ΜΕ ΑΣΦ
?
m-N
Transcribed Image Text:A particle of mass 1.30 kg is moving with velocity (7.41 +5.6) m/s. Part A Find the angular momentum ₺ relative to the origin when the particle is at ŕ = (2.0ĵ +4.2k) m. Enter your answers in indicated order separated by commas. Express your answer using two significant figures. | ΑΣΦ Lx, Ly, Lx = Submit Request Answer ? kg-m²/s Part B At position ☛ a force of ☛ = 4.3 NÎ is applied to the particle. Find the torque relative to the origin. Enter your answers in indicated order separated by commas. Express your answer using two significant figures. Tx, Ty, Tz = ΜΕ ΑΣΦ ? m-N
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