There is a particle in space. It has a mass (m) of 50.0 g The position of the particle is given by the expression below: F 10.0t - 4.90 t² k - Where r is in meters and t is in seconds. find an expression for the following: 1. The linear momentum of the particle 2. The angular momentum of the particle relative to the origin. 3. The torque on the particle relative to the origin.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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There is a particle in space. It has a mass (m) of 50.0 g.
The position of the particle is given by the expression
below:
F 10.0t - 4.90 t² k
Where r is in meters and t is in seconds. find an
expression for the following:
1. The linear momentum of the particle
2. The angular momentum of the particle relative to
the origin.
3. The torque on the particle relative to the origin.
Transcribed Image Text:There is a particle in space. It has a mass (m) of 50.0 g. The position of the particle is given by the expression below: F 10.0t - 4.90 t² k Where r is in meters and t is in seconds. find an expression for the following: 1. The linear momentum of the particle 2. The angular momentum of the particle relative to the origin. 3. The torque on the particle relative to the origin.
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