1. A 4.0 kg particle is moving at a velocity v = V2î – V2ĵ + 3k m/s. (a) (b) What is the particle's kinetic energy at this moment? What is the net work done on the particle if its velocity changes to V = - V2i + 3k m/s? (c) that this force is a type of friction). Will the particle's kinetic energy become zero under the influence of this force? Explain your answer. Assume that a force in the xy plane acts on the particle to slow it down (imagine

Principles of Physics: A Calculus-Based Text
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Chapter7: Conservation Of Energy
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1. A 4.0 kg particle is moving at a velocity v = V2î – V2ĵ + 3k m/s.
(a)
(b)
What is the particle's kinetic energy at this moment?
What is the net work done on the particle if its velocity changes to
- V2î + 3k m/s?
V = -
Assume that a force in the x y plane acts on the particle to slow it down (imagine
(c)
that this force is a type of friction). Will the particle's kinetic energy become zero under the
influence of this force? Explain your answer.
Transcribed Image Text:1. A 4.0 kg particle is moving at a velocity v = V2î – V2ĵ + 3k m/s. (a) (b) What is the particle's kinetic energy at this moment? What is the net work done on the particle if its velocity changes to - V2î + 3k m/s? V = - Assume that a force in the x y plane acts on the particle to slow it down (imagine (c) that this force is a type of friction). Will the particle's kinetic energy become zero under the influence of this force? Explain your answer.
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