The potential energy U in Joule of a particle of mass is 4kg moving in the x-y plane is given by the formula U = 6x + 8y + 5. Here x and y are coordinates of the particle in meter. The particle is at (3,5) at t = 0 and v 0 = 0. i and jare the unit vectors across x and y axis respectively. a. Find the force acting on the particle b. Find the kinetic energy of the particle at time t c. Find the time at which it crosses x axis and y axis and Kinetic Energy at that points. d. Find the coordinates of the particle as a function of time t. e. Find the Potential energy of the particle at time t = 3s.

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter9: Energy In Nonisolated Systems
Section: Chapter Questions
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The potential energy U in Joule of a particle of mass is 4kg moving in the x-y plane is given
by the formula U = 6x + 8y + 5. Here x and y are coordinates of the particle in meter.
The particle is at (3,5) at t = 0 and v 0 = 0. i and jare the unit vectors across x and y axis
respectively.
a. Find the force acting on the particle
b. Find the kinetic energy of the particle at time t
c. Find the time at which it crosses x axis and y axis and Kinetic Energy at that points.
d. Find the coordinates of the particle as a function of time t.
e. Find the Potential energy of the particle at time t = 3s.

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