A particle moves in xy plane with a constant acceleration. At t = 0 the particle at = (4.0m)i + (3.0m)j, with velocity Vo. Att = 2.0s the particle has moved to r = (10.0m)i – (2.0m)j and its velocity has changed to %3D v; = (5.0")i- (6.0")7. a) Find the initial velocity of the particle vo. b) What is the acceleration of the particle a? c) What is the velocity of the particle as a function of time i(t)? d) What is the position vector of the particle as a function of time 7(t)?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 6P: At t = 0, a particle moving in the xy plane with constant acceleration has a velocity of...
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A particle moves in xy plane with a constant acceleration.
At t = 0 the particle at r
= (4.0m)ỉ + (3.0m)j, with velocity Vo.
At t = 2.0s the particle has moved to r = (10.0m)ï – (2.0m)j and its velocity has changed to
v; = (5.0")i- (6.0")j.
a) Find the initial velocity of the particle vo.
b) What is the acceleration of the particle ã?
c) What is the velocity of the particle as a function of time i(t)?
d) What is the position vector of the particle as a function of time 7(t)?
Transcribed Image Text:A particle moves in xy plane with a constant acceleration. At t = 0 the particle at r = (4.0m)ỉ + (3.0m)j, with velocity Vo. At t = 2.0s the particle has moved to r = (10.0m)ï – (2.0m)j and its velocity has changed to v; = (5.0")i- (6.0")j. a) Find the initial velocity of the particle vo. b) What is the acceleration of the particle ã? c) What is the velocity of the particle as a function of time i(t)? d) What is the position vector of the particle as a function of time 7(t)?
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