At time t = 0, a particle is located at the point (4,3,3). It travels in a straight line to the point (2,2,8), has speed 5 at (4,3,3) and constant acceleration - 2i-j+5k. Find an equation for the position vector r(t) of the particle at time t The equation for the position vector r(t) of the particle at time t is r(t) = (☐ ¡+j+Œ k. (Type exact answers, using radicals as needed.)

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 3P: A particle initially located at the origin has an acceleration of a=3.00jm/s2 and an initial...
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At time t = 0, a particle is located at the point (4,3,3). It travels in a straight line to the point (2,2,8), has speed 5 at (4,3,3) and constant acceleration - 2i-j+5k. Find an equation for
the position vector r(t) of the particle at time t.
The equation for the position vector r(t) of the particle at time t is r(t) = (☐ i+Œ j+Œ k.
(Type exact answers, using radicals as needed.)
Transcribed Image Text:At time t = 0, a particle is located at the point (4,3,3). It travels in a straight line to the point (2,2,8), has speed 5 at (4,3,3) and constant acceleration - 2i-j+5k. Find an equation for the position vector r(t) of the particle at time t. The equation for the position vector r(t) of the particle at time t is r(t) = (☐ i+Œ j+Œ k. (Type exact answers, using radicals as needed.)
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