A particle travels along æyz – plane with an equation of motion given by v (t) = 9.20 t² m i – 6.20 t³ m + 4.10 tª m k. a. Determine the magnitude of the average velocity of the particle from t = 2.00 s to t – 5.00s . b. Determine the magnitude of the position vector when t = 4.00s .

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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A particle travels along xyz – plane with an equation of motion given by v (t) = 9.20 t2 m i – 6.20 t3 m j + 4.10 t4 m k.
g3
a. Determine the magnitude of the average velocity of the particle from t = 2.00 s to t – 5.00s .
b. Determine the magnitude of the position vector when t = 4.00s .
Transcribed Image Text:A particle travels along xyz – plane with an equation of motion given by v (t) = 9.20 t2 m i – 6.20 t3 m j + 4.10 t4 m k. g3 a. Determine the magnitude of the average velocity of the particle from t = 2.00 s to t – 5.00s . b. Determine the magnitude of the position vector when t = 4.00s .
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