A particle's position is given as [(2.00 + 0.500 sin(0.4004))i + (3.00 + 0.500 sin(0.4004))5] +2.001²k) m, where the angles in the equation are given in radians, the time in seconds and the position in meters. (a) Determine the position of the particle at t = 0. (b) Determine the speed of the particle at t = 0.200 s. (c) Determine the average acceleration of the particle between t= 0.200 s and t = 0.400 s.
A particle's position is given as [(2.00 + 0.500 sin(0.4004))i + (3.00 + 0.500 sin(0.4004))5] +2.001²k) m, where the angles in the equation are given in radians, the time in seconds and the position in meters. (a) Determine the position of the particle at t = 0. (b) Determine the speed of the particle at t = 0.200 s. (c) Determine the average acceleration of the particle between t= 0.200 s and t = 0.400 s.
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter6: Motion In Two Dimensions
Section6.3: Relative Velocity
Problem 27PP
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