The velocity of a particle moving in the x-y plane is given by (3.46i +7.64j) m/s at time t = 4.88 s. Its average acceleration during the next 0.030 s is (2.1i + 2.0j) m/s². Determine the velocity v of the particle at t = 4.910 s and the angle between the average- acceleration vector and the velocity vector at t = 4.910 s. Answers: V = (3.523 i+ 7.7 j) m/s 22.032

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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The velocity of a particle moving in the x-y plane is given by (3.46i +7.64j) m/s at time t = 4.88 s. Its average acceleration during the
next 0.030 s is (2.1i + 2.0j) m/s². Determine the velocity v of the particle at t = 4.910 s and the angle between the average-
acceleration vector and the velocity vector at t = 4.910 s.
Answers:
V = (3.523
7.7
j) m/s
0: = i 22.032
O
Transcribed Image Text:The velocity of a particle moving in the x-y plane is given by (3.46i +7.64j) m/s at time t = 4.88 s. Its average acceleration during the next 0.030 s is (2.1i + 2.0j) m/s². Determine the velocity v of the particle at t = 4.910 s and the angle between the average- acceleration vector and the velocity vector at t = 4.910 s. Answers: V = (3.523 7.7 j) m/s 0: = i 22.032 O
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