Given a system that has an initial velocity 10 [m/s], at a position of x = 0 [m], determine the time when an object is at a position of x = 40 [m] if its acceleration can be approximated as: a(x) = 12 [2] +0.05[1/s²]x Note that: 1 [[√x²+bx+c]dx = √n [2ax+b+2√/a(ax² +bx+c)] +1 = In

Elements Of Electromagnetics
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Given a system that has an initial velocity 10 [m/s], at a position of x = 0 [m], determine the time when
an object is at a position of x = 40 [m] if its acceleration can be approximated as:
Note that:
S[√ax ² + b
m
a(x) = 12 [2] +0.05[1/s²]x
+bx+c
dx
=
= ln [2ax + b + 2√a(ax² + bx + c)
va
Transcribed Image Text:Given a system that has an initial velocity 10 [m/s], at a position of x = 0 [m], determine the time when an object is at a position of x = 40 [m] if its acceleration can be approximated as: Note that: S[√ax ² + b m a(x) = 12 [2] +0.05[1/s²]x +bx+c dx = = ln [2ax + b + 2√a(ax² + bx + c) va
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