4. A particle moving along a straight line has an acceleration given by a = -8 sinx, where a is acceler- ation in m/s² and x is position in meters. The particle starts from the origin with an initial velocity vo 4 m/s. Calculate the farthest position(s) xm traveled by the particle and the velocity of the particle at position x = xm. (xm= ±1.57 m, v±3.36 m/s)

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This is Dynamics with the use of differential equations
4. A particle moving along a straight line has an acceleration given by a = -8 sinx, where a is acceler-
ation in m/s² and x is position in meters. The particle starts from the origin with an initial velocity
vo 4 m/s. Calculate the farthest position(s) xm traveled by the particle and the velocity of the
particle at position x = xm. (xm= ±1.57 m, v±3.36 m/s)
Transcribed Image Text:4. A particle moving along a straight line has an acceleration given by a = -8 sinx, where a is acceler- ation in m/s² and x is position in meters. The particle starts from the origin with an initial velocity vo 4 m/s. Calculate the farthest position(s) xm traveled by the particle and the velocity of the particle at position x = xm. (xm= ±1.57 m, v±3.36 m/s)
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