roportionality constant b = 50 N-sec/m, determine the equation of motion of the object. When will the object strike the ground? [Hint: Here the exponentia pproximate the time t when the object strikes the ground.] Assume that the acceleration due to gravity is 9.81 m/sec". et x(t) represent the distance the object has fallen in t seconds. Determine the equation of motion of the object.

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roportionality constant b = 50 N-sec/m, determine the equation of motion of the object. When will the object strike the ground? [Hint: Here the exponentia
pproximate the time t when the object strikes the ground.] Assume that the acceleration due to gravity is 9.81 m/sec".
et x(t) represent the distance the object has fallen in t seconds. Determine the equation of motion of the object.
Transcribed Image Text:roportionality constant b = 50 N-sec/m, determine the equation of motion of the object. When will the object strike the ground? [Hint: Here the exponentia pproximate the time t when the object strikes the ground.] Assume that the acceleration due to gravity is 9.81 m/sec". et x(t) represent the distance the object has fallen in t seconds. Determine the equation of motion of the object.
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Given that mass m = 600 kg , and drop height is h =1500 m.

The velocity under drag force is given as,

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