Finding Acceleration of Falling Object: Newton's 2nd Law

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LukeEvans
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A body of mass m (kg) is falling vertically under gravity g m/s2 in a medium whose resistance to the speed of the body, v m/s, is proportional to vn (n positive).

If the body was released from rest and has terminal velocity, vt m/s, use Newton's 2nd law of motion to show that its acceleration, a m/s2, may be expressed as

a = g(1-(v/vt)n)

(4 Marks)


I would obviously like to attempt to solve this problem, but am unsure what the first step should be. Perhaps the resistive force will need to be deducted from the velocity... many thanks to anybody who looks.
 
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Hi LUke! :smile:

start by writing the first sentence as an equation …
LukeEvans said:
A body of mass m (kg) is falling vertically under gravity g m/s2 in a medium whose resistance to the speed of the body, v m/s, is proportional to vn (n positive).
 
A body of mass m (kg) is falling vertically under gravity g m/s2 in a medium whose resistance to the speed of the body, v m/s, is proportional to vn (n positive).

m = g - vn

would be an uneducated guess :-p
 
m = g - (v*vn)

possibly?
 
how about:

m = g * vn

or

m = g*(v+vn)
 
m = g - 3vn

I'll be honest I don't know where the 3 has come from.