Solving the Oscillation of Mass-Spring System

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bon
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Homework Statement



Mass m attached to spring with spring constant k=Am. It feels a resistive force magnitude Bmv where v is the speed. and A, B are constants such that 4A > B^2

What is the fractional change in amplitude of oscillation in one complete oscillation?


Homework Equations





The Attempt at a Solution



Ok so I've written down the DE:

x'' + Bx' - Ax = 0 and solved..but this gives be Ce^-Lt + De^-L't where C, D, L and L' are constants...

1) i don't see how this oscillates... 2) how do i work out fractional change in amplitude of oscillation?
 
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Hi bon! :smile:

(try using the X2 tag just above the Reply box :wink:)
bon said:
Mass m attached to spring with spring constant k=Am. It feels a resistive force magnitude Bmv where v is the speed. and A, B are constants such that 4A > B^2

x'' + Bx' - Ax = 0

Nooo :redface:
 
Why not? I thought this was a direct consequence on NII (and cancelling the m)
 
ok i see thanks i can now solve the eqn but how do i find fractional change in amplitude of oscillation
 
not to worry - i get it now. thanks