StephenPrivitera
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For forced oscillations we have
\frac {d^2x} {dt^2} = -\omega_N^2x+\frac {F_0} {m} cos\omega_Ft
The solution is
x(t)=\frac {F_0} {m(\omega_N^2-\omega_F^2)}cos\omega_Ft
This doesn't seem to reduce to oscillations where F0=0. Shouldn't it?
\frac {d^2x} {dt^2} = -\omega_N^2x+\frac {F_0} {m} cos\omega_Ft
The solution is
x(t)=\frac {F_0} {m(\omega_N^2-\omega_F^2)}cos\omega_Ft
This doesn't seem to reduce to oscillations where F0=0. Shouldn't it?