Damped Oscillator: Finding Work Rate & Average Power

T is the period of oscillation. In this case, T = \frac{2\pi}{w}.Plugging in F(t) = F_0*cos(wt) and v = \frac{dx}{dt} = -Aw*sin(wt-delta), we get<P> = \frac{1}{T} \int_0^T F_0*cos(wt) * (-Aw*sin(wt-delta)) dt= -\frac{A*F_0}{T} \int_0^T cos(wt) * sin(wt-delta) dt= -\frac{A*F_0}{T} \int_0^T \frac{
  • #1
DanaBug28
3
0
I am really struggling with this question...

Question: Consider a damped oscillator, with natural frequency w_0 (omega_0) and damping constant B (beta) both fixed, that is driven by a force F(t)= F_0*cos(wt). Find the rate P(t) at which F(t) does work and show that the average < P > over any number of complete cycles is mBw^2*A^2.

any help would be amazing!
 
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  • #2
I think the rules here stipulate that you need to show some of your own work before you can get specific help on homework problems.
 
  • #3
work

F(t)=m*f_0*cos(wt) in general
long term motion x(t)=A*cos(wt-delta)
delta= arctan((2Bw)/(w_0^2-w^2))
A^2= (f_0^2)/((w_0^2-w^2)^2+4*B^2*w^2)

< P >=mBw^2*A^2
= m*f_0*cos(wt)*distance

mBw^2*A^2 = mBw^2*(f_0^2)/((w_0^2-w^2)^2+4*B^2*w^2) = m*f_0*cos(wt)*distance

cancel stuff...

B*w^2*(f_0)/((w_0^2-w^2)^2+4*B^2*w^2) = cos(wt)*distance

uh...help? :rolleyes:
 
  • #4
To calculuate the average power over a period you need to evaluate the integral

[tex]<P> = \frac {1}{T} \int_0^T F v dt[/tex]
 

Related to Damped Oscillator: Finding Work Rate & Average Power

What is a damped oscillator?

A damped oscillator is a system that experiences a force that opposes its oscillatory motion, causing it to gradually lose energy and come to rest.

What is work rate?

Work rate, also known as power, is the rate at which work is done or energy is transferred. It is measured in watts (W) or horsepower (hp).

How do you find the work rate of a damped oscillator?

The work rate of a damped oscillator can be found by multiplying the force acting on the oscillator by its velocity.

What is average power?

Average power is the average rate at which work is done or energy is transferred over a period of time. It is calculated by dividing the total work done by the time taken.

How do you calculate the average power of a damped oscillator?

The average power of a damped oscillator can be calculated by dividing the total work done (force x displacement) by the time taken for the oscillations to occur.

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