00:02
From the information given, we can write the equation for position as x is equal to a cos omega -t, with a the amplitude being given as 0 .05 meters.
00:13
To get the velocity, we can differentiate this with respect to t.
00:18
And so the velocity, v, is equal to minus a omega sine omega -t.
00:28
And if we differentiate this once more, we get an expression for the acceleration.
00:34
A is equal to minus a omega squared cost omega t.
00:44
So now we have an expression for the velocity and for the acceleration.
00:49
Next, we can find omega, since we are given the frequency.
00:54
The frequency f is equal to 3 ,600 revs per minute.
01:03
And there are 60 seconds every minute.
01:05
So if we convert this to si units, we get that this is 60 every second, or 60 hertz...