If the vibration at the boundaries of the piston of the motor is given by: i. v(t) = at + b; a, b are constants, you may choose any integer value not equal to zero for any of them. v(t) = te(-t). v(t) = 5sin(2wt) cos(4wt) find the average and rms vibration for each case: ii. iii. 1 Vavg v(t)dt T
If the vibration at the boundaries of the piston of the motor is given by: i. v(t) = at + b; a, b are constants, you may choose any integer value not equal to zero for any of them. v(t) = te(-t). v(t) = 5sin(2wt) cos(4wt) find the average and rms vibration for each case: ii. iii. 1 Vavg v(t)dt T
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answer (ii) and (iii)
![T
E v²(t)dt
VRMS
T](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3c426995-fc3b-4a87-9159-e65b0b436848%2F652b84ba-048f-43dd-b925-a1bdf8f58387%2Fs6eksow_processed.png&w=3840&q=75)
Transcribed Image Text:T
E v²(t)dt
VRMS
T
![b. If the vibration at the boundaries of the piston of the motor is
given by:
v(t)
value not equal to zero for any of them.
v(t) = te(-t).
i.
= at + b; a, b are constants, you may choose any integer
ii.
iii. v(t) = 5sin(2wt) cos(4wt)
find the average and rms vibration for each case:
-T
Vavg
T
0.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3c426995-fc3b-4a87-9159-e65b0b436848%2F652b84ba-048f-43dd-b925-a1bdf8f58387%2Fo2w0haa_processed.png&w=3840&q=75)
Transcribed Image Text:b. If the vibration at the boundaries of the piston of the motor is
given by:
v(t)
value not equal to zero for any of them.
v(t) = te(-t).
i.
= at + b; a, b are constants, you may choose any integer
ii.
iii. v(t) = 5sin(2wt) cos(4wt)
find the average and rms vibration for each case:
-T
Vavg
T
0.
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