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The rotor of an electric motor rotates at the constant rate ω1 =1900 rpm. Determine the angular acceleration of the rotor as the motor is rotated about the y axis with a constant angular velocity ω2 of 6 rpm counterclockwise when viewed from the positive y axis.

User Michaelo
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1 Answer

4 votes

Answer:

Angular acceleration =
(19\pi^2)/(3)Ф°

Step-by-step explanation:

  • Angular acceleration is rate of change of angular velocity vector

Here angular velocity is combination of two types of rotation

Using cylindrical coordinates( r°=radial unit vector;Ф°=angular unit vector)

ω=1900*
(2\pi )/(60) r° +6 z

Δω= Δ(
(95\pi )/(3) r°) +Δ (6z)

as Δr =(ΔФ) Ф° ; Δz=0

Δω=
(95\pi )/(3) (ΔФ) Ф°

Δω/Δt =
(95\pi )/(3) (ΔФ/Δt)Ф°

as we know ΔФ/Δt is about positive y axis

ΔФ/Δt =6rpm =6*
(2\pi )/(60) =
(\pi )/(5)

Δω/Δt = (
(95\pi )/(3))(
(\pi )/(5))Ф°

angular acceleration =
(19\pi^2)/(3)Ф°

The rotor of an electric motor rotates at the constant rate ω1 =1900 rpm. Determine-example-1
User Shivam Yadav
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8.1k points