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ivolga24 [154]
3 years ago
8

The shaft of a motor has an angular displacement θ that is a function of time given by the equation: θ(t) = 4.40 t 3 rad/s3 + 1.

40 t2 rad/s2 . At time t = 0.00 s the wheel is at rest and is oriented at θ = 0.00 rad. a) Derive the equation that specifies the angular velocity of the shaft as a function of time. b) Derive the equation that specifies the angular acceleration as a function of time.
Physics
1 answer:
Deffense [45]3 years ago
3 0

Answer:

a) \omega = 13.2t^2\frac{rad}{s^3}+2.80t\frac{rad}{s^2}

b) \alpha=26.4t\frac{rad}{s^3}+2.80\frac{rad}{s^2}

Explanation:

You have that the angular displacement is given by:

\theta=4.40t^3\frac{rad}{s^3}+1.40t^2\frac{rad}{s^2}

a) the angular velocity is given by the derivative in time, of the angular displacement, that is:

\omega=\frac{d\theta}{dt}=\frac{d}{dt}[4.40 t^3 rad/s^3 + 1.40 t^2 rad/s^2]\\\\\omega=\frac{d\theta}{dt}=13.2t^2\frac{rad}{s^3}+2.80t\frac{rad}{s^2}

b) the angular acceleration is the derivative, in time, of the angular velocity:

\alpha=\frac{d\omega}{dt}=\frac{d}{dt}[13.2t^2\frac{rad}{s^3}+2.80t\frac{rad}{s^2}]\\\\\alpha=26.4t\frac{rad}{s^3}+2.80\frac{rad}{s^2}

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