The angular acceleration of a wheel is α = 8.0t4 – 8.0t2, with α in radians per second-squared and t in seconds. At time t = 0, the wheel has an angular velocity of +3 rad/s and an angular position of +4 rad. Write expressions for (a) the angular velocity (rad/s) and (b) the angular position (rad) as functions of time (s).

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Chapter1: Units, Trigonometry. And Vectors
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The angular acceleration of a wheel is α = 8.0t4 – 8.0t2, with α in radians per second-squared and t in seconds. At time t = 0, the wheel has an angular velocity of +3 rad/s and an angular position of +4 rad. Write expressions for (a) the angular velocity (rad/s) and (b) the angular position (rad) as functions of time (s).

The angular acceleration of a wheel is a = 8.0t4 - 8.0t2, with a in radians per second-squared andtin seconds. At time t = 0, the wheel
has an angular velocity of +3 rad/s and an angular position of +4 rad. Write expressions for (a) the angular velocity (rad/s) and (b) the
angular position (rad) as functions of time (s).
(a) Number
i
t5-
i
t3+ i
Units
(b) Number i
t6-
t+ i
i
t+
Units
Transcribed Image Text:The angular acceleration of a wheel is a = 8.0t4 - 8.0t2, with a in radians per second-squared andtin seconds. At time t = 0, the wheel has an angular velocity of +3 rad/s and an angular position of +4 rad. Write expressions for (a) the angular velocity (rad/s) and (b) the angular position (rad) as functions of time (s). (a) Number i t5- i t3+ i Units (b) Number i t6- t+ i i t+ Units
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