A particle starts from rest and moves in a circle with a radius of 1.00 m. Its angular position is given by the equation: 0 3.0t 1.0t² +2.0t³ where tis in seconds and the angle is in radians. First, determine the instantaneous angular velocity and angular acceleration at 2.00 seconds. Second, determine the tangential acceleration and radial acceleration at that time. Paragraph BI Uv Αγ V EE + v ...

College Physics
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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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A particle starts from rest and moves in a circle with a radius of 1 m. Its angular position is given by the equation ø = 3.0t -1.0t^2 +2.0t^3 where t is in seconds and the angle is in radians. First, determine the instantaneous angular velocity and angular acceleration at 2.00 seconds. Second, determine the tangential acceleration and radial acceleration at that time.
A particle starts from rest and moves in a circle with a radius of 1.00 m. Its angular
position is given by the equation:
0
www.
3. Ot 1.0t² + 2.0t3
where tis in seconds and the angle is in radians.
First, determine the instantaneous angular velocity and angular acceleration at 2.00
seconds.
Second, determine the tangential acceleration and radial acceleration at that time.
Paragraph
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BI U A,
V
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Transcribed Image Text:A particle starts from rest and moves in a circle with a radius of 1.00 m. Its angular position is given by the equation: 0 www. 3. Ot 1.0t² + 2.0t3 where tis in seconds and the angle is in radians. First, determine the instantaneous angular velocity and angular acceleration at 2.00 seconds. Second, determine the tangential acceleration and radial acceleration at that time. Paragraph - V BI U A, V く聞く ▶ || 0⁰ + v
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