Q10. The platform is rotating about the vertical axis such that at any instant its angular position is 0 (Ci t12) rad, where C is a constant and tis time in seconds. A ball rolls outward along the radial groove so that its position is r = (C2 · t) m, where C2 is another constant and tis again time in seconds. If the constants C1 4.0 and C2 = 0.09, determine the magnitude of the acceleration %3D of the ball (in m/s2) when t= 2.0 s. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. Your Answer: Answer

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q10. The platform is rotating about the vertical axis such that at any instant its
angular position is 0
(Ci
t12) rad, where C is a constant and tis time in
seconds. A ball rolls outward along the radial groove so that its position is
r =
(C2 · t° ) m, where C2 is another constant and tis again time in seconds. If
the constants C1
4.0 and C2 = 0.09, determine the magnitude of the acceleration
%3D
of the ball (in m/s2) when t= 2.0 s. Please pay attention: the numbers may change
since they are randomized. Your answer must include 2 places after the decimal
point.
Your Answer:
Answer
Transcribed Image Text:Q10. The platform is rotating about the vertical axis such that at any instant its angular position is 0 (Ci t12) rad, where C is a constant and tis time in seconds. A ball rolls outward along the radial groove so that its position is r = (C2 · t° ) m, where C2 is another constant and tis again time in seconds. If the constants C1 4.0 and C2 = 0.09, determine the magnitude of the acceleration %3D of the ball (in m/s2) when t= 2.0 s. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. Your Answer: Answer
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