2.17 • CALC A car's velocity as a function of time is given by v,(t) = a + ßi², where a = 3.00 m/s and B = 0.100 m/s³. (a) Calculate the average acceleration for the time interval t = 0 to t = 5.00 s. (b) Calculate the instantaneous acceleration for t = 0 and t = 5.00 s. (c) Draw vx-t and a-t graphs for the car's = 0 and t = 5.00 s. motion between t

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Chapter6: Energy Of A System
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2.17 • CALC A car's velocity as a function of time is given by
v,(t) = a + ßi², where a = 3.00 m/s and B = 0.100 m/s³.
(a) Calculate the average acceleration for the time interval t = 0
to t = 5.00 s. (b) Calculate the instantaneous acceleration for
t = 0 and t = 5.00 s. (c) Draw vx-t and a-t graphs for the car's
= 0 and t = 5.00 s.
motion between t
Transcribed Image Text:2.17 • CALC A car's velocity as a function of time is given by v,(t) = a + ßi², where a = 3.00 m/s and B = 0.100 m/s³. (a) Calculate the average acceleration for the time interval t = 0 to t = 5.00 s. (b) Calculate the instantaneous acceleration for t = 0 and t = 5.00 s. (c) Draw vx-t and a-t graphs for the car's = 0 and t = 5.00 s. motion between t
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