13. When a 1984 Alfa Romeo Spider sports car accelerates in the x-direction at the maximum possible rate, its motion during the first 20. seconds is extremely well modeled by the simple equation v, = (60 m of the car's velocity increases linearly with time. What is its acceleration after 3s, assuming that 2 2/s')t, where t is time in seconds and v, is in m/s. In other words, the square the car starts from rest att= 0 s?

College Physics
11th Edition
ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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13. When a 1984 Alfa Romeo Spider sports car accelerates in the x-direction at the maximum
possible rate, its motion during the first 20. seconds is extremely well modeled by the simple
equation v, = (60 m
of the car's velocity increases linearly with time. What is its acceleration after 3s, assuming that
2
2/s')t, where t is time in seconds and v, is in m/s. In other words, the square
the car starts from rest att= 0 s?
Transcribed Image Text:13. When a 1984 Alfa Romeo Spider sports car accelerates in the x-direction at the maximum possible rate, its motion during the first 20. seconds is extremely well modeled by the simple equation v, = (60 m of the car's velocity increases linearly with time. What is its acceleration after 3s, assuming that 2 2/s')t, where t is time in seconds and v, is in m/s. In other words, the square the car starts from rest att= 0 s?
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