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      C. 0 . D. 10 m/s2 down . E. 20 m/s2 down . 6. A car starts from rest and accelerates at 0.80 m/s2 for 10 s. It then continues at constant velocity. Twenty seconds after it began to move, the car has: A. velocity 8.0 m/s and has traveled 40 m. B. velocity 8.0 m/s and has traveled 80 m. C. velocity 8.0 …

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    • [DOC File]Physics 11 - Constant Acceleration Worksheet

      https://info.5y1.org/0-down-on-car_1_1945c2.html

      A car slows from 22 m/s to 3.0 m/s with a constant acceleration of -2.1 m/s2. How long does it require? (9.0 s) ... A car is initially sliding backwards down a hill at -25 km/h. The driver guns the car. By the time the car’s velocity is 35 km/h, it is 3.2 m from its starting point. Assuming the car was uniformly accelerated, find the ...

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    • [DOC File]Uplift Education / Overview

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      For the system of Problem 10.1, determine the time needed for the load at B to reach a speed of 8 m/s, starting from rest, if the cable as drawn into the motor with an acceleration of 0.2 m/s2. Ans: t = 160 s. 10.3 . If the end of the cable at A is pulled down with a speed …

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    • POP4e: Ch. 1 Problems

      13. A car travelling at 60.0 m/s forward slows down to 40 m/s forward. in 2.5 seconds. Assuming that this acceleration continues, how many seconds would it take the car to slow to (a) 12 m/s forward? (b) rest? 14. A toy friction car is propelled forward from rest by a girl’s hand which causes it to reach a forward velocity of 3.5 m/s in 0.40 ...

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    • [DOCX File]Physics 11 – Unit 3: Acceleration: Practice

      https://info.5y1.org/0-down-on-car_1_e889d9.html

      (II) Determine the stopping distances for a car with an initial speed of and human reaction time of 1.0 s, for an acceleration (a) (b) 29. (III) Show that the equation for the stopping distance of a car is where is the initial speed of the car, is the driver’s reaction time, and a is the constant acceleration (and is negative).

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    • [DOC File]EGR 280 – Mechanics Problem Set 1

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      A mechanic pushes a 2.50 X 103-kg car from rest to a speed of v, doing 5 000 J of work in the process. During this time, the car moves 25.0 m. Neglecting friction between car and road, find the horizontal force exerted on the car. a) 100 N. b) 150 N. c) 200 N. d) 250 N (a) The work–energy theorem, , …

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