FUNDAMENTALS OF PHYSICS - EXTENDED
FUNDAMENTALS OF PHYSICS - EXTENDED
12th Edition
ISBN: 9781119773511
Author: Halliday
Publisher: WILEY
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The velocity in ft/s of an object moving along a line is given byv = ƒ(t) on the interval 0 ≤ t ≤ 6 (see figure), where t ismeasured in seconds.a. Divide the interval [0, 6] into n = 3 subintervals, [0, 2], [2, 4],and [4, 6]. On each subinterval, assume the object moves at aconstant velocity equal to the value of v evaluated at the leftendpoint of the subinterval, and use these approximations toestimate the displacement of the object on [0, 6] b. Repeat part (a) for n = 6 subintervals
A car moves along a straight road. It moves at a speed of 50 km/hr for 4 minutes, then during the next 4 minutes it gradually speeds up to 100 km/hr, continues at this speed for 4 minutes, then takes 4 minutes to gradually slow to a complete stop. Make a sketch like the figures in Section 1.2 of your textbook, marking dots for the position along the road every minute.
Jane is driving down the road at 20.0 m/s looking for a house address. when she sees the house, she slams on her brakes. If her reaction time is 1.20s and her car deaccelerates at 3.50 m/s^2, how far past the point where she first saw the house did her car come to rest?     I feel like I need to use one of the 4 kinematics equations, but none seem to be giving me the correct answer when I plug in my numbers :(
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