Imp is made by leaning a track against a few textbooks. A cart is set on the track and rolls down the ramp. Below on the left is a picture of this setup. Below on the right| the position and time data of the cart moving down the ramp. Position from top of ramp (mm) Average time (s) 0.00 100 0.48 200 0.68 300 0.84 400 0.97 500 1.08 600 1.18 700 1.28 800 1.37 900 1.45 (a) Estimate the Distance of the cart at 0.76 seconds. Write your answer in centimeters 1000 1.53 (cm). (b) A car is travelling at 100 m. Calculate how far does the car travel in 140 minutes? (c) Sketch a Position-Time graph of this data. Plot the Position data in meters, and plot the Time data in seconds.

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter2: Representing Motion
Section: Chapter Questions
Problem 67A
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I really need help on Part (c). Thank you very much
A ramp is made by leaning a track against a few textbooks. A cart is set on the
track and rolls down the ramp. Below on the left is a picture of this setup. Below on the right
Question 1
e the position and time data of the cart moving down the ramp.
Position from top of
ramp (mm)
Average time
(s)
0.00
100
0.48
200
0.68
300
0.84
400
0.97
500
1.08
600
1.18
700
1.28
800
1.37
900
1.45
(a) Estimate the Distance of the cart at 0.76 seconds. Write your answer in centimeters
1000
1.53
(cm).
(b) A car is travelling at 100 km. Calculate how far does the car travel in 140 minutes?
(c) Sketch a Position-Time graph of this data. Plot the Position data in meters, and plot
the Time data in seconds.
Transcribed Image Text:A ramp is made by leaning a track against a few textbooks. A cart is set on the track and rolls down the ramp. Below on the left is a picture of this setup. Below on the right Question 1 e the position and time data of the cart moving down the ramp. Position from top of ramp (mm) Average time (s) 0.00 100 0.48 200 0.68 300 0.84 400 0.97 500 1.08 600 1.18 700 1.28 800 1.37 900 1.45 (a) Estimate the Distance of the cart at 0.76 seconds. Write your answer in centimeters 1000 1.53 (cm). (b) A car is travelling at 100 km. Calculate how far does the car travel in 140 minutes? (c) Sketch a Position-Time graph of this data. Plot the Position data in meters, and plot the Time data in seconds.
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