Mass of cart - m 0.514 kg Trial Initial Final Change in Impulse Duration Impulse Average Force Velocity Velocity momentum Vi Vf Др At 1 Band (m/s) (m/s) (kg-m /s) (N) (s) (N's) 1 -0.706 0.529 6.481 0.102 2 -0.815 0.634 6.923 0.115

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
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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I need help answering all the questions. 1.    In each trial, use the mass of the cart and velocities to calculate the change in momentum.     In each trial, use the force and time to calculate the impulse.  2.    Calculate the percent difference between the change in momentum and the impulse. Take the difference divided by the average times 100%. How close are your values? Does your data support the impulse-momentum theorem?  3.    When you used two rubber bands, did you tie them end-to-end or side-by-side? What effect did this have on the time of the impulse? What affect did this have on the size of the force? What is a general rule about force and time from these observations? 
2 Bands
-0.714
0.551
3.264
0.192
2
-0.798
0.612
3.544
0.218
Transcribed Image Text:2 Bands -0.714 0.551 3.264 0.192 2 -0.798 0.612 3.544 0.218
DATA TΑBLE
Mass of cart - m
0.514 kg
Final
Change in
Impulse
Duration
Trial
Initial
Average
Force
Impulse
Velocity
Velocity
momentum
J
Vi
Vf
Ap
F
At
1 Band
(m/s)
(m/s)
(kg'm /s)
(N)
(s)
(N's)
1
-0.706
0.529
6.481
0.102
2
-0.815
0.634
6.923
0.115
Transcribed Image Text:DATA TΑBLE Mass of cart - m 0.514 kg Final Change in Impulse Duration Trial Initial Average Force Impulse Velocity Velocity momentum J Vi Vf Ap F At 1 Band (m/s) (m/s) (kg'm /s) (N) (s) (N's) 1 -0.706 0.529 6.481 0.102 2 -0.815 0.634 6.923 0.115
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