constant, the average the time t at the center of At. The equation Ax v = At gives the instantaneous velocity v at the center of time interval At. From the values of v as a function of time, we will determine the acceleration a. M₁ te equit T T M2 g Figure 1 ease choose 7 dots; the first dot is your starting point at t=0. Measured the pos ck that is uniformly accelerated for different masses, the position for the six from t=0.

Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter2: Representing Motion
Section: Chapter Questions
Problem 69A
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Draw free body diagram for Figure 1

constant, the average
the time t at the center of At. The equation
Ax
v = At
gives the instantaneous velocity v at the center of time interval At. From the
values of v as a function of time, we will determine the acceleration a.
M₁
te equit
T
T
M2
g
Figure 1
ease choose 7 dots; the first dot is your starting point at t=0. Measured the pos
ck that is uniformly accelerated for different masses, the position for the six
from t=0.
Transcribed Image Text:constant, the average the time t at the center of At. The equation Ax v = At gives the instantaneous velocity v at the center of time interval At. From the values of v as a function of time, we will determine the acceleration a. M₁ te equit T T M2 g Figure 1 ease choose 7 dots; the first dot is your starting point at t=0. Measured the pos ck that is uniformly accelerated for different masses, the position for the six from t=0.
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