In this problem you will determine the average velocity of a moving object from the graph of its position x(t)x(t) as a function of time ttt. A traveling object might move at different speeds and in different directions during an interval of time, but if we ask at what constant velocity the object would have to travel to achieve the same displacement over the given time interval, that is what we call the object's average velocity. We will use the notation vave[t1,t2]vave[t1,t2] to indicate average velocity over the time interval from t1 to t2. For instance, vave[1,3]vave[1,3] is the average velocity over the time interval from t=1 to t=3.   find V(ave) [0,3]

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter1: Units And Measurement
Section: Chapter Questions
Problem 81AP: Consider the equation s=s0+v0t+a0t2/2+j0t3/6+s0t4/24+ct5/120 , were s is a length and t is a time....
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In this problem you will determine the average velocity of a moving object from the graph of its position x(t)x(t) as a function of time ttt. A traveling object might move at different speeds and in different directions during an interval of time, but if we ask at what constant velocity the object would have to travel to achieve the same displacement over the given time interval, that is what we call the object's average velocity. We will use the notation vave[t1,t2]vave[t1,t2] to indicate average velocity over the time interval from t1 to t2. For instance, vave[1,3]vave[1,3] is the average velocity over the time interval from t=1 to t=3.

 

find V(ave) [0,3]

60어
40-
20-
3
4
t (seconds)
x (meters)
Transcribed Image Text:60어 40- 20- 3 4 t (seconds) x (meters)
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