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A common graphical representation of motion along a straight line is the v vs. t graph, that is, the graph of (instantaneous) velocity as a

A common graphical representation of motion along a straight line is the

v

vs.

t

graph, that is, the graph of (instantaneous) velocity as a function of time. In this graph, time

t

is plotted on the horizontal axis and velocity

v

on the vertical axis. Note that by definition, velocity and acceleration are vector quantities. In straight-line motion, however, these vectors have only a single nonzero component in the direction of motion. Thus, in this problem, we will call

v

the velocity and

a

the acceleration, even though they are really the components of the velocity and acceleration vectors in the direction of motion, respectively.\ What is the displacement

\\\\Delta x

of the particle?\ Express your answer in meters.\ View Available Hint(s)\

\\\\Delta x=

\ Part C\ What is the average acceleration

a_(av)

of the particle over the fir\ Express your answer in meters per second per second.\ View Available Hint(s)\

a_(av)=
image text in transcribed
A common graphical representation of motion along a straight line is the v vs. t graph, that is, the graph of (instantaneous) velocity as a function of time. In this graph, time t is plotted on the horizontal axis and velocity v on the vertical axis. Note that by definition, velocity and acceleration are vector quantities. In straight-line motion, however, these vectors have only a single nonzero component in the direction of motion. Thus, in this problem, we will call v the velocity and a the acceleration, even though they are really the components of the velocity and acceleration vectors in the direction of motion, respectively. What is the displacement x of the particle? Express your answer in meters. View Available Hint(s) Part C What is the average acceleration aav of the particle over the fir Express your answer in meters per second per second. View Available Hint(s) Figure 1 of 1 A common graphical representation of motion along a straight line is the v vs. t graph, that is, the graph of (instantaneous) velocity as a function of time. In this graph, time t is plotted on the horizontal axis and velocity v on the vertical axis. Note that by definition, velocity and acceleration are vector quantities. In straight-line motion, however, these vectors have only a single nonzero component in the direction of motion. Thus, in this problem, we will call v the velocity and a the acceleration, even though they are really the components of the velocity and acceleration vectors in the direction of motion, respectively. What is the displacement x of the particle? Express your answer in meters. View Available Hint(s) Part C What is the average acceleration aav of the particle over the fir Express your answer in meters per second per second. View Available Hint(s) Figure 1 of 1

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