A crate slides along the x-axis and the figure below shows a record of its velocity as a function of time. Every gridline along the vertical axis corresponds to 2.50 m/s and each gridline along the horizontal axis corresponds to 3.50 s. (Enter your answers in m/s2. Indicate the direction with the signs of your answers. Note thatt = 0 at the intersection of the axes.) v, (m/s) t (s) (a) Determine the average acceleration of the crate in the time interval t = 0 to t = 17.5 s. m/s2 (b) Determine the average acceleration of the crate in the time interval t = 17.5 s to t = 52.5 s. 1.5 X m/s? (c) Determine the average acceleration of the crate in the time interval t = 0 to t = 70.0 s. x m/s?

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Chapter1: Units, Trigonometry. And Vectors
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A crate slides along the x-axis and the figure below shows a record of its velocity as a function of time. Every gridline along the
vertical axis corresponds to 2.50 m/s and each gridline along the horizontal axis corresponds to 3.50 s. (Enter your answers in
m/s-. Indicate the direction with the signs of your answers. Note that t = 0 at the intersection of the axes.)
Vz (m/s)
t (s)
(a) Determine the average acceleration of the crate in the time interval t = 0 to t = 17.5 s.
m/s?
(b) Determine the average acceleration of the crate in the time intervalt = 17.5 s to t = 52.5 s.
X m/s?
1.5
(c) Determine the average acceleration of the crate in the time intervalt = 0 to t = 70.0 s.
|× m/s²
Transcribed Image Text:A crate slides along the x-axis and the figure below shows a record of its velocity as a function of time. Every gridline along the vertical axis corresponds to 2.50 m/s and each gridline along the horizontal axis corresponds to 3.50 s. (Enter your answers in m/s-. Indicate the direction with the signs of your answers. Note that t = 0 at the intersection of the axes.) Vz (m/s) t (s) (a) Determine the average acceleration of the crate in the time interval t = 0 to t = 17.5 s. m/s? (b) Determine the average acceleration of the crate in the time intervalt = 17.5 s to t = 52.5 s. X m/s? 1.5 (c) Determine the average acceleration of the crate in the time intervalt = 0 to t = 70.0 s. |× m/s²
5. [2/3 Рoints]
DETAILS
PREVIOUS ANSWERS
SERPSE10 2.2.P.005.
MY NOTES
A position-time graph for a particle moving along the x axis is shown in the figure below.
х (m)
12
10
8
6
2
t (s)
1
2 3 4 5 6
(a) Find the average velocity in the time interval t = 1.00 s to t = 3.50 s. (Indicate the direction with the sign of your
answer.)
-3.5
m/s
(b) Determine the instantaneous velocity at
2.00 s by measuring the slope of the tangent line shown in the graph.
(Note that t =
2.00 s is where the tangent line touches the curve. Indicate the direction with the sign of your answer.)
-3.71
X m/s
(c) At what value of t is the velocity zero?
4
4,
Transcribed Image Text:5. [2/3 Рoints] DETAILS PREVIOUS ANSWERS SERPSE10 2.2.P.005. MY NOTES A position-time graph for a particle moving along the x axis is shown in the figure below. х (m) 12 10 8 6 2 t (s) 1 2 3 4 5 6 (a) Find the average velocity in the time interval t = 1.00 s to t = 3.50 s. (Indicate the direction with the sign of your answer.) -3.5 m/s (b) Determine the instantaneous velocity at 2.00 s by measuring the slope of the tangent line shown in the graph. (Note that t = 2.00 s is where the tangent line touches the curve. Indicate the direction with the sign of your answer.) -3.71 X m/s (c) At what value of t is the velocity zero? 4 4,
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