the region 1) Acceleration versus time graphs for five objects are shown below. All axes have the same scale. Which object had the greatest change in velocity during the interval? KERR a (A) (8) (C) (D) (E) Time Time Time Time Time 2) When is the acceleration the most negative? (A) R to T

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PHYSICS
NAME: Mariam
Graphical Interpretation of Motion
Directions: Circle your answer choice and provide a brief justification for that answer. For example, if you found your answer
by using the area under the graph, just shade that area. If you used slope, show the calculation or "box in" the region you
used for the slope.
1) Acceleration versus time graphs for five objects are shown below. All axes have the same scale. Which object had the
greatest change in velocity during the interval?
(A)
(B)
(C)
(D)
(E)
Time
Time
Time
Time
Time
2) When is the acceleration the most negative?
(A) R to T
(B) T to V
(C) V
(D) X
(E) X to Z
STU
W XY Z
Time
3) To the right is a graph of an object's motion. Which sentence is the best interpretation?
(A) The object is moving with a constant, non-zero acceleration.
(B) The object does not move.
(C) The object is moving with a uniformly increasing velocity.
(D The object is moving at a constant velocity.
(E) The object is moving with a uniformly increasing acceleration.
Time
4) An elevator moves from the basement to the tenth floor of a
building. The mass of the elevator is 1000 kg and it moves as shown
in the velocity-time graph below. How far does it move during the
first three seconds of motion?
(A) 0.75 m
(B) 1.33 m
(C) 4.0 m
(D) 6.0 m
(E) 12.0 m
3.
d= (v)(t)
= (4)(3)
2
1.
01
d -6
4 5 6 7
3
8 9
10
Time (s)
5) The velocity at the 2 second point is:
(A) 0.4 m/s
(B) 2.0 m/s
(C) 2.5 m/s
(D) 5.0 m/s
(E) 10.0 m/s
合15
10
At
3(30-10)
(120-60)
0.
1
5 Time (s)
3
a=0-33m/sa
6) This graph shows velocity as a function of time for a car of
mass 1.5 x 10' kg. What was the acceleration at the end of 90 s?
(A) 0.22 m/s?
(B)0.33 m/s?
(C) 1.0 m/s?
(D) 9.8 m/s?
(E) 20 m/s
Verocity -timegraph is
giver, slope t curve
wil give its acc
40
30
Slope harge in X
Change iny
20
10
30
60
90 120 150 180
Time (s)
(w) jusweoajdsig
Velocity (m/s)
Velocity (m/s)
Velocity
Distance
Transcribed Image Text:PHYSICS NAME: Mariam Graphical Interpretation of Motion Directions: Circle your answer choice and provide a brief justification for that answer. For example, if you found your answer by using the area under the graph, just shade that area. If you used slope, show the calculation or "box in" the region you used for the slope. 1) Acceleration versus time graphs for five objects are shown below. All axes have the same scale. Which object had the greatest change in velocity during the interval? (A) (B) (C) (D) (E) Time Time Time Time Time 2) When is the acceleration the most negative? (A) R to T (B) T to V (C) V (D) X (E) X to Z STU W XY Z Time 3) To the right is a graph of an object's motion. Which sentence is the best interpretation? (A) The object is moving with a constant, non-zero acceleration. (B) The object does not move. (C) The object is moving with a uniformly increasing velocity. (D The object is moving at a constant velocity. (E) The object is moving with a uniformly increasing acceleration. Time 4) An elevator moves from the basement to the tenth floor of a building. The mass of the elevator is 1000 kg and it moves as shown in the velocity-time graph below. How far does it move during the first three seconds of motion? (A) 0.75 m (B) 1.33 m (C) 4.0 m (D) 6.0 m (E) 12.0 m 3. d= (v)(t) = (4)(3) 2 1. 01 d -6 4 5 6 7 3 8 9 10 Time (s) 5) The velocity at the 2 second point is: (A) 0.4 m/s (B) 2.0 m/s (C) 2.5 m/s (D) 5.0 m/s (E) 10.0 m/s 合15 10 At 3(30-10) (120-60) 0. 1 5 Time (s) 3 a=0-33m/sa 6) This graph shows velocity as a function of time for a car of mass 1.5 x 10' kg. What was the acceleration at the end of 90 s? (A) 0.22 m/s? (B)0.33 m/s? (C) 1.0 m/s? (D) 9.8 m/s? (E) 20 m/s Verocity -timegraph is giver, slope t curve wil give its acc 40 30 Slope harge in X Change iny 20 10 30 60 90 120 150 180 Time (s) (w) jusweoajdsig Velocity (m/s) Velocity (m/s) Velocity Distance
11) An object moves according to the graph below:
The object's change in velocity during the first three
seconds of motion was:
(A) 0.66 m/s
(B) 1.0 m/s
(C) 3.0 m/s
(D) 4.5 m/s
(E) 9.8 m/s
3.
0.
01 2
3
4 5 6 7
10 Time (s)
6.
12) The velocity at the 3 second point is about:
(A) - 3.3 m/s
(B) - 2.0 m/s
(C) - 0.67 m/s
(D) 5.0 m/s
(E) 7.0 m/s
官15
10-
5
of
1
2
4
5 Time (s)
13) If you wanted to know the distance covered during the interval fromt=0s to t=2 s, from
the graph below you would:
(A) read 5 directly off the vertical axis.
(B) find the area between that line segment and the x-axis by calculating (5x2)/2.
(C) find the slope of that line segment by dividing 5 by 2.
(D) find the slope of that line segment by dividing 15 by 5.
(E) Not enough information to answer.
15
10
5-
1
3
Time (a)
2
14) Consider the following graphs, noting the different axes:
()
(I)
(11)
(IV)
Time
Time
Which of these represent(s) motion at constant, non-zero acceleration?
(B) I and III
Time
Time
Time
(A) I, II, and IV
(C) II and V
(D) IV only
(E) V only
15) An object moves according to the graph below:
3
012 3 4 5 6 7 8 9 10 Time (s)
How far does it move during the interval from t= 4 s to t= 8 s?
(A) 0.75 m
(B) 3.0 m
(C) 4.0 m
(D) 8.0 m
(E) 12.0 m
Displacement (m)
Transcribed Image Text:11) An object moves according to the graph below: The object's change in velocity during the first three seconds of motion was: (A) 0.66 m/s (B) 1.0 m/s (C) 3.0 m/s (D) 4.5 m/s (E) 9.8 m/s 3. 0. 01 2 3 4 5 6 7 10 Time (s) 6. 12) The velocity at the 3 second point is about: (A) - 3.3 m/s (B) - 2.0 m/s (C) - 0.67 m/s (D) 5.0 m/s (E) 7.0 m/s 官15 10- 5 of 1 2 4 5 Time (s) 13) If you wanted to know the distance covered during the interval fromt=0s to t=2 s, from the graph below you would: (A) read 5 directly off the vertical axis. (B) find the area between that line segment and the x-axis by calculating (5x2)/2. (C) find the slope of that line segment by dividing 5 by 2. (D) find the slope of that line segment by dividing 15 by 5. (E) Not enough information to answer. 15 10 5- 1 3 Time (a) 2 14) Consider the following graphs, noting the different axes: () (I) (11) (IV) Time Time Which of these represent(s) motion at constant, non-zero acceleration? (B) I and III Time Time Time (A) I, II, and IV (C) II and V (D) IV only (E) V only 15) An object moves according to the graph below: 3 012 3 4 5 6 7 8 9 10 Time (s) How far does it move during the interval from t= 4 s to t= 8 s? (A) 0.75 m (B) 3.0 m (C) 4.0 m (D) 8.0 m (E) 12.0 m Displacement (m)
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