Physics 011
Chapter 2
Answers of MC#2A
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1. |
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A bird
flies 4.0 meters due north in 2.0 seconds and then flies 2.0 meters due west
in 1.0 seconds. What is the bird's average speed? |
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2. |
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If a car
is travelling due south with a decreasing speed, then the direction of the
car's acceleration is |
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3. |
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A hiker travels
60 meters north and then 120 meters south. What is her resultant
displacement? See Section 2-1 |
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4. |
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If the
average speed of a plane is 500 km per hour, how long will it take to fly 125
km? See Section 2-2 |
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5. |
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Applying
the brakes to a car traveling at 45 km/h provides an acceleration of 5.0 m/s2
in the opposite direction. How long will it take the car to stop? See Section 2-5 |
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6. |
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A ball
rolls down a frictionless inclined plane with a uniform acceleration of 1.0
m/s2. If its velocity at some instant of time is 10 m/s, what will
be its velocity 5.0 seconds later? See Section 2-5 |
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7. |
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A ball
rolls down a frictionless inclined plane with a uniform acceleration of 1.0
m/s2. If its initial velocity is 1.00 m/s, how far will it travel
in 10 s? See Section 2-5 |
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8. |
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A body
with an initial speed of 25 m/s accelerates uniformly for 10 seconds to a
final speed of 75 m/s. What is the acceleration? |
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9. |
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A body
initially at rest is accelerated at 5 m/s2 for 10 seconds. What is
its final velocity? See Section 2-5 |
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10. |
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Which
graph represents the motion of a body starting from rest and moving with a
constant non-zero acceleration? |
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11. |
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The speeds
of a body at the ends of five successive seconds are: 180, 360, 540, 720, 900
m/h. What is the acceleration of the body? See Section 2-4 |
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12. |
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"An object is initially at rest then moves in a straight line and accelerates uniformly at a rate of 2.00 m/s2." After the
object has been in motion for four seconds, its speed would be ___ m/s. |
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13. |
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"An object is initially at rest then moves in a straight line and accelerates uniformly at a rate of 2.00 m/s2." The
distance traveled by the object during the first five seconds of its travel
was ___ m. See Section 2-5 |
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14. |
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"An object is initially at rest then moves in a straight line and accelerates uniformly at a rate of 2.00 m/s2." The
average speed of the object during the first six seconds of its travel was
___ m/s. See Section 2-5 |
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15. |
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"An object is initially at rest then moves in a straight line and accelerates uniformly at a rate of 2.00 m/s2." The
average speed of the object during the third second of its motion was ___
m/s. |
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16. |
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"An object is initially at rest then moves in a straight line and accelerates uniformly at a rate of 2.00 m/s2." The
distance traveled by the object during the fourth second of its travel was
___ m. See Section 2-5 |
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17. |
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"An object of mass m initially at rest experiences a constant acceleration of magnitude ao. After a time interval to has elapsed, the speed of the car is vo and it has traveled a distance do." After a
total time 3 to has elapsed, the speed of the object will be vox
___. See Section 2-5 |
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18. |
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"An object of mass m initially at rest experiences a constant acceleration of magnitude ao. After a time interval to has elapsed, the speed of the car is vo and it has traveled a distance do." After a
total time 2 to has elapsed, the distance traveled by the object
will be dox ___. See Section 2-5 |
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19. |
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"Six different objects are observed to move in a straight line. Some aspect of the motion of each of the six objects is plotted as a function of time in the following graphs." Which
graph(s) represent(s) a situation in which the object moved with a constant
nonzero acceleration? See Section 2-8 |
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20. |
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"Six different objects are observed to move in a straight line. Some aspect of the motion of each of the six objects is plotted as a function of time in the following graphs." Which
graph represents a situation in which the object moved with a constant zero
acceleration? See Section 2-8 |
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21. |
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"An object is observed to move in a straight line. Some aspect of the motion of this object is plotted as a function of time in the following graph." The slope of the dashed line in the graph above represents ___. |
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22. |
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"An object is observed to move in a straight line. Some aspect of the motion of this object is plotted as a function of time in the following graph." The slope of the dashed line in the graph above represents ____. See Section 2-8 |
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23. |
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"An object is observed to move in a straight line. Some aspect of the motion of this object is plotted as a function of time in the following graph." The shaded area in the graph above represents ___. See Section 2-8 |
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24. |
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"An object is observed to move in a straight line. Some aspect of the motion of this object is plotted as a function of time in the following graph." The shaded area in the graph above represents ___. See Section 2-8 |
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25. |
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"The speed of an object moving in a straight line changes with time as in the figure below." For which of the time intervals was the average speed of the object
greatest? See Section 2-8 |
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26. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval did the object travel with a constant nonzero
acceleration? See Section 2-8 |
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27. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval was the average speed least? See Section 2-8 |
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28. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval did the maximum value of the magnitude of the
instantaneous acceleration occur? See Section 2-8 |
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29. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval was the speed of the object constant? |
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30. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval did the minimum value of the instantaneous
speed occur? |
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31. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval was the magnitude of the average acceleration
greatest? |
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32. |
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"The speed of an object moving in a straight line changes with time as in the figure below." During which time interval was the magnitude of the average acceleration
least? See Section 2-8 |
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33. |
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"For this question, assume that g = 10.00 m/s2. A small stone originally at rest is dropped over the edge of a very tall building." During the fourth second of the fall, the speed of the stone changes ___ m/s.
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34. |
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"For this question, assume that g = 10.00 m/s2. A small stone originally at rest is dropped over the edge of a very tall building." During the
second second of fall, the average speed of the stone is ___ m/s. See Section 2-7 and/or 2-5 |
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35. |
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"For this question, assume that g = 10.00 m/s2. A small stone originally at rest is dropped over the edge of a very tall building." During the
first second of fall, the stone falls a distance of ___ m. |
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36. |
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"For this question, assume that g = 10.00 m/s2. One reaches out over the edge of a tall building and throws a stone straight up with an initial speed of 20.00 m/s." The change in speed of the stone during the first second of its motion is
___ the change in its speed during the third second of its motion. See Section 2-7 and/or 2-5 |
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37. |
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"For this question, assume that g = 10.00 m/s2. One reaches out over the edge of a tall building and throws a stone straight up with an initial speed of 20.00 m/s." The
distance traveled by the stone during the 1st second is ___ the distance
traveled by the stone during the 2nd second. See Section 2-7 and/or 2-5 |
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38. |
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"For this question, assume that g = 10.00 m/s2. One reaches out over the edge of a tall building and throws a stone straight up with an initial speed of 20.00 m/s." At the
instant the stone is at its maximum altitude, the acceleration of the stone
is ___. See Section 2-7 and/or 2-5 |
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39. |
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"For this question, assume that g = 10.00 m/s2. One reaches out over the edge of a tall building and throws a stone straight up with an initial speed of 20.00 m/s." The time
required for the stone to reach its maximum altitude is ___ sec. See Section 2-7 and/or 2-5 |
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