**A Car Traveling 85 Km H Strikes A Tree** – 4 Hint 2 “Objects at rest Remain at rest while objects are in motion” is a definition of A) motion B) inertia C) natural forces.

5 Hint 2 “Objects at rest Remain at rest while objects are in motion” is a definition of A) motion B) inertia C) natural forces

## A Car Traveling 85 Km H Strikes A Tree

6 Suggestion 3 While Aristotle relied on logic to explain nature, Galileo relied on A) mathematics B) patterns. C) observation and testing.

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7 Suggestion 3 While Aristotle relied on logic to explain nature, Galileo relied on A) mathematics B) patterns. C) observation and testing.

8 Proposition 4 Compared to a 1-kg block of solid iron, it is twice as large as A). B) inertia. C) all of the above

9 Proposition 4 Compared to a 1-kg block of solid iron, it is twice as large as A). B) inertia. C) all of the above

10 Exercise 5 Compared to the mass of a given object on Earth, the mass of the same object on the Moon is A) greater. B) less C) the same

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11 Movement 5 Compared to the mass of a given object on Earth, the mass of the same object on the Moon is A) greater. B) less C) the same

14 Suggestion 7 A textbook is sitting on a table. What type of force is not acting on the textbook? A) Attendance. B) Gravity. C) Support (normal) Force.

15 Suggestion 7 A textbook is sitting on a table. What type of force is not acting on the textbook? A) Attendance. B) Gravity. C) Support (normal) Force.

16 Motion 8 An object is pulled north by a force of 10 N and south by a force of 15 N. The magnitude of the net force on the object is A) 10 N. B) 15 N. C) 5 N.

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17 Motion 8 An object is pulled north by a force of 10 N and south by a force of 15 N. The magnitude of the net force on the object is A) 10 N. B) 15 N. C) 5 N.

18 Suggestion 9 Two ropers pull a piece of rope in a tug of war. Each pulls with a force of 400 N. What is the tension in the rope? A) 0 N. B) 400 N. C) 800 N.

19 Suggestion 9 Two ropers pull a piece of rope in a tug of war. Each pulls with a force of 400 N. What is the tension in the rope? A) 0 N. B) 400 N. C) 800 N.

A) moving at constant speed. B) at rest. C) all of the above D) none of the above

## Solved Item 8 A Car Traveling 97 Km/h Strikes A

22 Proposition 11 When you stand at rest on a pair of bathroom scales, the readings on the scales will A) always equal your weight. B) all equal in weight. C) each less than your weight.

23 Proposition 11 When you stand at rest on a pair of bathroom scales, the readings on the scales will A) always equal your weight. B) all equal in weight. C) each less than your weight.

24 Exercise 12 A man weighing 800 N stands at rest on two bathroom scales so that his weight is evenly distributed over both scales. The reading on each scale is (draw a diagram) A) 1600 N. B) 400 N. C) 800 N. D) 200 N.

25 Exercise 12 A man weighing 800 N stands at rest on two bathroom scales so that his weight is evenly distributed over both scales. The reading on each scale is (draw a diagram) A) 1600 N. B) 400 N. C) 800 N. D) 200 N.

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26 Exercise 13 A) Acceleration and time are the two measurements necessary to calculate average speed. B) length and time. C) speed and time.

27 Proposition 13 a) Acceleration and time are the two measurements necessary to calculate average speed. B) length and time. C) distance and time.

28 Motion 14 The frictional force on a sliding object is 10 N. Is the applied force required to maintain a constant velocity A) greater than 10 N. B) equal to 10 N. C) less than 10 N.

29 Motion 14 The frictional force on a sliding object is 10 N. Is the applied force required to maintain a constant velocity A) greater than 10 N. B) equal to 10 N. C) less than 10 N.

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30 Movement 15 The average speed of a horse traveling a distance of 10 km in 60 minutes is A) 60 km/hr. B) 10 km/hour. C) 20 km/hour.

31 Exercise 15 The average speed of a horse traveling a distance of 10 km in 60 minutes is A) 60 km/hr. B) 10 km/hour. C) 20 km/hour.

32 Newton’s Law 16 According to Newton’s law of inertia, the result of walking around much of the day is like tightening the head of a hammer when its hand hits a hard surface so that we are a little shorter in the morning A). B) afternoon. C) No difference, really

33 Newton’s Law 16 According to Newton’s law of inertia, the result of walking around much of the day is like tightening the head of a hammer when its hand hits a hard surface so that we are a little shorter in the morning A). B) afternoon. C) No difference, really

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34 Newton’s Law 17 A package falls from a truck moving at 30 m/s. Neglecting air resistance, the package’s horizontal velocity is A) zero just before it hits the ground. B) more than 30 m/s. C) about 30 m/s.

35 Newton’s Law 17 A package falls from a truck moving at 30 m/s. Neglecting air resistance, the package’s horizontal velocity is A) zero just before it hits the ground. B) more than 30 m/s. C) about 30 m/s.

36 Newton’s Law 18 On the surface of Jupiter, where the acceleration due to gravity is about three times higher than on Earth, a 100 kg rock would have a mass of about A) 300 kg. B) 100 kg. C) 600 kg.

37 Newton’s Law 18 On the surface of Jupiter, where the acceleration due to gravity is about three times higher than on Earth, a 100 kg rock would have a mass of about A) 300 kg. B) 100 kg. C) 600 kg.

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38 Newton’s Law 19 An object is moved in a straight line by a force. If the net force were doubled, it would A) accelerate four times. B) double. C) half.

39 Newton’s Law 19 An object is moved in a straight line by a force. If the net force were doubled, it would A) accelerate four times. B) double. C) half.

40 Newton’s Law 20 If the mass of an object decreases and a constant force is applied to the object, the acceleration A) increases. B) reductions. C) remains the same.

41 Newton’s Law 20 If the mass of an object decreases and a constant force is applied to the object, the acceleration A) increases. B) reductions. C) remains the same.

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42 Newton’s Law 21 An object is moved along a perpendicular path in space by a force. If the object’s mass somehow becomes larger, its acceleration A) doubles. B) four twins. C) half.

43 Newton’s Law 21 An object is moved along a perpendicular path in space by a force. If the object’s mass somehow becomes larger, its acceleration A) doubles. B) four twins. C) half.

44 Newton’s Law 22 An object falling 10-N encounters 4 N of air resistance. The magnitude of the net force on the object is A) 4 N. B) 6 N. C) 10 N.

45 Newton’s Law 22 An object falling 10-N encounters 4 N of air resistance. The magnitude of the net force on the object is A) 4 N. B) 6 N. C) 10 N.

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46 Newton’s Law 23 A girl pulls on a 10-kg cart with a constant force of 30 N. What is the cart’s acceleration in meters per second squared? A) 0.3 B) 300 C) 3.0

47 Newton’s Law 23 A girl pulls on a 10-kg cart with a constant force of 30 N. What is the cart’s acceleration in meters per second squared? A) 0.3 B) 300 C) 3.0

48 Newton’s Law 24 An object following a straight line path at constant speed A) has zero acceleration A). B) with a net force acting on it in the direction of motion. C) moving in a vacuum or without air drag.

49 Newton’s Law 24 An object following a straight line path at constant speed A) has zero acceleration A). B) with a net force acting on it in the direction of motion. C) moving in a vacuum or without air drag.

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50 Newton’s Law 25 When friction is neglected, a large block of ice and a block of ice begin to slide down a slope together. The heavier block will go to the bottom A) after the light block. B) at the same time as the light block. C) before the light block.

51 Newton’s 25th law

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