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Chapter 3:  Forces   Unit 1: Energy and Motion Table of Contents 3.3:  The Third Law of Motion 3.1:  Newton’s Second Law 3.2:  Gravity 3
[object Object],[object Object],Force, Mass, and Acceleration  3.1 Newton’s Second Law
[object Object],[object Object],Force and Acceleration   3.1 Newton’s Second Law
Force and Acceleration   3.1 Newton’s Second Law ,[object Object]
[object Object],[object Object],Force and Acceleration   3.1 Newton’s Second Law
[object Object],[object Object],Mass and Acceleration 3.1 Newton’s Second Law
[object Object],Mass and Acceleration 3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Newton’s Second Law 3.1 Newton’s Second Law
[object Object],Calculating Net Force with the Second Law   3.1 Newton’s Second Law ,[object Object]
[object Object],Calculating Net Force with the Second Law   3.1 Newton’s Second Law ,[object Object]
[object Object],Friction   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Friction   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],What causes friction?   3.1 Newton’s Second Law ,[object Object]
[object Object],Sticking Together   3.1 Newton’s Second Law ,[object Object]
[object Object],Static Friction   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Static Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Static Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Sliding Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Sliding Friction   3.1 Newton’s Second Law ,[object Object],[object Object]
Rolling Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Rolling Friction   3.1 Newton’s Second Law ,[object Object]
[object Object],Air Resistance   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Air Resistance   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Air Resistance   3.1 Newton’s Second Law ,[object Object]
[object Object],Terminal Velocity   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Terminal Velocity   3.1 Newton’s Second Law ,[object Object],[object Object]
[object Object],Terminal Velocity   3.1 Newton’s Second Law ,[object Object]
3.1 Section Check Question 1 A.  acceleration B.  momentum C.  speed D.  velocity Newton’s second law of motion states that _________ of an object is in the same direction as the net force on the object.
3.1 Section Check Answer The answer is A. Acceleration can be calculated by dividing the net force in newtons by the mass in kilograms.
3.1 Section Check Question 2 A.  joule B.  lux C.  newton D.  watt The unit of force is __________.
3.1 Section Check Answer The answer is C.  One newton = 1 kg · m/s 2
3.1 Section Check Answer Friction results from the sticking together of two surfaces that are in contact. Question 3 What causes friction?
What is gravity?  ,[object Object],3.2 Gravity
[object Object],[object Object],3.2 Gravity Gravity  A Basic Force
[object Object],[object Object],3.2 Gravity The Law of Universal Gravitation
[object Object],[object Object],3.2 Gravity The Law of Universal Gravitation
[object Object],3.2 Gravity The Range of Gravity
[object Object],3.2 Gravity The Range of Gravity   ,[object Object]
[object Object],3.2 Gravity Finding Other Planets   ,[object Object],[object Object]
[object Object],3.2 Gravity Finding Other Planets   ,[object Object]
3.2 Gravity Earth’s Gravitational Acceleration   ,[object Object],[object Object],[object Object]
[object Object],3.2 Gravity Earth’s Gravitational Acceleration   ,[object Object],[object Object]
[object Object],3.2 Gravity Weight  ,[object Object]
[object Object],3.2 Gravity Weight and Mass   ,[object Object],[object Object]
[object Object],3.2 Gravity Weight and Mass   ,[object Object]
[object Object],3.2 Gravity Weight and Mass
[object Object],3.2 Gravity Weightlessness and Free Fall ,[object Object]
[object Object],3.2 Gravity Weightlessness and Free Fall ,[object Object],[object Object]
[object Object],3.2 Gravity Floating in Space ,[object Object],[object Object]
[object Object],3.2 Gravity Floating in Space ,[object Object]
[object Object],3.2 Gravity Floating in Space ,[object Object]
[object Object],3.2 Gravity Floating in Space ,[object Object],[object Object]
[object Object],3.2 Gravity Projectile Motion ,[object Object]
[object Object],3.2 Gravity Horizontal and Vertical Motions   ,[object Object],[object Object]
[object Object],3.2 Gravity Horizontal and Vertical Motions   ,[object Object]
[object Object],3.2 Gravity Horizontal and Vertical Motions   ,[object Object]
[object Object],3.2 Gravity Horizontal and Vertical Distance Click image to view movie
[object Object],3.2 Gravity Horizontal and Vertical Distance ,[object Object]
[object Object],3.2 Gravity Centripetal Force ,[object Object]
[object Object],3.2 Gravity Centripetal Force
[object Object],3.2 Gravity Centripetal Force ,[object Object]
[object Object],3.2 Gravity Centripetal Force and Traction ,[object Object]
[object Object],3.2 Gravity Centripetal Force and Traction
[object Object],3.2 Gravity Gravity Can Be a Centripetal Force   ,[object Object]
3.2 Gravity Gravity Can Be a Centripetal Force   ,[object Object]
3.2 Section Check Question 1 Gravity is an attractive force between any two objects and depends on the masses of the objects and the distance between them. Gravity is an attractive force between any two objects and depends on __________. Answer
3.2 Section Check Question 2 A.  gravity B.  net C.  strong nuclear D.  weak nuclear Which is NOT one of the four basic forces?
3.2 Section Check Answer The answer is B.  The fourth basic force is the electromagnetic force, which causes electricity, magnetism, and chemical interactions between atoms and molecules.
3.2 Section Check Question 3 A.  F  =  G(m 1 m 2 /d 2 ) B.   G  =  F(m 1 m 2 /d 2 ) C.   F  =  G(m 1   -  m 2 /d 2 ) D.   F  =  G(d 2 /m 1 m 2 ) Which of the following equations represents the law of universal gravitation?
3.2 Section Check Answer The answer is A.  In the equation,  G  is the universal gravitational constant and  d  is the distance between the two masses,  m 1  and  m 2 .
Newton’s Third Law   ,[object Object],3.3 The Third Law of Motion
Action and Reaction   ,[object Object],[object Object],3.3 The Third Law of Motion ,[object Object]
Action and Reaction Forces Don’t Cancel  ,[object Object],[object Object],3.3 The Third Law of Motion
[object Object],[object Object],3.3 The Third Law of Motion Action and Reaction Forces Don’t Cancel
Rocket Propulsion ,[object Object],[object Object],3.3 The Third Law of Motion
Momentum ,[object Object],[object Object],3.3 The Third Law of Motion
Momentum ,[object Object],[object Object],3.3 The Third Law of Motion
Force and Changing Momentum   ,[object Object],[object Object],3.3 The Third Law of Motion
Force and Changing Momentum   ,[object Object],3.3 The Third Law of Motion ,[object Object]
Law of Conservation of Momentum   ,[object Object],3.3 The Third Law of Motion ,[object Object],[object Object]
When Objects Collide   ,[object Object],3.3 The Third Law of Motion ,[object Object]
When Objects Collide   3.3 The Third Law of Motion ,[object Object]
3.3 Section Check Question 1 According to Newton’s law, the second object exerts a force on the first that is equal in  strength and opposite in direction. According to Newton’s third law of motion,  what happens when one object exerts a force  on a second object? Answer
3.3 Section Check Question 2 A.  mass, acceleration B.  mass, velocity C.  mass, weight D.  net force, velocity The momentum of an object is the product of its __________ and __________.
3.3 Section Check Answer The correct answer is B.  An object’s momentum  is the product of its mass and velocity, and is  given the symbol  p .
3.3 Section Check Question 3 When two objects collide, what happens to their momentum?
3.3 Section Check Answer According to the law of conservation of momentum, if the objects in a collision exert forces only on each other, their total momentum doesn’t change, even when momentum is transferred from one object to another.
To advance to the next item or next page click on any of the following keys: mouse, space bar, enter, down or forward arrow.  Click on this icon to return to the table of contents Click on this icon to return to the previous slide Click on this icon to move to the next slide Click on this icon to open the resources file. Help Click on this icon to go to the end of the presentation. 3
End of Chapter Summary File

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Newton's 2nd law

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  • 2. Chapter 3: Forces Unit 1: Energy and Motion Table of Contents 3.3: The Third Law of Motion 3.1: Newton’s Second Law 3.2: Gravity 3
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  • 30. 3.1 Section Check Question 1 A. acceleration B. momentum C. speed D. velocity Newton’s second law of motion states that _________ of an object is in the same direction as the net force on the object.
  • 31. 3.1 Section Check Answer The answer is A. Acceleration can be calculated by dividing the net force in newtons by the mass in kilograms.
  • 32. 3.1 Section Check Question 2 A. joule B. lux C. newton D. watt The unit of force is __________.
  • 33. 3.1 Section Check Answer The answer is C. One newton = 1 kg · m/s 2
  • 34. 3.1 Section Check Answer Friction results from the sticking together of two surfaces that are in contact. Question 3 What causes friction?
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  • 68. 3.2 Section Check Question 1 Gravity is an attractive force between any two objects and depends on the masses of the objects and the distance between them. Gravity is an attractive force between any two objects and depends on __________. Answer
  • 69. 3.2 Section Check Question 2 A. gravity B. net C. strong nuclear D. weak nuclear Which is NOT one of the four basic forces?
  • 70. 3.2 Section Check Answer The answer is B. The fourth basic force is the electromagnetic force, which causes electricity, magnetism, and chemical interactions between atoms and molecules.
  • 71. 3.2 Section Check Question 3 A. F = G(m 1 m 2 /d 2 ) B. G = F(m 1 m 2 /d 2 ) C. F = G(m 1 - m 2 /d 2 ) D. F = G(d 2 /m 1 m 2 ) Which of the following equations represents the law of universal gravitation?
  • 72. 3.2 Section Check Answer The answer is A. In the equation, G is the universal gravitational constant and d is the distance between the two masses, m 1 and m 2 .
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  • 85. 3.3 Section Check Question 1 According to Newton’s law, the second object exerts a force on the first that is equal in strength and opposite in direction. According to Newton’s third law of motion, what happens when one object exerts a force on a second object? Answer
  • 86. 3.3 Section Check Question 2 A. mass, acceleration B. mass, velocity C. mass, weight D. net force, velocity The momentum of an object is the product of its __________ and __________.
  • 87. 3.3 Section Check Answer The correct answer is B. An object’s momentum is the product of its mass and velocity, and is given the symbol p .
  • 88. 3.3 Section Check Question 3 When two objects collide, what happens to their momentum?
  • 89. 3.3 Section Check Answer According to the law of conservation of momentum, if the objects in a collision exert forces only on each other, their total momentum doesn’t change, even when momentum is transferred from one object to another.
  • 90. To advance to the next item or next page click on any of the following keys: mouse, space bar, enter, down or forward arrow. Click on this icon to return to the table of contents Click on this icon to return to the previous slide Click on this icon to move to the next slide Click on this icon to open the resources file. Help Click on this icon to go to the end of the presentation. 3
  • 91. End of Chapter Summary File