Newton s Third Law. Action & Reaction Forces

Size: px
Start display at page:

Download "Newton s Third Law. Action & Reaction Forces"

Transcription

1 Newton s Third Law Action & Reaction Forces

2 Or You cannot touch without being touched

3 Newton s Third Law Whenever one object exerts a force on a second object, the second object exerts an equal and opposite force on the first object.

4 Identifying action reaction pairs Whenever one object exerts a force on a second object, the second object exerts an equal and opposite force on the first object.

5 Action The hammer hits the nail Reaction The nail hits the hammer

6 Identifying action reaction pairs Step 1 Identify the objects Step 2 - Identify the action as a push or a pull Step 3 Rewrite the event using push or pull Step 4 - Switch the position of the objects relative to the word push or pull Step 5 Rewrite the event with the action word

7 Step 2 This action is a push Action The hammer hits the nail Step 1 Objects Step 3 Step 4 The hammer pushes the nail The nail pushes the hammer Step 5 Reaction The nail hits the hammer

8 Action & Reaction on Different Masses The rocket engine expels the exhaust The exhaust pushes the rocket engine

9 Action & Reaction on Different Masses The rocket engine expels the exhaust The exhaust pushes the rocket engine F rocket engine on exhaust = F exhaust on rocket engine

10 Action & Reaction on Different Masses F rocket engine on exhaust = F exhaust on rocket engine M rocket x a rocket = m exhaust x a exhaust

11 A Wicked Smahhhht Farmer A talking horse (???) told a farmer that if he pulls on a cart the cart will pull on him with the same force and they will not move. Since the cart will not move he should go back to the barn.

12 A Wicked Smahhhht Farmer The farmer said to the horse, You re right, if you pull on the cart it will pull on you with the same force. A true action reaction pair. I have an idea, push on the ground and see what happens.

13 A Wicked Smahhhht Farmer F earth on horse = F horse on earth M earth x a earth = m horse x a horse

14 An Example Problem Two oranges started a tug-of-war in a frictionless world. Chuck tilted the scale at 120 kg, while Fred tilted the scale at 80 kg. Chuck pulled on Fred with a force of 60 N. Chuck Fred A) What is the direction and magnitude of Chuck s acceleration? B. What is the direction and magnitude of the force Fred exerts? C. What is the direction and magnitude of Fred s acceleration?

15 An Example Problem Two oranges started a tug-of-war in a frictionless world. Chuck tilted the scale at 120 kg, while Fred tilted the scale at 80 kg. Chuck pulled on Fred with a force of 60 N. Chuck 60 N Fred 120 kg 80 kg A) What is the direction and magnitude of Chuck s acceleration? a = F net / m = 60N/120kg = 0.50m/s/s in the direction of Chuck s pull.

16 An Example Problem Two oranges started a tug-of-war in a frictionless world. Chuck tilted the scale at 120 kg, while Fred tilted the scale at 80 kg. Chuck pulled on Fred with a force of 60 N. Chuck 60 N 60 N Fred 120 kg 80 kg A. What is the direction and magnitude of the force Fred exerts?

17 An Example Problem Two oranges started a tug-of-war in a frictionless world. Chuck tilted the scale at 120 kg, while Fred tilted the scale at 80 kg. Chuck pulled on Fred with a force of 60 N. Chuck 60 N 60 N Fred 120 kg 80 kg A. What is the direction and magnitude of Fred s acceleration? a = F net / m = 60N/80kg = 0.75 m/s/s in the direction of Fred s pull.

18 A downward force of 4N is exerted on the book by

19 A downward force of 4N is exerted on the book by EARTH

20 If the book is at rest, an upward force of is exerted on the by the hand

21 If the book is at rest, an upward force of 4N is exerted on the BOOK by the hand

22 Is the upward force exerted by the hand the reaction to the downward force exerted on the book?

23 Is the upward force exerted by the hand the reaction to the downward force exerted on the book? NO

24 The reaction to the force exerted downward on the book is a force of magnitude exerted on by. Its direction is.

25 The reaction to the force exerted downward on the book is a force of magnitude 4N exerted on EARTH by the BOOK. Its direction is UP.

26 The reaction to the force exerted upward by the hand is a force of magnitude exerted on by. Its direction is.

27 The reaction to the force exerted upward by the hand is a force of magnitude 4N exerted on the HAND by the BOOK. Its direction is DOWN.

28 The fact that the 4N force exerted upward by the hand is equal in magnitude and opposite in direction to the 4N force exerted downward on the book is an example of Newton s law.

29 The fact that the 4N force exerted upward by the hand is equal in magnitude and opposite in direction to the 4N force exerted downward on the book is an example of Newton s 2nd law.

30 The fact that the 4N force exerted upward by the book is equal in magnitude and opposite in direction to the 4N force exerted downward by Earth is an example of Newton s law.

31 The fact that the 4N force exerted upward by the book is equal in magnitude and opposite in direction to the 4N force exerted downward by Earth is an example of Newton s 3rd law.

32 Increased to 5N Remains at 4N Does the book remain in equilibrium?

33 Increased to 5N Does the book remain in equilibrium? NO Remains at 4N

34 Increased to 5N Remains at 4N Is the force exerted on the book by the hand equal in magnitude an opposite in direction to the force exerted on the book by Earth?

35 Increased to 5N Remains at 4N Is the force exerted on the book by the hand equal in magnitude an opposite in direction to the force exerted on the book by Earth? NO F net = 1N UP

36 Increased to 5N Remains at 4N Is the force exerted on the book by the Earth equal in magnitude an opposite in direction to the force exerted on Earth by the book? YES

37 Increased to 5N Remains at 4N Is the force exerted on the book by the hand equal in magnitude an opposite in direction to the force exerted on the hand by the book?

38 Increased to 5N Remains at 4N Is the force exerted on the book by the hand equal in magnitude an opposite in direction to the force exerted on the hand by the book? YES

39 Finally, the hand is removed suddenly from under the book while the book is rising upward. How many forces then act on the book?

40 How many forces then act on the book? ONE Remains at 4N

41 Remains at 4N Is the book in equilibrium?

42 What balances the downward force exerted on the book by the earth? Remains at 4N F net = 0 F earth on book = F book on earth M earth x a earth = m book x a book

Newton s second law of motion states:

Newton s second law of motion states: Newton s second law of motion states: The acceleration produced by a force on an object is directly proportional to the magnitude of the force, is in the same direction as the force, and is inversely proportional

More information

Chapter 5 Force and Motion

Chapter 5 Force and Motion Chapter 5 Force and Motion Chapter Goal: To establish a connection between force and motion. Slide 5-2 Chapter 5 Preview Slide 5-3 Chapter 5 Preview Slide 5-4 Chapter 5 Preview Slide 5-5 Chapter 5 Preview

More information

Section /07/2013. PHY131H1F University of Toronto Class 9 Preclass Video by Jason Harlow. Based on Knight 3 rd edition Ch. 5, pgs.

Section /07/2013. PHY131H1F University of Toronto Class 9 Preclass Video by Jason Harlow. Based on Knight 3 rd edition Ch. 5, pgs. PHY131H1F University of Toronto Class 9 Preclass Video by Jason Harlow Based on Knight 3 rd edition Ch. 5, pgs. 116-133 Section 5.1 A force is a push or a pull What is a force? What is a force? A force

More information

4 Newton s Third Law of Motion Action and Reaction. For every force, there is an equal and opposite force.

4 Newton s Third Law of Motion Action and Reaction. For every force, there is an equal and opposite force. For every force, there is an equal and opposite force. Forces and Interactions A force is always part of a mutual action that involves another force. Forces and Interactions In the simplest sense, a force

More information

7.1 Forces and Interactions. A force is always part of a mutual action that involves another force. For every force, there. opposite force.

7.1 Forces and Interactions. A force is always part of a mutual action that involves another force. For every force, there. opposite force. For every force, there is an equal and opposite force. A force is always part of a mutual action that involves another force. In the simplest sense, a force is a push or a pull. A mutual action is an interaction

More information

Name Period Date. 75 kg. Horizontal, frictionless surface. Label a coordinate system, write the formula, substitute and solve.

Name Period Date. 75 kg. Horizontal, frictionless surface. Label a coordinate system, write the formula, substitute and solve. Example Problems 5.3 Net Force E1. Two horizontal forces, 225 N and 165 N, are exerted in the same direction on a 75 kg crate as shown below. Find the net force and the acceleration of the crate. 165 N

More information

PHYSICS. Chapter 5 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc.

PHYSICS. Chapter 5 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc. PHYSICS FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E Chapter 5 Lecture RANDALL D. KNIGHT Chapter 5 Force and Motion IN THIS CHAPTER, you will learn about the connection between force and motion.

More information

CHAPTER 9 FORCE AND LAWS OF MOTION

CHAPTER 9 FORCE AND LAWS OF MOTION CHAPTER 9 FORCE AND LAWS OF MOTION Q 1. What is a force? Ans: Force is a push or pull which tries to bring the change in the state of rest or of uniform motion in a straight line. Unit of force: force

More information

Name period date. Newton s Third Law POGIL. Every action has an equal but opposite reaction.

Name period date. Newton s Third Law POGIL. Every action has an equal but opposite reaction. Name period date Newton s Third Law POGIL Purpose To use Newton s Third Law of Motion to explain action and reaction force pairs. To use Newton s Third Law to explain the motion of a system. Part 1: Newton

More information

Galileo said. Marbles rolled down a ramp will reach the same height as that from which they are released no matter how long the ramp.

Galileo said. Marbles rolled down a ramp will reach the same height as that from which they are released no matter how long the ramp. The Law of Inertia Galileo said Marbles rolled down a ramp will reach the same height as that from which they are released no matter how long the ramp. So, what if the ramp is flat? Newton said Objects

More information

Newton s Laws of Motion. Chapter 3, Section 2

Newton s Laws of Motion. Chapter 3, Section 2 Newton s Laws of Motion Chapter 3, Section 2 3 Motion and Forces Inertia and Mass Inertia (ih NUR shuh) is the tendency of an object to resist any change in its motion. If an object is moving, it will

More information

Exercises. 7.1 Forces and Interactions (page 107) 7.2 Newton s Third Law (page 108)

Exercises. 7.1 Forces and Interactions (page 107) 7.2 Newton s Third Law (page 108) Exercises 71 Forces and Interactions (page 107) 1 A force is always part of a(n) that involves another force 2 Define interaction 3 Describe the interaction forces between a nail and a hammer that hits

More information

PHYSICS. Chapter 5 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc.

PHYSICS. Chapter 5 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc. PHYSICS FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E Chapter 5 Lecture RANDALL D. KNIGHT Chapter 5 Force and Motion IN THIS CHAPTER, you will learn about the connection between force and motion.

More information

Forces. Brought to you by:

Forces. Brought to you by: Forces Brought to you by: Objects have force because of their mass and inertia Mass is a measure of the amount of matter/particles in a substance. Mass is traditionally measured with a balance. Inertia

More information

Chapter Test A. Teacher Notes and Answers Forces and the Laws of Motion. Assessment

Chapter Test A. Teacher Notes and Answers Forces and the Laws of Motion. Assessment Assessment Chapter Test A Teacher Notes and Answers Forces and the Laws of Motion CHAPTER TEST A (GENERAL) 1. c 2. d 3. d 4. c 5. c 6. c 7. c 8. b 9. d 10. d 11. c 12. a 13. d 14. d 15. b 16. d 17. c 18.

More information

Lecture 6. Newton s laws of motion. Important note: First Exam is on Tuesday, Feb. 6, 8:15-9:45 pm

Lecture 6. Newton s laws of motion. Important note: First Exam is on Tuesday, Feb. 6, 8:15-9:45 pm Lecture 6 Newton s laws of motion Important note: First Exam is on Tuesday, Feb. 6, 8:15-9:45 pm Today s Topics: Newton s Laws of Motion Newton s 1 st Law (Inertial reference frames) Vector nature of forces

More information

NEWTON S THIRD LAW OF MOTION ACTION AND REACTION. For Every Force There Is An Equal and Opposite Force

NEWTON S THIRD LAW OF MOTION ACTION AND REACTION. For Every Force There Is An Equal and Opposite Force NEWTON S THIRD LAW OF MOTION ACTION AND REACTION For Every Force There Is An Equal and Opposite Force Forces and Interactions n A force is always part of a mutual action that involves another force. n

More information

Section /07/2013. PHY131H1F University of Toronto Class 12 Preclass Video by Jason Harlow. Based on Knight 3 rd edition Ch. 7, pgs.

Section /07/2013. PHY131H1F University of Toronto Class 12 Preclass Video by Jason Harlow. Based on Knight 3 rd edition Ch. 7, pgs. PHY131H1F University of Toronto Class 12 Preclass Video by Jason Harlow Section 7.1 Based on Knight 3 rd edition Ch. 7, pgs. 167-184 When a hammer hits a nail, it exerts a forward force on the nail At

More information

*ANSWER KEY * ANSWER KEY* ANSWER KEY* Newton's First Law of Motion Study Guide

*ANSWER KEY * ANSWER KEY* ANSWER KEY* Newton's First Law of Motion Study Guide *ANSWER KEY * ANSWER KEY* ANSWER KEY* Newton's First Law of Motion Study Guide Newton's First Law of Motion (Law of Inertia) An object at rest will remain at rest unless acted on by an unbalanced force.

More information

Newton s Laws of Motion. Supplemental Text Material Pages

Newton s Laws of Motion. Supplemental Text Material Pages Newton s Laws of Motion Supplemental Text Material Pages 300-320 Sir Isaac Newton Born 1642 1665 began individual studies Proved universal gravitation Invented the Calculus Reflector telescope 1672 First

More information

Chapter 7 Newton s Third Law

Chapter 7 Newton s Third Law Chapter 7 Newton s Third Law Chapter Goal: To use Newton s third law to understand interacting objects. Slide 7-2 Chapter 7 Preview Slide 7-3 Chapter 7 Preview Slide 7-4 Chapter 7 Preview Slide 7-6 Chapter

More information

Forces and Newton s Laws Notes

Forces and Newton s Laws Notes Forces and Newton s Laws Notes Force An action exerted on an object which can change the motion of the object. The SI unit for force is the Newton (N) o N = (kg m)/s 2 o Pound is also a measure of force

More information

Semester 1 Final Exam Review Answers

Semester 1 Final Exam Review Answers Position (m) Mass (g) Semester 1 Final Exam Review Answers A physics student was interested in finding the mass of a penny. To do so she grabbed a bunch of pennies and placed them on a scale. She gathered

More information

Physics 1A Lecture 4B. "Fig Newton: The force required to accelerate a fig inches per second. --J. Hart

Physics 1A Lecture 4B. Fig Newton: The force required to accelerate a fig inches per second. --J. Hart Physics 1A Lecture 4B "Fig Newton: The force required to accelerate a fig 39.37 inches per second. --J. Hart Types of Forces There are many types of forces that we will apply in this class, let s discuss

More information

that when friction is present, a is needed to keep an object moving. 21. State Newton s first law of motion.

that when friction is present, a is needed to keep an object moving. 21. State Newton s first law of motion. Chapter 3 Newton s First Law of Motion Inertia Exercises 31 Aristotle on Motion (pages 29 30) Fill in the blanks with the correct terms 1 Aristotle divided motion into two types: and 2 Natural motion on

More information

Newton s 2 nd Law of Motion

Newton s 2 nd Law of Motion Newton s 2 nd Law Objectives Explain the relationship between acceleration, net force, and mass of an object. Apply Newton s 2 nd Law to solve a variety of problems. Understand the difference between mass

More information

Chapter 4 Force and Motion

Chapter 4 Force and Motion Chapter 4 Force and Motion Units of Chapter 4 The Concepts of Force and Net Force Inertia and Newton s First Law of Motion Newton s Second Law of Motion Newton s Third Law of Motion More on Newton s Laws:

More information

Dynamics: Newton s Laws of Motion

Dynamics: Newton s Laws of Motion Lecture 6 Chapter 4 Physics I 02.10.2013 Dynamics: Newton s Laws of Motion Course website: http://faculty.uml.edu/andriy_danylov/teaching/physicsi Lecture Capture: http://echo360.uml.edu/danylov2013/physics1spring.html

More information

variable Formula S or v SI variable Formula S or v SI 4. How is a Newton defined? What does a Newton equal in pounds?

variable Formula S or v SI variable Formula S or v SI 4. How is a Newton defined? What does a Newton equal in pounds? Newton s Laws 1 1. Define mass variable Formula S or v SI 2. Define inertia, how is inertia related to mass 3. What is a Force? variable Formula S or v SI 4. How is a Newton defined? What does a Newton

More information

Lecture 5. (sections )

Lecture 5. (sections ) Lecture 5 PHYSICS 201 (sections 521-525) Instructor: Hans Schuessler Temporary: Alexandre e Kolomenski o http://sibor.physics.tamu.edu/teaching/phys201/ Projectile Motion The horizontal and vertical parts

More information

7. Two forces are applied to a 2.0-kilogram block on a frictionless horizontal surface, as shown in the diagram below.

7. Two forces are applied to a 2.0-kilogram block on a frictionless horizontal surface, as shown in the diagram below. 1. Which statement about the movement of an object with zero acceleration is true? The object must be at rest. The object must be slowing down. The object may be speeding up. The object may be in motion.

More information

Unit 1: Mechanical Equilibrium

Unit 1: Mechanical Equilibrium Unit 1: Mechanical Equilibrium Chapter: Two Mechanical Equilibrium Big Idea / Key Concepts Student Outcomes 2.1: Force 2.2: Mechanical Equilibrium 2.3: Support Force 2.4: Equilibrium for Moving Objects

More information

3/10/2019. What Is a Force? What Is a Force? Tactics: Drawing Force Vectors

3/10/2019. What Is a Force? What Is a Force? Tactics: Drawing Force Vectors What Is a Force? A force acts on an object. A force requires an agent, something that acts on the object. If you throw a ball, your hand is the agent or cause of the force exerted on the ball. A force

More information

6. Which graph best represents the motion of an object that is not in equilibrium as it travels along a straight line? A) B)

6. Which graph best represents the motion of an object that is not in equilibrium as it travels along a straight line? A) B) 1. The data table below lists the mass and speed of four different objects. 6. Which graph best represents the motion of an object that is not in equilibrium as it travels along a straight line? Which

More information

Name: Unit 4 Newton s 1 st & 3 rd Law

Name: Unit 4 Newton s 1 st & 3 rd Law Name: Period: Table #: Unit 4 Newton s 1 st & 3 rd Law 1 UNIT IV: Reading - Force Diagrams The analysis of a problem in dynamics usually involves the selection and analysis of the relevant forces acting

More information

Dynamics. Newton s Second Law of Motion

Dynamics. Newton s Second Law of Motion Dynamics Newton s Second Law of Motion Do Now 1. Write down the algebraic equation representing the 2d Law of Motion. 2. What effect the change in one of the variables in the equation will have on the

More information

What Is a Force? Slide Pearson Education, Inc.

What Is a Force? Slide Pearson Education, Inc. What Is a Force? A force acts on an object. A force requires an agent, something that acts on the object. If you throw a ball, your hand is the agent or cause of the force exerted on the ball. A force

More information

Dynamics: Newton s Laws of Motion

Dynamics: Newton s Laws of Motion Lecture 6 Chapter 4 Physics I 02.10.2013 Dynamics: Newton s Laws of Motion Course website: http://faculty.uml.edu/andriy_danylov/teaching/physicsi Lecture Capture: http://echo360.uml.edu/danylov2013/physics1spring.html

More information

August 05, Chapter 4 - Dynamics - WHY things move Newton has THREE laws of motion

August 05, Chapter 4 - Dynamics - WHY things move Newton has THREE laws of motion Chapter 4 - Dynamics - WHY things move Newton has THREE laws of motion 1st Law Law of Inertia - An object in CONSTANT motion remains in CONSTANT motion and an object at rest remains at rest UNLESS acted

More information

Galileo & Friction 2000 yrs prior to inertia idea, the popular belief was that all objects want to come to a rest. BUT 1600's: Galileo reasoned that

Galileo & Friction 2000 yrs prior to inertia idea, the popular belief was that all objects want to come to a rest. BUT 1600's: Galileo reasoned that Galileo & Friction 2000 yrs prior to inertia idea, the popular belief was that all objects want to come to a rest. BUT 1600's: Galileo reasoned that moving objects eventually stop only because of a force

More information

Chapter 4. Forces in One Dimension

Chapter 4. Forces in One Dimension Chapter 4 Forces in One Dimension Chapter 4 Forces in One Dimension In this chapter you will: *VD Note Use Newton s laws to solve problems. Determine the magnitude and direction of the net force that causes

More information

Laws of Motion. What is force? What happens when you push or pull objects? Some examples of pushing and pulling. Definition Force:

Laws of Motion. What is force? What happens when you push or pull objects? Some examples of pushing and pulling. Definition Force: 1 Laws of Motion What is force? What happens when you push or pull objects? Some examples of pushing and pulling Kicking Pushing Lifting Squeezing Definition Force: Activity: Tug of war In a tug of war,

More information

Semester 1 Final Exam Review Answers

Semester 1 Final Exam Review Answers Position (m) Mass (g) Semester 1 Final Exam Review Answers A physics student was interested in finding the mass of a penny. To do so she grabbed a bunch of pennies and placed them on a scale. She gathered

More information

Section 1 Changes in Motion. Chapter 4. Preview. Objectives Force Force Diagrams

Section 1 Changes in Motion. Chapter 4. Preview. Objectives Force Force Diagrams Section 1 Changes in Motion Preview Objectives Force Force Diagrams Section 1 Changes in Motion Objectives Describe how force affects the motion of an object. Interpret and construct free body diagrams.

More information

Chapter Seven Notes: Newton s Third Law of Motion Action and Reaction

Chapter Seven Notes: Newton s Third Law of Motion Action and Reaction Chapter Seven Notes: Newton s Third Law of Motion Action and Reaction A force is always part of a mutual action that involves another force. A mutual action is an interaction between one thing and another

More information

NEWTON S LAWS OF MOTION. Chapter 2: pages Review questions 1, 5-10, 14, 17, 21-24, 30

NEWTON S LAWS OF MOTION. Chapter 2: pages Review questions 1, 5-10, 14, 17, 21-24, 30 NEWTON S LAWS OF MOTION Chapter 2: pages 37-53 Review questions 1, 5-10, 14, 17, 21-24, 30 Sir Isaac Newton Born 1642 1665 began individual studies Proved universal gravitation Invented the Calculus Reflector

More information

Newton s 3 rd Law. 3rd Six Weeks

Newton s 3 rd Law. 3rd Six Weeks Newton s 3 rd Law 3rd Six Weeks Golf and Newton s 3 rd Law Newton s 3 rd Law of Motion The Law states: Whenever one object exerts a force upon a second object, the second object exerts an equal and opposite

More information

Newton's 1 st Law. Newton s Laws. Newton's 2 nd Law of Motion. Newton's Second Law (cont.) Newton's Second Law (cont.)

Newton's 1 st Law. Newton s Laws. Newton's 2 nd Law of Motion. Newton's Second Law (cont.) Newton's Second Law (cont.) Newton s Laws 1) Inertia - objects in motion stay in motion 2) F=ma 3) Equal and opposite reactions Newton's 1 st Law What is the natural state of motion of an object? An object at rest remains at rest,

More information

Newton s Third Law of Motion

Newton s Third Law of Motion The world you see is full of motion caused by forces that push or pull. What forces are acting in the image of the biker? To start, look where objects are in contact. Examples of these pairs of contact

More information

Force a push or a pull exerted on some object the cause of an acceleration, or the change in an objects velocity

Force a push or a pull exerted on some object the cause of an acceleration, or the change in an objects velocity Chapter 4 Physics Notes Changes in Motion Force a push or a pull exerted on some object the cause of an acceleration, or the change in an objects velocity Forces cause changes in velocity Causes a stationary

More information

Physics 100. Today. Finish Chapter 4: Newton s Second Law. Start Chapter 5: Newton s Third Law

Physics 100. Today. Finish Chapter 4: Newton s Second Law. Start Chapter 5: Newton s Third Law Physics 100 Today Finish Chapter 4: Newton s Second Law Start Chapter 5: Newton s Third Law First, let s clarify notion of a force: Previously defined force as a push or pull. Better to think of force

More information

A Question about free-body diagrams

A Question about free-body diagrams Free-body Diagrams To help us understand why something moves as it does (or why it remains at rest) it is helpful to draw a free-body diagram. The free-body diagram shows the various forces that act on

More information

Dynamic equilibrium: object moves with constant velocity in a straight line. = 0, a x = i

Dynamic equilibrium: object moves with constant velocity in a straight line. = 0, a x = i Dynamic equilibrium: object moves with constant velocity in a straight line. We note that F net a s are both vector quantities, so in terms of their components, (F net ) x = i (F i ) x = 0, a x = i (a

More information

Chapter 06 Test A. Name: Class: Date: Multiple Choice Identify the choice that best completes the statement or answers the question.

Chapter 06 Test A. Name: Class: Date: Multiple Choice Identify the choice that best completes the statement or answers the question. Name: Class: Date: Chapter 06 Test A Multiple Choice Identify the choice that best completes the statement or answers the question. 1. The property of matter that resists changes in motion is: a. acceleration.

More information

Physics Fall Semester Set 2: Chapters 5-9

Physics Fall Semester Set 2: Chapters 5-9 Chapter 5 and 6 1) Which of the following is considered to be a scalar quantity? a. 10m/s @ 90 0 b. 2 cm south c. 32 nanometers to the left d. 5 liters 2) If an airplane flies in the same direction as

More information

b. What is the force of red team on right side of the rope? c. Is it the same as the blue team? d. What is the Sum of the Forces?

b. What is the force of red team on right side of the rope? c. Is it the same as the blue team? d. What is the Sum of the Forces? Force, Mass, and Acceleration PhET Simulation 1. Click on the following link PhET Force and Motion Basics and click Net Force a. If you cannot access the link then type the following web address into your

More information

Chapter 4 Newton s Laws

Chapter 4 Newton s Laws Chapter 4 Newton s Laws Isaac Newton 1642-1727 Some inventions and discoveries: 3 laws of motion Universal law of gravity Calculus Ideas on: Sound Light Thermodynamics Reflecting telescope In this chapter,

More information

Unit Assessment: Relationship Between Force, Motion, and Energy

Unit Assessment: Relationship Between Force, Motion, and Energy Assessment Unit Assessment: Relationship Between Force, Motion, and Energy Instructions Check your understanding with this assessment. 1) Lifting a 20,000 N anvil one meter requires 20,000 joules (newtons/meter).

More information

Time (s) Velocity (m/s)

Time (s) Velocity (m/s) Physics 02_16 Remediation Packet Name A toy rocket was launched into the air from ground height. After the rocket reached its maximum height, it fell back to Earth. As it was falling, data was recorded

More information

Newton's Third Law. Examples of Interaction Force Pairs

Newton's Third Law. Examples of Interaction Force Pairs Newton's Third Law A force is a push or a pull that acts upon an object as a results of its interaction with another object. Forces result from interactions! Some forces result from contact interactions

More information

Circle the correct answer. For those questions involving calculations, working MUST be shown to receive credit.

Circle the correct answer. For those questions involving calculations, working MUST be shown to receive credit. Dynamics Assignment 3 Name: Multiple Choice. Circle the correct answer. For those questions involving calculations, working MUST be shown to receive credit. 1. Which statement is always true regarding

More information

Motion. A change in the position of an object

Motion. A change in the position of an object Forces & Motion Motion A change in the position of an object A change in motion is caused by force (a push or pull on an object caused by interaction of objects; either by contact or at a distance) Force

More information

UNIT 4: FORCES IN NATURE Test review: 4_1_ Forces in nature. Fundamentals

UNIT 4: FORCES IN NATURE Test review: 4_1_ Forces in nature. Fundamentals UNIT 4: FORCES IN NATURE Test review: 4_1_ Forces in nature. Fundamentals 1. Contact forces are examples of which of the fundamental forces? a. Strong c. Weak b. Electromagnetic d. Gravitational 2. The

More information

PHYSICS. Chapter 7 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc.

PHYSICS. Chapter 7 Lecture FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E RANDALL D. KNIGHT Pearson Education, Inc. PHYSICS FOR SCIENTISTS AND ENGINEERS A STRATEGIC APPROACH 4/E Chapter 7 Lecture RANDALL D. KNIGHT Chapter 7 Newton s Third Law IN THIS CHAPTER, you will use Newton s third law to understand how objects

More information

What does the lab partner observe during the instant the student pushes off?

What does the lab partner observe during the instant the student pushes off? Motion Unit Review State Test Questions 1. To create real-time graphs of an object s displacement versus time and velocity versus time, a student would need to use a A motion sensor.b low- g accelerometer.

More information

Newton s Laws Pre-Test

Newton s Laws Pre-Test Newton s Laws Pre-Test 1.) Consider the following two statements and then select the option below that is correct. (i) It is possible for an object move in the absence of forces acting on the object. (ii)

More information

Physics 12 Unit 2: Vector Dynamics

Physics 12 Unit 2: Vector Dynamics 1 Physics 12 Unit 2: Vector Dynamics In this unit you will extend your study of forces. In particular, we will examine force as a vector quantity; this will involve solving problems where forces must be

More information

Forces and motion. Announcements. Force: A push or pull between pairs of objects. Newton s First Law: Inertia

Forces and motion. Announcements. Force: A push or pull between pairs of objects. Newton s First Law: Inertia Announcements 1. Exam 1 still going on a. until Monday night b. My advice: take it sooner rather than later, because we re moving on now Forces and motion Aristotle: 384 322 BC, Greece Four elements, two

More information

NEWTON S LAWS OF MOTION

NEWTON S LAWS OF MOTION Name Period Date NEWTON S LAWS OF MOTION If I am anything, which I highly doubt, I have made myself so by hard work. Isaac Newton Goals: 1. Students will use conceptual and mathematical models to predict

More information

Name Lesson 7. Homework Work and Energy Problem Solving Outcomes

Name Lesson 7. Homework Work and Energy Problem Solving Outcomes Physics 1 Name Lesson 7. Homework Work and Energy Problem Solving Outcomes Date 1. Define work. 2. Define energy. 3. Determine the work done by a constant force. Period 4. Determine the work done by a

More information

Chapter 4. Table of Contents. Section 1 Changes in Motion. Section 2 Newton's First Law. Section 3 Newton's Second and Third Laws

Chapter 4. Table of Contents. Section 1 Changes in Motion. Section 2 Newton's First Law. Section 3 Newton's Second and Third Laws Forces and the Laws of Motion Table of Contents Section 1 Changes in Motion Section 2 Newton's First Law Section 3 Newton's Second and Third Laws Section 4 Everyday Forces Section 1 Changes in Motion Objectives

More information

Chapter 4 Thrills and Chills >600 N If your weight is 600 N (blue vector), then the bathroom scale would have to be providing a force of greater than 600 N (red vector). Another way of looking at the situation

More information

Newton s 3 rd Law of Motion. Action and Reaction

Newton s 3 rd Law of Motion. Action and Reaction Newton s 3 rd Law of Motion Action and Reaction A Force is Part of an Interaction Up till now, a force has been a single and simple push or pull From now on, a force is part of a mutual action between

More information

Four naturally occuring forces

Four naturally occuring forces Forces System vs Environment: system the object the force is applied to environment the world around the object that exerts the force Type Forces: Contact is applied by touching Long range exerted without

More information

FORCE, WORK, ENERGY & POWER

FORCE, WORK, ENERGY & POWER INAYA MEDICAL COLLEGE (IMC) PHYS 101 - LECTURE 5 FORCE, WORK, ENERGY & POWER DR. MOHAMMED MOSTAFA EMAM 1 What change the state of object is called force. We mean by saying state, shape or position of the

More information

4. As you increase your push, will friction on the crate increase also? Ans. Yes it will.

4. As you increase your push, will friction on the crate increase also? Ans. Yes it will. Ch. 4 Newton s Second Law of Motion p.65 Review Questions 3. How great is the force of friction compared with your push on a crate that doesn t move on a level floor? Ans. They are equal in magnitude and

More information

Newton's First law of Motion

Newton's First law of Motion Newton's First law of Motion Newton's first law of motion is known as the Law of Inertia "Every object continues in a state of rest, or of uniform motion in a straight line at constant speed, unless it

More information

A N D. c h a p t e r 1 2 M O T I O N F O R C E S

A N D. c h a p t e r 1 2 M O T I O N F O R C E S F O R C E S A N D c h a p t e r 1 2 M O T I O N What is a FORCE? A FORCE is a push or pull that acts on an object. A force can cause a resting object to move OR Accelerate a moving object by: changing

More information

9/20/11. Physics 101 Tuesday 9/20/11 Class 8" Chapter " Weight and Normal forces" Frictional Forces"

9/20/11. Physics 101 Tuesday 9/20/11 Class 8 Chapter  Weight and Normal forces Frictional Forces Reading Quiz Physics 101 Tuesday 9/20/11 Class 8" Chapter 5.6 6.1" Weight and Normal forces" Frictional Forces" The force due to kinetic friction is usually larger than the force due to static friction.

More information

Static and Kinetic Friction, Normals, Equilibrium and Accelerated Motion

Static and Kinetic Friction, Normals, Equilibrium and Accelerated Motion Static and Kinetic Friction, Normals, Equilibrium and Accelerated Motion 1. A baseball player slides into home base with an initial speed of 7.90 m/s. If the coefficient of kinetic friction between the

More information

Who was Isaac Newton?

Who was Isaac Newton? Forces & Motion Who was Isaac Newton? Born: December 25, 1643 in England (the same year Galileo died) knighted by Queen Anne in 1705 to become Sir Isaac Newton at age 64 The first person to describe universal

More information

Lesson 11: Newton s Third Law: Quantitative

Lesson 11: Newton s Third Law: Quantitative 11.1 Observe and Find a Pattern Lesson 11: Newton s Third Law: Quantitative The goal of this experiment is to determine a mathematical relationship between the force that object A exerts on object B and

More information

Newton s Laws of Motion. I. Law of Inertia II. F=ma III. Action-Reaction

Newton s Laws of Motion. I. Law of Inertia II. F=ma III. Action-Reaction Newton s Laws of Motion I. Law of Inertia II. F=ma III. Action-Reaction While most people know what Newton's laws say, many people do not know what they mean (or simply do not believe what they mean).

More information

Newton s Laws of Motion. Chapter 4

Newton s Laws of Motion. Chapter 4 Newton s Laws of Motion Chapter 4 Newton s First Law of Motion Force A force is a push or pull. An object at rest needs a force to get it moving; a moving object needs a force to change its velocity. Force

More information

Dynamics Multiple Choice Homework

Dynamics Multiple Choice Homework Dynamics Multiple Choice Homework PSI Physics Name 1. In the absence of a net force, a moving object will A. slow down and eventually stop B. stop immediately C. turn right D. move with constant velocity

More information

Chapter 4: Newton s laws of motion

Chapter 4: Newton s laws of motion Chapter 4: Newton s laws of motion Objectives: What are forces? How do we identify them? Drawing free-body diagrams. Relating forces and motion. Solving force and motion problems. What is a force? Forces

More information

A force is could described by its magnitude and by the direction in which it acts.

A force is could described by its magnitude and by the direction in which it acts. 8.2.a Forces Students know a force has both direction and magnitude. P13 A force is could described by its magnitude and by the direction in which it acts. 1. Which of the following could describe the

More information

CHAPTER 2: NEWTON S 1 ST LAW OF MOTION-INERTIA 01/02/18

CHAPTER 2: NEWTON S 1 ST LAW OF MOTION-INERTIA 01/02/18 CHAPTER 2: NEWTON S 1 ST LAW OF MOTION-INERTIA 01/02/18 HISTORY OF IDEAS ABOUT MOTION Aristotle (384-322 BC) o Natural Motion An object will strive to get to its proper place determined by its nature or

More information

Newton s Laws of Motion

Newton s Laws of Motion Newton s Laws of Motion Background If you are driving your car at a constant speed when you put it in neutral and turn off the engine, it does not maintain a constant speed. If you stop pushing an object

More information

Motor. Cable. Elevator

Motor. Cable. Elevator Q4.1 An elevator is being lifted at a constant speed by a steel cable attached to an electric motor. There is no air resistance, nor is there any friction between the elevator and the walls of the elevator

More information

1. A 20 kg box is sliding down a ramp angled at 57 degrees at an acceleration of 1.4 m/s/s. What is the coefficient of friction between the box and

1. A 20 kg box is sliding down a ramp angled at 57 degrees at an acceleration of 1.4 m/s/s. What is the coefficient of friction between the box and 1. A 20 kg box is sliding down a ramp angled at 57 degrees at an acceleration of 1.4 m/s/s. What is the coefficient of friction between the box and the ramp? Newton s Third Law All Forces come in EQUAL

More information

Engage 1. When you exert a force on a balloon, what does the balloon exert on you?

Engage 1. When you exert a force on a balloon, what does the balloon exert on you? Unit 1: Phenomenon The Physics of Skydiving Lesson 3c Newton s Third Law of Motion California Standard Addressed PH1. Newton s laws predict the motion of most objects. As a basis for understanding this

More information

Chapter 4. Forces and Newton s Laws of Motion. continued

Chapter 4. Forces and Newton s Laws of Motion. continued Chapter 4 Forces and Newton s Laws of Motion continued Quiz 3 4.7 The Gravitational Force Newton s Law of Universal Gravitation Every particle in the universe exerts an attractive force on every other

More information

Introduction to Forces

Introduction to Forces Introduction to Forces Where do they come from? How are they measured? How are they added & Subtracted? Here s Tim & Mobey on Force Brainpop Log is: mms308 / password: marshall 7. Forces & Motion What

More information

4 Study Guide. Forces in One Dimension Vocabulary Review

4 Study Guide. Forces in One Dimension Vocabulary Review Date Period Name CHAPTER 4 Study Guide Forces in One Dimension Vocabulary Review Write the term that correctly completes the statement. Use each term once. agent force Newton s second law apparent weight

More information

Dynamics; Newton s Laws of Motion

Dynamics; Newton s Laws of Motion Dynamics; Newton s Laws of Motion Force A force is any kind of push or pull on an object. An object at rest needs a force to get it moving; a moving object needs a force to change its velocity. The magnitude

More information

Newton s 3 rd Law. The Nature of Force. Matthew W. Milligan

Newton s 3 rd Law. The Nature of Force. Matthew W. Milligan Newton s 3 rd Law The Nature of Force Forces Dynamics I. Laws of Motion: 1 & 2 - inertia, force, mass - weight II. Law 3 - interaction & nature of force - types of force: normal, friction - air resistance,

More information

Physics 101. Today Chapter 5: Newton s Third Law

Physics 101. Today Chapter 5: Newton s Third Law Physics 101 Today Chapter 5: Newton s Third Law First, let s clarify notion of a force: Previously defined force as a push or pull. Better to think of force as an interaction between two objects. Eg. I

More information

Mass & Weight. weight a force acting on a body due to the gravitational attraction pulling that body to another. NOT constant.

Mass & Weight. weight a force acting on a body due to the gravitational attraction pulling that body to another. NOT constant. Mass & Weight mass how much stuff a body has. Doesn t change. Is responsible for the inertial properties of a body. The greater the mass, the greater the force required to achieve some acceleration: Fnet

More information

Review 3: Forces. 1. Which graph best represents the motion of an object in equilibrium? A) B) C) D)

Review 3: Forces. 1. Which graph best represents the motion of an object in equilibrium? A) B) C) D) 1. Which graph best represents the motion of an object in equilibrium? A) B) C) D) 2. A rock is thrown straight up into the air. At the highest point of the rock's path, the magnitude of the net force

More information