SlideShare una empresa de Scribd logo
1 de 28
Time graphs
• The slope of a distance-time graph is
  equal to the velocity

• i.e. y2 - y1    =>   s2 - s1
•      x2 - x1          t2 - t1
Examples
• A boy travels at constant velocity, covering
  a distance of 15m in 5 s. He remains at
  that point for a further 6 s before returning
  at constant velocity in 10 s. Draw a
  distance – time graph of the boys motion
  and use it to calculate his velocity on the
  outward journey.
Velocity – Time Graphs
• The slope of a velocity – time graph is
  equal to the acceleration
• i.e. y2 - y1 => v2 - v1 => v2 – v1
•      x2 - x1        t2 - t1        t

• The area under the graph is equal to the
  distance traveled
Question
• An object starts from rest and accelerates
  at 2 ms-2. By calculating the distance
  traveled after each second, sketch the
  distance – time graph for the first 3 s of its
  motion.
Momentum
• Mass (m) is a measure of the amount of matter
  in a body
• Mass is a scalar quantity with a SI unit of
  Kilograms (kg)

• Momentum (p) is a product of mass and velocity.
• Momentum = mass X velocity
• Momentum is a vector quantity, unit kgms-1
Example
Example
• What is the momentum of a rugby player
  with a mass of 110kg traveling east at
  8ms-1?
Example
• What is the momentum of a rugby player
  with a mass of 110kg traveling east at
  8ms-1?
Example
• What is the momentum of a rugby player
  with a mass of 110kg traveling east at
  8ms-1?

• P = mv
Example
• What is the momentum of a rugby player
  with a mass of 110kg traveling east at
  8ms-1?

• P = mv
• P = (110)(8) = 880 kg m s-1 east
Principle of conservation of
             momentum
• A total momentum before an interaction is
  equal to the total momentum after,
  provided no resultant force acts on the
  system

• m1u1 + m2u2 = m1v1 + m2v2
Where this applies: Spacecraft
• When a spacecraft is accelerating (speed
  up, slowing down or changing direction), it
  must expel gas at high velocity in the
  opposite direction to the acceleration.
  When the rocket accelerates in a particular
  direction, its momentum increases in that
  direction. In order for the principle of
  conservation of momentum to hold, the
  gas must carry an equal amount of
  momentum in the opposite direction.
Where this applies: Snooker
• In the games of snooker, pool or billiards,
  balls are hit off each other. The principle of
  conservation of momentum applies to
  each of these collisions.
Question
• Two snooker balls of the same mass,
  moving in opposite directions, collide head
  on. The pink ball is moving to the right at
  5ms-1 and the blue 3ms-1. The pink is
  brought to rest by the collision.
• (i) What is the velocity of the blue after the
  collision
• (ii) What is the change in momentum of
  each ball.
Question
• An 85kg man collides head on with a 55kg
  woman while the pair are skating in opposite
  directions on an ice rink. The two of them get
  tangled up in the collision and move off together
  after it. Given the man has a speed of 8ms-1
  and the woman 6ms-1.
• (i) What speed do the pair move at after the
  collision?
• (ii) If the man and woman had been traveling at
  right angles to each other before the collision,
  calculate their speed afterwards.
Force
• Force: (F) is that which can cause
  acceleration
• It is a vector quantity with an SI unit of
  Newton

• 1 Newton is the amount of force that will
  cause a body of mass 1 kilogram to
  accelerate by 1 meter per second
  squared.
Newton’s Laws of Motion
• Law 1: A body will remain at rest or continue
  moving at constant velocity unless acted upon
  by an unbalancing external force.
• Law 2: The rate of change of momentum is
  proportional to the applied force and takes place
  in the direction of the force
• Law 3: For every action there is an equal and
  opposite reaction, action and reaction do not
  happen to the same body
• http://teachertech.rice.edu/Participants/
  louviere/Newton/




                                        15
Force formula
Force formula
• F = ma
Force formula
• F = ma
Force formula
• F = ma


• F = mv –mu     or Ft = mv-mu
Force formula
• F = ma


• F = mv –mu     or Ft = mv-mu
•        t
Force formula
• F = ma


• F = mv –mu     or Ft = mv-mu
•        t
Force formula
• F = ma


• F = mv –mu          or Ft = mv-mu
•        t

• Example: Calculate the force required to give a football
  of mass 420g and acceleration of 200ms-1
Force formula
• F = ma


• F = mv –mu          or Ft = mv-mu
•        t

• Example: Calculate the force required to give a football
  of mass 420g and acceleration of 200ms-1
Force formula
• F = ma


• F = mv –mu           or Ft = mv-mu
•        t

• Example: Calculate the force required to give a football
  of mass 420g and acceleration of 200ms-1

• Question: A golfer strikes a golf ball with a force of 8kN.
  The ball and club are in contact for 0.5ms. Calculate the
  change in momentum of the ball.

Más contenido relacionado

La actualidad más candente

Chapter 07 impulse and momentum
Chapter 07 impulse and momentumChapter 07 impulse and momentum
Chapter 07 impulse and momentumDarwin Quinsaat
 
Impulse and momentum student
Impulse and momentum studentImpulse and momentum student
Impulse and momentum studentshaifulawie77
 
Academic Physics Chapter 6 Powerpoint
Academic Physics Chapter 6 PowerpointAcademic Physics Chapter 6 Powerpoint
Academic Physics Chapter 6 PowerpointMrreynon
 
Momentum & Impulse
Momentum & ImpulseMomentum & Impulse
Momentum & Impulseivegotfangz
 
Conservation Of Momentum
Conservation Of MomentumConservation Of Momentum
Conservation Of Momentumeliseb
 
Chapter 7 part 1 - conservation of momentum in 1 d
Chapter 7   part 1 - conservation of momentum in 1 dChapter 7   part 1 - conservation of momentum in 1 d
Chapter 7 part 1 - conservation of momentum in 1 dconquerer742
 
WORK POWER AND ENERGY
WORK POWER AND ENERGYWORK POWER AND ENERGY
WORK POWER AND ENERGYBernard Cid
 
work and energy class 9 physics
 work and energy class 9 physics work and energy class 9 physics
work and energy class 9 physicsshashankgarg57
 
Momentum and Impulse
Momentum and ImpulseMomentum and Impulse
Momentum and ImpulseJoem Solares
 
Momentum
MomentumMomentum
Momentumitutor
 
Chapter 7 Powerpoint
Chapter 7 PowerpointChapter 7 Powerpoint
Chapter 7 PowerpointMrreynon
 
Impulse and momentum(physics)
Impulse and momentum(physics)Impulse and momentum(physics)
Impulse and momentum(physics)Nikol Cervas
 
AP Physics 1&2 Impulse and Momentum
AP Physics 1&2 Impulse and MomentumAP Physics 1&2 Impulse and Momentum
AP Physics 1&2 Impulse and Momentumkampkorten
 

La actualidad más candente (20)

Chapter 07 impulse and momentum
Chapter 07 impulse and momentumChapter 07 impulse and momentum
Chapter 07 impulse and momentum
 
Third ppt
Third pptThird ppt
Third ppt
 
Linear momentum and its conservation by Victor R. Oribe
Linear momentum and its conservation by Victor R. OribeLinear momentum and its conservation by Victor R. Oribe
Linear momentum and its conservation by Victor R. Oribe
 
Impulse and momentum student
Impulse and momentum studentImpulse and momentum student
Impulse and momentum student
 
Academic Physics Chapter 6 Powerpoint
Academic Physics Chapter 6 PowerpointAcademic Physics Chapter 6 Powerpoint
Academic Physics Chapter 6 Powerpoint
 
Momentum & Impulse
Momentum & ImpulseMomentum & Impulse
Momentum & Impulse
 
Conservation Of Momentum
Conservation Of MomentumConservation Of Momentum
Conservation Of Momentum
 
2.4 analysing momentum
2.4 analysing momentum2.4 analysing momentum
2.4 analysing momentum
 
Chapter 7 part 1 - conservation of momentum in 1 d
Chapter 7   part 1 - conservation of momentum in 1 dChapter 7   part 1 - conservation of momentum in 1 d
Chapter 7 part 1 - conservation of momentum in 1 d
 
WORK POWER AND ENERGY
WORK POWER AND ENERGYWORK POWER AND ENERGY
WORK POWER AND ENERGY
 
work and energy class 9 physics
 work and energy class 9 physics work and energy class 9 physics
work and energy class 9 physics
 
Momentum and Impulse
Momentum and ImpulseMomentum and Impulse
Momentum and Impulse
 
Physics 8
Physics 8Physics 8
Physics 8
 
Momentum
MomentumMomentum
Momentum
 
Chapter 7 Powerpoint
Chapter 7 PowerpointChapter 7 Powerpoint
Chapter 7 Powerpoint
 
Impulse and momentum(physics)
Impulse and momentum(physics)Impulse and momentum(physics)
Impulse and momentum(physics)
 
Momentum
MomentumMomentum
Momentum
 
AP Physics 1&2 Impulse and Momentum
AP Physics 1&2 Impulse and MomentumAP Physics 1&2 Impulse and Momentum
AP Physics 1&2 Impulse and Momentum
 
Momentum e
Momentum eMomentum e
Momentum e
 
Physics 16
Physics 16Physics 16
Physics 16
 

Destacado

Destacado (10)

Mechanics
MechanicsMechanics
Mechanics
 
The atom 1
The atom 1The atom 1
The atom 1
 
TEXTO - Hand Tools
TEXTO - Hand ToolsTEXTO - Hand Tools
TEXTO - Hand Tools
 
Hand Tools
Hand  ToolsHand  Tools
Hand Tools
 
Hand Tools
Hand ToolsHand Tools
Hand Tools
 
19 hand tools
19 hand tools19 hand tools
19 hand tools
 
Handtools
HandtoolsHandtools
Handtools
 
Safety hand tools & grinding
Safety hand tools & grindingSafety hand tools & grinding
Safety hand tools & grinding
 
Hand tools and instruments
Hand tools and instruments Hand tools and instruments
Hand tools and instruments
 
Basic hand tools (Electronics Technology)
Basic hand tools (Electronics Technology)Basic hand tools (Electronics Technology)
Basic hand tools (Electronics Technology)
 

Similar a Momentum force (1)

Similar a Momentum force (1) (20)

IMPULSE-AND-MOMENTUM-PHYSICS-PRESENTATION.pptx
IMPULSE-AND-MOMENTUM-PHYSICS-PRESENTATION.pptxIMPULSE-AND-MOMENTUM-PHYSICS-PRESENTATION.pptx
IMPULSE-AND-MOMENTUM-PHYSICS-PRESENTATION.pptx
 
Forces
ForcesForces
Forces
 
Momentum_and_Impulse SPP.pptx
Momentum_and_Impulse SPP.pptxMomentum_and_Impulse SPP.pptx
Momentum_and_Impulse SPP.pptx
 
Biomechanics 3
Biomechanics 3Biomechanics 3
Biomechanics 3
 
Biomechanics 3
Biomechanics 3Biomechanics 3
Biomechanics 3
 
3 b phy micro lesson
3 b phy micro lesson3 b phy micro lesson
3 b phy micro lesson
 
Momentum.pdf
Momentum.pdfMomentum.pdf
Momentum.pdf
 
Biomechanics 3 2014
Biomechanics 3 2014Biomechanics 3 2014
Biomechanics 3 2014
 
Force And Laws Of Motion
Force And Laws Of MotionForce And Laws Of Motion
Force And Laws Of Motion
 
Momentum and impulse_ppt
Momentum and impulse_pptMomentum and impulse_ppt
Momentum and impulse_ppt
 
biomachanicsSports Sciences PPT.pptx
biomachanicsSports Sciences PPT.pptxbiomachanicsSports Sciences PPT.pptx
biomachanicsSports Sciences PPT.pptx
 
laws of motion class-XI
laws of motion class-XIlaws of motion class-XI
laws of motion class-XI
 
2017 CRW: Breakout Session 2: Unbreakable Laws: Physics of a Move
 2017 CRW: Breakout Session 2: Unbreakable Laws: Physics of a Move  2017 CRW: Breakout Session 2: Unbreakable Laws: Physics of a Move
2017 CRW: Breakout Session 2: Unbreakable Laws: Physics of a Move
 
Acceleration and Equations of Motion(1st)
Acceleration and Equations of Motion(1st)Acceleration and Equations of Motion(1st)
Acceleration and Equations of Motion(1st)
 
Force and laws of motion 2
Force and laws of motion 2Force and laws of motion 2
Force and laws of motion 2
 
Momentum tmid
Momentum tmidMomentum tmid
Momentum tmid
 
Force
ForceForce
Force
 
07_freefall.ppt
07_freefall.ppt07_freefall.ppt
07_freefall.ppt
 
Newton’s second law of motion
Newton’s second law of motionNewton’s second law of motion
Newton’s second law of motion
 
ConsOfMomentum.pptttttttttttttttttttttttttttttt
ConsOfMomentum.ppttttttttttttttttttttttttttttttConsOfMomentum.pptttttttttttttttttttttttttttttt
ConsOfMomentum.pptttttttttttttttttttttttttttttt
 

Más de Karoline Uhlemann

Más de Karoline Uhlemann (7)

Excited state and quantum numbers
Excited state and quantum numbersExcited state and quantum numbers
Excited state and quantum numbers
 
Atom and bonding definitions
Atom and bonding definitionsAtom and bonding definitions
Atom and bonding definitions
 
Electronic configuration
Electronic configurationElectronic configuration
Electronic configuration
 
Vsepr theory
Vsepr theoryVsepr theory
Vsepr theory
 
Trends on the periodic table0809
Trends on the periodic table0809Trends on the periodic table0809
Trends on the periodic table0809
 
Electronegativity
ElectronegativityElectronegativity
Electronegativity
 
The atom
The atomThe atom
The atom
 

Último

Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxOnBoard
 
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 3652toLead Limited
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationSafe Software
 
Pigging Solutions Piggable Sweeping Elbows
Pigging Solutions Piggable Sweeping ElbowsPigging Solutions Piggable Sweeping Elbows
Pigging Solutions Piggable Sweeping ElbowsPigging Solutions
 
08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking MenDelhi Call girls
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxMalak Abu Hammad
 
Understanding the Laravel MVC Architecture
Understanding the Laravel MVC ArchitectureUnderstanding the Laravel MVC Architecture
Understanding the Laravel MVC ArchitecturePixlogix Infotech
 
Pigging Solutions in Pet Food Manufacturing
Pigging Solutions in Pet Food ManufacturingPigging Solutions in Pet Food Manufacturing
Pigging Solutions in Pet Food ManufacturingPigging Solutions
 
Presentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreterPresentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreternaman860154
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsMark Billinghurst
 
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptxHampshireHUG
 
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...HostedbyConfluent
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Patryk Bandurski
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationSafe Software
 
Benefits Of Flutter Compared To Other Frameworks
Benefits Of Flutter Compared To Other FrameworksBenefits Of Flutter Compared To Other Frameworks
Benefits Of Flutter Compared To Other FrameworksSoftradix Technologies
 
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...Neo4j
 
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphSIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphNeo4j
 
Breaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountBreaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountPuma Security, LLC
 

Último (20)

Maximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptxMaximizing Board Effectiveness 2024 Webinar.pptx
Maximizing Board Effectiveness 2024 Webinar.pptx
 
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365
Tech-Forward - Achieving Business Readiness For Copilot in Microsoft 365
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
Pigging Solutions Piggable Sweeping Elbows
Pigging Solutions Piggable Sweeping ElbowsPigging Solutions Piggable Sweeping Elbows
Pigging Solutions Piggable Sweeping Elbows
 
08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men08448380779 Call Girls In Friends Colony Women Seeking Men
08448380779 Call Girls In Friends Colony Women Seeking Men
 
The Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptxThe Codex of Business Writing Software for Real-World Solutions 2.pptx
The Codex of Business Writing Software for Real-World Solutions 2.pptx
 
Understanding the Laravel MVC Architecture
Understanding the Laravel MVC ArchitectureUnderstanding the Laravel MVC Architecture
Understanding the Laravel MVC Architecture
 
Pigging Solutions in Pet Food Manufacturing
Pigging Solutions in Pet Food ManufacturingPigging Solutions in Pet Food Manufacturing
Pigging Solutions in Pet Food Manufacturing
 
Presentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreterPresentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreter
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR Systems
 
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
04-2024-HHUG-Sales-and-Marketing-Alignment.pptx
 
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
Transforming Data Streams with Kafka Connect: An Introduction to Single Messa...
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
 
Benefits Of Flutter Compared To Other Frameworks
Benefits Of Flutter Compared To Other FrameworksBenefits Of Flutter Compared To Other Frameworks
Benefits Of Flutter Compared To Other Frameworks
 
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...
Neo4j - How KGs are shaping the future of Generative AI at AWS Summit London ...
 
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge GraphSIEMENS: RAPUNZEL – A Tale About Knowledge Graph
SIEMENS: RAPUNZEL – A Tale About Knowledge Graph
 
Breaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountBreaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path Mount
 

Momentum force (1)

  • 1.
  • 2. Time graphs • The slope of a distance-time graph is equal to the velocity • i.e. y2 - y1 => s2 - s1 • x2 - x1 t2 - t1
  • 3. Examples • A boy travels at constant velocity, covering a distance of 15m in 5 s. He remains at that point for a further 6 s before returning at constant velocity in 10 s. Draw a distance – time graph of the boys motion and use it to calculate his velocity on the outward journey.
  • 4. Velocity – Time Graphs • The slope of a velocity – time graph is equal to the acceleration • i.e. y2 - y1 => v2 - v1 => v2 – v1 • x2 - x1 t2 - t1 t • The area under the graph is equal to the distance traveled
  • 5. Question • An object starts from rest and accelerates at 2 ms-2. By calculating the distance traveled after each second, sketch the distance – time graph for the first 3 s of its motion.
  • 6. Momentum • Mass (m) is a measure of the amount of matter in a body • Mass is a scalar quantity with a SI unit of Kilograms (kg) • Momentum (p) is a product of mass and velocity. • Momentum = mass X velocity • Momentum is a vector quantity, unit kgms-1
  • 8. Example • What is the momentum of a rugby player with a mass of 110kg traveling east at 8ms-1?
  • 9. Example • What is the momentum of a rugby player with a mass of 110kg traveling east at 8ms-1?
  • 10. Example • What is the momentum of a rugby player with a mass of 110kg traveling east at 8ms-1? • P = mv
  • 11. Example • What is the momentum of a rugby player with a mass of 110kg traveling east at 8ms-1? • P = mv • P = (110)(8) = 880 kg m s-1 east
  • 12. Principle of conservation of momentum • A total momentum before an interaction is equal to the total momentum after, provided no resultant force acts on the system • m1u1 + m2u2 = m1v1 + m2v2
  • 13. Where this applies: Spacecraft • When a spacecraft is accelerating (speed up, slowing down or changing direction), it must expel gas at high velocity in the opposite direction to the acceleration. When the rocket accelerates in a particular direction, its momentum increases in that direction. In order for the principle of conservation of momentum to hold, the gas must carry an equal amount of momentum in the opposite direction.
  • 14. Where this applies: Snooker • In the games of snooker, pool or billiards, balls are hit off each other. The principle of conservation of momentum applies to each of these collisions.
  • 15. Question • Two snooker balls of the same mass, moving in opposite directions, collide head on. The pink ball is moving to the right at 5ms-1 and the blue 3ms-1. The pink is brought to rest by the collision. • (i) What is the velocity of the blue after the collision • (ii) What is the change in momentum of each ball.
  • 16. Question • An 85kg man collides head on with a 55kg woman while the pair are skating in opposite directions on an ice rink. The two of them get tangled up in the collision and move off together after it. Given the man has a speed of 8ms-1 and the woman 6ms-1. • (i) What speed do the pair move at after the collision? • (ii) If the man and woman had been traveling at right angles to each other before the collision, calculate their speed afterwards.
  • 17. Force • Force: (F) is that which can cause acceleration • It is a vector quantity with an SI unit of Newton • 1 Newton is the amount of force that will cause a body of mass 1 kilogram to accelerate by 1 meter per second squared.
  • 18. Newton’s Laws of Motion • Law 1: A body will remain at rest or continue moving at constant velocity unless acted upon by an unbalancing external force. • Law 2: The rate of change of momentum is proportional to the applied force and takes place in the direction of the force • Law 3: For every action there is an equal and opposite reaction, action and reaction do not happen to the same body
  • 23. Force formula • F = ma • F = mv –mu or Ft = mv-mu
  • 24. Force formula • F = ma • F = mv –mu or Ft = mv-mu • t
  • 25. Force formula • F = ma • F = mv –mu or Ft = mv-mu • t
  • 26. Force formula • F = ma • F = mv –mu or Ft = mv-mu • t • Example: Calculate the force required to give a football of mass 420g and acceleration of 200ms-1
  • 27. Force formula • F = ma • F = mv –mu or Ft = mv-mu • t • Example: Calculate the force required to give a football of mass 420g and acceleration of 200ms-1
  • 28. Force formula • F = ma • F = mv –mu or Ft = mv-mu • t • Example: Calculate the force required to give a football of mass 420g and acceleration of 200ms-1 • Question: A golfer strikes a golf ball with a force of 8kN. The ball and club are in contact for 0.5ms. Calculate the change in momentum of the ball.

Notas del editor

  1. \n
  2. \n
  3. \n
  4. \n
  5. \n
  6. \n
  7. \n
  8. \n
  9. \n
  10. \n
  11. \n
  12. \n
  13. \n
  14. \n
  15. \n
  16. \n
  17. \n
  18. \n
  19. \n
  20. \n
  21. \n
  22. \n
  23. \n
  24. \n
  25. \n
  26. \n