SlideShare una empresa de Scribd logo
1 de 20
Impulse and Momentum
ASTRONAUT Edward H. White IIis in the zero gravity of space. By firing the gas-powered gun, he gains momentum and maneuverability.  Credit: NASA
Momentum Defined Momentum    is defined as the product of mass and velocity. (vector quantity)Units:kg m/s; g cm/s; slug ft/s Momentum m = 1000.0 kg 𝒑=𝟏𝟎𝟎𝟎.𝟎 𝐤𝐠𝟏𝟔 𝐦/𝐬   𝒑=𝟏𝟔𝟎𝟎𝟎 𝐤𝐠 𝐦/𝐬   𝒗=𝟏𝟔 𝐦/𝐬  
Dt Impulse𝒋 is a force 𝐹    acting for a small time interval Dt.   IMPULSE Impulse:
Dt Example 1:The face of a golf club exerts an average force of 4000 N for 0.002 s. What is the impulse imparted to the ball? Impulse: The unit for impulse is the newton-second(N-s)Other units are dyne-second and                      pound-second (lb-s)
F time, t Impulse from a Varying Force Normally, a force acting for a short interval is not constant.  It may be large initially and then play off to zero as shown in the graph. In the absence of calculus, we use the average force Favg.
B A Example 2: Two flexible balls collide. The ball B exerts an average force of 1200 N on ball A. How long were the balls in contact if the impulse is 5 N s? Dt = 0.00417 s The impulse is negative; the force on ball A is to the left.
In a ½ sheet of pad paper, discuss briefly the movie clip Spiderman 2 in the application of impulse and momentum (their relationship): Notice: Train and its motion  How spiderman wants to stop the train using his legs, single shot of spiderweb by each hand; and multiple shots of spiderwebs;  “stopper” in the railroad.
Impulse Changes Velocity and Momentum Consider a mallet hitting a ball: Impulse = Change in “mv”
Impulse and Momentum F Dt mv Impulse = Change in momentum Newton’s Second Law of Motion  A force F acting on a ball for a time Dtincreases its momentum mv. Conversion: 1.00 N.s = 1.00 kg m/s
F + Dt 0 mv Example 3:  A 50-g golf ball leaves the face of the club at 20 m/s.  If the club is in contact for 0.002 s, what average force acted on the ball? Given:   m = 0.05 kg;  vo = 0;   Dt = 0.002 s;  v= 20 m/s Choose right as positive. Average Force:
+ v vo Vector Nature of Momentum Consider the change in momentum of a ball that is dropped onto a rigid plate: A 2-kg ball strikes the plate with a speed of 20 m/s and rebounds with a speed of 15 m/s.  What is the change in momentum? Dp = mv- mvo Dp = (2 kg)(15 m/s) - (2 kg)(-20 m/s) Dp= 70 kg m/s
Momentum Impulse 𝒋=𝑭.∆𝒕   Impulse = Change in momentum 𝒋=∆𝒑;      𝑭=∆𝒑∆𝒕  
More Sample Problems: A 0.10-kg ball is thrown straight up into the air with an initial sped of 15 m/s. Find (a) the ball’s initial momentum; (b) its momentum at its maximum height; and (c) impulse of the weight on the ball from initial to maximum height. The force shown in the force vs. time diagram acts on a 1.5 kg object. Find (a) the impulse of the force, (b) the final velocity of the object if it is initially at rest. Fx (N) 𝑨𝒓=𝒍𝒘   𝑨𝒕=𝟏𝟐𝒃𝒉   t (s)
Conservation of Linear Momentum Momentum is conserved in this rocket launch. The velocity of the rocket and its payload is determined by the mass and velocity of the expelled gases. Photo: NASA
Conservation of Momentum  The total momentum of an isolated system of bodies remains constant. system = set of objects that interact with each other. An isolated system is one in which the only force present are those between the objects of the system; that is there is no net external force. 𝐹=0     therefore       𝑗=0 ∆𝑝=0  
Conservation of Momentum Since 𝐹21=−𝐹12   𝑭𝟐𝟏   ∴         𝑗21=−𝑗12   𝑗21=𝐹21.∆𝑡=𝑚1𝑣1′−𝑚1𝑣1   𝑗12=𝐹12.∆𝑡=𝑚2𝑣2′−𝑚2𝑣2   𝑚1𝑣1′−𝑚1𝑣1=−𝑚2𝑣2′−𝑚2𝑣2   𝑭𝟏𝟐   𝑚1𝑣1+𝑚2𝑣2=𝑚1𝑣1′+𝑚2𝑣2  ′   Initial momenta = final momenta
Conservation of Momentum Revisited: Into Details Sample Illustrations: Initially, the system is at rest: Rocket: 𝑣𝑟=0 Gas: 𝑣𝑔=0   𝑚𝑟𝑣𝑟′   𝑚𝑟𝑣𝑟+𝑚𝑔𝑣𝑔=𝑚𝑟𝑣𝑟′+𝑚𝑔𝑣𝑔′   𝑚𝑔𝑣𝑔′   𝑣𝑔′=−𝑚𝑟𝑣𝑟′𝑚𝑔  
𝒎𝟏𝒗𝟏   𝒎𝟐𝒗𝟐   APPLICATION: COLLISIONS and Conservation of Momentum 2 1 𝑭𝟐𝟏   𝑭𝟏𝟐   2 1 𝒎𝟐𝒗𝟐’   𝒎𝟏𝒗𝟏′   1 2 𝑚1𝑣1+𝑚2𝑣2=𝑚1𝑣1′+𝑚2𝑣2    ′  
Example 01 A 730-N man stands in the middle of a frozen pond of radius 5.0 m. He is unable to get to the other side because of a lack of friction between his shoes and the ice. To overcome this difficulty, he throws his 1.2-kg physics book horizontally toward the north shore at a speed of 5.0 m/s. How long does it take him to reach the south shore? Simple Collisions (Head-on Collisions) A car with a mass of 9.00 x 102 kg is traveling at +15.0 m/s while an SUV with a mass of 1.80 x 103  kg is traveling at -15.0 m/s. (a) If the cars collide head-on, becoming entangled, find the velocity of the entangled cars after the collision. (b) If the SUV stops after collision and not entangled, what is the velocity of the car after collision?

Más contenido relacionado

La actualidad más candente

La actualidad más candente (20)

1. newton's second law ghumare s m
1. newton's second law ghumare s m1. newton's second law ghumare s m
1. newton's second law ghumare s m
 
Movimiento circular uniforme
Movimiento circular uniformeMovimiento circular uniforme
Movimiento circular uniforme
 
Chapter 10
Chapter 10Chapter 10
Chapter 10
 
Grade 11, U1A-L1, Introduction to Kinematics
Grade 11, U1A-L1, Introduction to KinematicsGrade 11, U1A-L1, Introduction to Kinematics
Grade 11, U1A-L1, Introduction to Kinematics
 
Lecture02
Lecture02Lecture02
Lecture02
 
IGCSE Pysics Momentum
IGCSE Pysics MomentumIGCSE Pysics Momentum
IGCSE Pysics Momentum
 
Lecture15
Lecture15Lecture15
Lecture15
 
Torque
TorqueTorque
Torque
 
Lecture11
Lecture11Lecture11
Lecture11
 
Lecture16
Lecture16Lecture16
Lecture16
 
Momentum and impulse pp
Momentum and impulse ppMomentum and impulse pp
Momentum and impulse pp
 
032616 week3 momentum_and_impulse
032616 week3 momentum_and_impulse032616 week3 momentum_and_impulse
032616 week3 momentum_and_impulse
 
Chapter 07 impulse and momentum
Chapter 07 impulse and momentumChapter 07 impulse and momentum
Chapter 07 impulse and momentum
 
Lecture14
Lecture14Lecture14
Lecture14
 
6161103 4.4 principles of moments
6161103 4.4 principles of moments6161103 4.4 principles of moments
6161103 4.4 principles of moments
 
Lecture10
Lecture10Lecture10
Lecture10
 
04-14-08 - Momentum And Impulse
04-14-08 - Momentum And Impulse04-14-08 - Momentum And Impulse
04-14-08 - Momentum And Impulse
 
Lecture03
Lecture03Lecture03
Lecture03
 
Lecture01
Lecture01Lecture01
Lecture01
 
Turning effects of forces physics presentation for 9th grade Physics students...
Turning effects of forces physics presentation for 9th grade Physics students...Turning effects of forces physics presentation for 9th grade Physics students...
Turning effects of forces physics presentation for 9th grade Physics students...
 

Destacado

The Making of The Carbon Account
The Making of The Carbon AccountThe Making of The Carbon Account
The Making of The Carbon Account
Tom Dyson
 
Matches.pptx1
Matches.pptx1Matches.pptx1
Matches.pptx1
ayesca
 
Ps5 atoms and molecules
Ps5 atoms and moleculesPs5 atoms and molecules
Ps5 atoms and molecules
Mr. M
 
Molecular geometry
Molecular geometryMolecular geometry
Molecular geometry
chan_sicat14
 
Shapes And Bond Angles Of Simple Organic Compounds
Shapes And Bond Angles  Of Simple Organic CompoundsShapes And Bond Angles  Of Simple Organic Compounds
Shapes And Bond Angles Of Simple Organic Compounds
Keri Johnson
 

Destacado (20)

Chemical bonding
Chemical bondingChemical bonding
Chemical bonding
 
Periodicity
PeriodicityPeriodicity
Periodicity
 
Ice Sheets
Ice SheetsIce Sheets
Ice Sheets
 
The Making of The Carbon Account
The Making of The Carbon AccountThe Making of The Carbon Account
The Making of The Carbon Account
 
RDAP 15 How data management issues manifest: using concept mapping to discove...
RDAP 15 How data management issues manifest: using concept mapping to discove...RDAP 15 How data management issues manifest: using concept mapping to discove...
RDAP 15 How data management issues manifest: using concept mapping to discove...
 
4.06 presentation
4.06 presentation 4.06 presentation
4.06 presentation
 
Matches.pptx1
Matches.pptx1Matches.pptx1
Matches.pptx1
 
Lesson 3 Atoms and Isotopes | The Harnessed Atom (2016)
Lesson 3 Atoms and Isotopes | The Harnessed Atom (2016)Lesson 3 Atoms and Isotopes | The Harnessed Atom (2016)
Lesson 3 Atoms and Isotopes | The Harnessed Atom (2016)
 
Chapter 14 Statics
Chapter 14 StaticsChapter 14 Statics
Chapter 14 Statics
 
Thermodynamics
ThermodynamicsThermodynamics
Thermodynamics
 
PPt form (atom)
PPt form (atom) PPt form (atom)
PPt form (atom)
 
Ps5 atoms and molecules
Ps5 atoms and moleculesPs5 atoms and molecules
Ps5 atoms and molecules
 
IBDP HL bonding
IBDP HL bondingIBDP HL bonding
IBDP HL bonding
 
Molecular geometry
Molecular geometryMolecular geometry
Molecular geometry
 
Refrigeration cycle
Refrigeration cycleRefrigeration cycle
Refrigeration cycle
 
Match manufacture - alex
Match manufacture - alexMatch manufacture - alex
Match manufacture - alex
 
Shapes And Bond Angles Of Simple Organic Compounds
Shapes And Bond Angles  Of Simple Organic CompoundsShapes And Bond Angles  Of Simple Organic Compounds
Shapes And Bond Angles Of Simple Organic Compounds
 
microscopy
 microscopy microscopy
microscopy
 
Development of Periodic Table Timeline
Development of Periodic Table TimelineDevelopment of Periodic Table Timeline
Development of Periodic Table Timeline
 
4 elements experiments with plants
4 elements experiments with plants4 elements experiments with plants
4 elements experiments with plants
 

Similar a Chapter 07 impulse and momentum

Long 50slideschapter 5 motion notes [autosaved]
Long 50slideschapter 5 motion notes [autosaved]Long 50slideschapter 5 motion notes [autosaved]
Long 50slideschapter 5 motion notes [autosaved]
Duluth Middle
 
science9-momentumimpulseeeeeeeeeeeeeeeee
science9-momentumimpulseeeeeeeeeeeeeeeeescience9-momentumimpulseeeeeeeeeeeeeeeee
science9-momentumimpulseeeeeeeeeeeeeeeee
ryfreelance10
 
Chapter 3 forces
Chapter 3  forcesChapter 3  forces
Chapter 3 forces
hmsoh
 
"Force and motionis" a physics Power point for the 9th grade students at the...
"Force and motionis" a physics  Power point for the 9th grade students at the..."Force and motionis" a physics  Power point for the 9th grade students at the...
"Force and motionis" a physics Power point for the 9th grade students at the...
Physics Amal Sweis
 
Power point slides for momentum, Impullse conservation of memntum
Power point slides for momentum, Impullse conservation of memntumPower point slides for momentum, Impullse conservation of memntum
Power point slides for momentum, Impullse conservation of memntum
Karthik537368
 
Momentum & Impulse
Momentum & ImpulseMomentum & Impulse
Momentum & Impulse
ivegotfangz
 
Universal Gravitation
Universal GravitationUniversal Gravitation
Universal Gravitation
ZBTHS
 

Similar a Chapter 07 impulse and momentum (20)

Long 50slideschapter 5 motion notes [autosaved]
Long 50slideschapter 5 motion notes [autosaved]Long 50slideschapter 5 motion notes [autosaved]
Long 50slideschapter 5 motion notes [autosaved]
 
Momentum.ppt
Momentum.pptMomentum.ppt
Momentum.ppt
 
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
 
SCIENCE 9- MOMENTUM & IMPULSE ( DEMO TEACHING).pptx
SCIENCE 9- MOMENTUM & IMPULSE ( DEMO TEACHING).pptxSCIENCE 9- MOMENTUM & IMPULSE ( DEMO TEACHING).pptx
SCIENCE 9- MOMENTUM & IMPULSE ( DEMO TEACHING).pptx
 
science9-momentumimpulseeeeeeeeeeeeeeeee
science9-momentumimpulseeeeeeeeeeeeeeeeescience9-momentumimpulseeeeeeeeeeeeeeeee
science9-momentumimpulseeeeeeeeeeeeeeeee
 
Chapter 3 forces
Chapter 3  forcesChapter 3  forces
Chapter 3 forces
 
Chap9
Chap9Chap9
Chap9
 
Force and motion
Force and motionForce and motion
Force and motion
 
Force and motion
Force and motionForce and motion
Force and motion
 
"Force and motionis" a physics Power point for the 9th grade students at the...
"Force and motionis" a physics  Power point for the 9th grade students at the..."Force and motionis" a physics  Power point for the 9th grade students at the...
"Force and motionis" a physics Power point for the 9th grade students at the...
 
Ch 7 Momentum
Ch 7 MomentumCh 7 Momentum
Ch 7 Momentum
 
Power point slides for momentum, Impullse conservation of memntum
Power point slides for momentum, Impullse conservation of memntumPower point slides for momentum, Impullse conservation of memntum
Power point slides for momentum, Impullse conservation of memntum
 
2.2 forces and dynamics
2.2   forces and dynamics2.2   forces and dynamics
2.2 forces and dynamics
 
Momentum & Impulse
Momentum & ImpulseMomentum & Impulse
Momentum & Impulse
 
Chapter 9
Chapter 9Chapter 9
Chapter 9
 
Force & Laws of Motion Class 9 Science Chapter- NCERT PDF Download
Force & Laws of Motion Class 9 Science Chapter- NCERT PDF DownloadForce & Laws of Motion Class 9 Science Chapter- NCERT PDF Download
Force & Laws of Motion Class 9 Science Chapter- NCERT PDF Download
 
Impulse momentum
Impulse momentumImpulse momentum
Impulse momentum
 
Kinetics of particles impulse momentum method
Kinetics of particles impulse momentum methodKinetics of particles impulse momentum method
Kinetics of particles impulse momentum method
 
12. kinetics of particles impulse momentum method
12. kinetics of particles impulse momentum method12. kinetics of particles impulse momentum method
12. kinetics of particles impulse momentum method
 
Universal Gravitation
Universal GravitationUniversal Gravitation
Universal Gravitation
 

Más de Darwin Quinsaat

Physics 2 LT3: Projectile Motion Solutions
Physics 2 LT3: Projectile Motion SolutionsPhysics 2 LT3: Projectile Motion Solutions
Physics 2 LT3: Projectile Motion Solutions
Darwin Quinsaat
 
Physics 2 LT2: Vectors - Rotational Motion
Physics 2 LT2: Vectors - Rotational MotionPhysics 2 LT2: Vectors - Rotational Motion
Physics 2 LT2: Vectors - Rotational Motion
Darwin Quinsaat
 
Chapter13 rigid body rotation
Chapter13 rigid body rotationChapter13 rigid body rotation
Chapter13 rigid body rotation
Darwin Quinsaat
 
Chapter 10 CIRCULAR MOTION
Chapter 10 CIRCULAR MOTIONChapter 10 CIRCULAR MOTION
Chapter 10 CIRCULAR MOTION
Darwin Quinsaat
 
Chapter 06 kinematics in two dimensions
Chapter 06 kinematics in two dimensionsChapter 06 kinematics in two dimensions
Chapter 06 kinematics in two dimensions
Darwin Quinsaat
 
Lecture 05 Kinematics in Two Dimensions
Lecture 05 Kinematics in Two DimensionsLecture 05 Kinematics in Two Dimensions
Lecture 05 Kinematics in Two Dimensions
Darwin Quinsaat
 
Lecture 03 Dynamics Forces and Motion Along A Line
Lecture 03 Dynamics Forces and Motion Along A LineLecture 03 Dynamics Forces and Motion Along A Line
Lecture 03 Dynamics Forces and Motion Along A Line
Darwin Quinsaat
 
Lecture 02 Kinematics in one dimension
Lecture 02 Kinematics in one dimensionLecture 02 Kinematics in one dimension
Lecture 02 Kinematics in one dimension
Darwin Quinsaat
 

Más de Darwin Quinsaat (20)

Phy2 001 vectors
Phy2 001 vectorsPhy2 001 vectors
Phy2 001 vectors
 
Phy2 syllabus students q3
Phy2 syllabus students q3Phy2 syllabus students q3
Phy2 syllabus students q3
 
Physics 2 LT3: Projectile Motion Solutions
Physics 2 LT3: Projectile Motion SolutionsPhysics 2 LT3: Projectile Motion Solutions
Physics 2 LT3: Projectile Motion Solutions
 
Physics 2 LT2: Vectors - Rotational Motion
Physics 2 LT2: Vectors - Rotational MotionPhysics 2 LT2: Vectors - Rotational Motion
Physics 2 LT2: Vectors - Rotational Motion
 
LT1: KInematics For 1D with solutions
LT1: KInematics For 1D with solutionsLT1: KInematics For 1D with solutions
LT1: KInematics For 1D with solutions
 
Chapter13 rigid body rotation
Chapter13 rigid body rotationChapter13 rigid body rotation
Chapter13 rigid body rotation
 
Water rocket competition matrix
Water rocket competition matrixWater rocket competition matrix
Water rocket competition matrix
 
Water rocket competition matrix
Water rocket competition matrixWater rocket competition matrix
Water rocket competition matrix
 
Gravitation
GravitationGravitation
Gravitation
 
Chapter 10 CIRCULAR MOTION
Chapter 10 CIRCULAR MOTIONChapter 10 CIRCULAR MOTION
Chapter 10 CIRCULAR MOTION
 
Chapter 11 GRAVITATION
Chapter  11 GRAVITATIONChapter  11 GRAVITATION
Chapter 11 GRAVITATION
 
Circular motion assignment
Circular motion assignmentCircular motion assignment
Circular motion assignment
 
Work,Energy and Power
Work,Energy and PowerWork,Energy and Power
Work,Energy and Power
 
Chapter 06 kinematics in two dimensions
Chapter 06 kinematics in two dimensionsChapter 06 kinematics in two dimensions
Chapter 06 kinematics in two dimensions
 
Lecture 05 Kinematics in Two Dimensions
Lecture 05 Kinematics in Two DimensionsLecture 05 Kinematics in Two Dimensions
Lecture 05 Kinematics in Two Dimensions
 
Lecture 03 Vectors
Lecture 03 VectorsLecture 03 Vectors
Lecture 03 Vectors
 
Lecture 03 Dynamics Forces and Motion Along A Line
Lecture 03 Dynamics Forces and Motion Along A LineLecture 03 Dynamics Forces and Motion Along A Line
Lecture 03 Dynamics Forces and Motion Along A Line
 
Lecture 02 Kinematics in one dimension
Lecture 02 Kinematics in one dimensionLecture 02 Kinematics in one dimension
Lecture 02 Kinematics in one dimension
 
Lecture 01 Measurements
Lecture 01 MeasurementsLecture 01 Measurements
Lecture 01 Measurements
 
Chapter 01 introduction
Chapter 01 introductionChapter 01 introduction
Chapter 01 introduction
 

Chapter 07 impulse and momentum

  • 2. ASTRONAUT Edward H. White IIis in the zero gravity of space. By firing the gas-powered gun, he gains momentum and maneuverability. Credit: NASA
  • 3. Momentum Defined Momentum is defined as the product of mass and velocity. (vector quantity)Units:kg m/s; g cm/s; slug ft/s Momentum m = 1000.0 kg 𝒑=𝟏𝟎𝟎𝟎.𝟎 𝐤𝐠𝟏𝟔 𝐦/𝐬   𝒑=𝟏𝟔𝟎𝟎𝟎 𝐤𝐠 𝐦/𝐬   𝒗=𝟏𝟔 𝐦/𝐬  
  • 4. Dt Impulse𝒋 is a force 𝐹 acting for a small time interval Dt.   IMPULSE Impulse:
  • 5. Dt Example 1:The face of a golf club exerts an average force of 4000 N for 0.002 s. What is the impulse imparted to the ball? Impulse: The unit for impulse is the newton-second(N-s)Other units are dyne-second and pound-second (lb-s)
  • 6. F time, t Impulse from a Varying Force Normally, a force acting for a short interval is not constant. It may be large initially and then play off to zero as shown in the graph. In the absence of calculus, we use the average force Favg.
  • 7. B A Example 2: Two flexible balls collide. The ball B exerts an average force of 1200 N on ball A. How long were the balls in contact if the impulse is 5 N s? Dt = 0.00417 s The impulse is negative; the force on ball A is to the left.
  • 8. In a ½ sheet of pad paper, discuss briefly the movie clip Spiderman 2 in the application of impulse and momentum (their relationship): Notice: Train and its motion How spiderman wants to stop the train using his legs, single shot of spiderweb by each hand; and multiple shots of spiderwebs; “stopper” in the railroad.
  • 9. Impulse Changes Velocity and Momentum Consider a mallet hitting a ball: Impulse = Change in “mv”
  • 10. Impulse and Momentum F Dt mv Impulse = Change in momentum Newton’s Second Law of Motion A force F acting on a ball for a time Dtincreases its momentum mv. Conversion: 1.00 N.s = 1.00 kg m/s
  • 11. F + Dt 0 mv Example 3: A 50-g golf ball leaves the face of the club at 20 m/s. If the club is in contact for 0.002 s, what average force acted on the ball? Given: m = 0.05 kg; vo = 0; Dt = 0.002 s; v= 20 m/s Choose right as positive. Average Force:
  • 12. + v vo Vector Nature of Momentum Consider the change in momentum of a ball that is dropped onto a rigid plate: A 2-kg ball strikes the plate with a speed of 20 m/s and rebounds with a speed of 15 m/s. What is the change in momentum? Dp = mv- mvo Dp = (2 kg)(15 m/s) - (2 kg)(-20 m/s) Dp= 70 kg m/s
  • 13. Momentum Impulse 𝒋=𝑭.∆𝒕   Impulse = Change in momentum 𝒋=∆𝒑;      𝑭=∆𝒑∆𝒕  
  • 14. More Sample Problems: A 0.10-kg ball is thrown straight up into the air with an initial sped of 15 m/s. Find (a) the ball’s initial momentum; (b) its momentum at its maximum height; and (c) impulse of the weight on the ball from initial to maximum height. The force shown in the force vs. time diagram acts on a 1.5 kg object. Find (a) the impulse of the force, (b) the final velocity of the object if it is initially at rest. Fx (N) 𝑨𝒓=𝒍𝒘   𝑨𝒕=𝟏𝟐𝒃𝒉   t (s)
  • 15. Conservation of Linear Momentum Momentum is conserved in this rocket launch. The velocity of the rocket and its payload is determined by the mass and velocity of the expelled gases. Photo: NASA
  • 16. Conservation of Momentum The total momentum of an isolated system of bodies remains constant. system = set of objects that interact with each other. An isolated system is one in which the only force present are those between the objects of the system; that is there is no net external force. 𝐹=0 therefore 𝑗=0 ∆𝑝=0  
  • 17. Conservation of Momentum Since 𝐹21=−𝐹12   𝑭𝟐𝟏   ∴         𝑗21=−𝑗12   𝑗21=𝐹21.∆𝑡=𝑚1𝑣1′−𝑚1𝑣1   𝑗12=𝐹12.∆𝑡=𝑚2𝑣2′−𝑚2𝑣2   𝑚1𝑣1′−𝑚1𝑣1=−𝑚2𝑣2′−𝑚2𝑣2   𝑭𝟏𝟐   𝑚1𝑣1+𝑚2𝑣2=𝑚1𝑣1′+𝑚2𝑣2  ′   Initial momenta = final momenta
  • 18. Conservation of Momentum Revisited: Into Details Sample Illustrations: Initially, the system is at rest: Rocket: 𝑣𝑟=0 Gas: 𝑣𝑔=0   𝑚𝑟𝑣𝑟′   𝑚𝑟𝑣𝑟+𝑚𝑔𝑣𝑔=𝑚𝑟𝑣𝑟′+𝑚𝑔𝑣𝑔′   𝑚𝑔𝑣𝑔′   𝑣𝑔′=−𝑚𝑟𝑣𝑟′𝑚𝑔  
  • 19. 𝒎𝟏𝒗𝟏   𝒎𝟐𝒗𝟐   APPLICATION: COLLISIONS and Conservation of Momentum 2 1 𝑭𝟐𝟏   𝑭𝟏𝟐   2 1 𝒎𝟐𝒗𝟐’   𝒎𝟏𝒗𝟏′   1 2 𝑚1𝑣1+𝑚2𝑣2=𝑚1𝑣1′+𝑚2𝑣2    ′  
  • 20. Example 01 A 730-N man stands in the middle of a frozen pond of radius 5.0 m. He is unable to get to the other side because of a lack of friction between his shoes and the ice. To overcome this difficulty, he throws his 1.2-kg physics book horizontally toward the north shore at a speed of 5.0 m/s. How long does it take him to reach the south shore? Simple Collisions (Head-on Collisions) A car with a mass of 9.00 x 102 kg is traveling at +15.0 m/s while an SUV with a mass of 1.80 x 103 kg is traveling at -15.0 m/s. (a) If the cars collide head-on, becoming entangled, find the velocity of the entangled cars after the collision. (b) If the SUV stops after collision and not entangled, what is the velocity of the car after collision?
  • 21. Assignment: What is the momentum of a 15-g sparrow flying with an initial speed speed of 12 m/s to the east? If the sparrow increases its speed to 14 m/s in the same direction, what is the impulse of its force? Calculate the force exerted on a rocket, given that the propelling gases are expelled at a rate of 1000 kg/s with a speed of 60,000 m/s (at take off) A 900-kg box car traveling at +20 m/s strikes a stationary second car. After collision, the box car stops and the second car travels with a velocity of +30 m/s. What is the mass of the second car?
  • 22. Summary of Formulas: Momentum Impulse 𝒋=𝑭.∆𝒕   Impulse = Change in momentum 𝒋=∆𝒑;      𝑭=∆𝒑∆𝒕   Conservation of Momentum ∆𝒑=𝟎;                𝒎𝟏𝒗𝟏+𝒎𝟐𝒗𝟐=𝒎𝟏𝒗𝟏′+𝒎𝟐′  

Notas del editor

  1. J = 8.00 Ns
  2. Δt = 0.0041666.. Or0.00417 s
  3. F = 500 N