Momentum. Momentum. Impulse. Impulse Momentum Theorem. Deriving Impulse. v a t. Momentum and Impulse. Impulse. v t

Similar documents
5.4 Conservation of Momentum in Two Dimensions

AP Physics Momentum AP Wrapup

4 Conservation of Momentum

5.5. Collisions in Two Dimensions: Glancing Collisions. Components of momentum. Mini Investigation

Physics 30 Lesson 1 Momentum and Conservation of Momentum in One Dimension

Momentum, p = m v. Collisions and Work(L8) Crash! Momentum and Collisions. Conservation of Momentum. elastic collisions

Momentum, p. Crash! Collisions (L8) Momentum is conserved. Football provides many collision examples to think about!

( ) Physics 1401 Homework Solutions - Walker, Chapter 9

3pt3pt 3pt3pt0pt 1.5pt3pt3pt Honors Physics Impulse-Momentum Theorem. Name: Answer Key Mr. Leonard

Second Law of Motion. Force mass. Increasing mass. (Neglect air resistance in this example)

Chapter 9 Centre of Mass and Linear Momentum

Conservation of Energy

Chapter 7. Impulse and Momentum

Physics 30 Lesson 3 Impulse and Change in Momentum

Chapter 7 Impulse and Momentum. So far we considered only constant force/s BUT There are many situations when the force on an object is not constant

Practice Problem Solutions. Identify the Goal The acceleration of the object Variables and Constants Known Implied Unknown m = 4.

Physics 6A. Practice Final (Fall 2009) solutions. Prepared by Vince Zaccone For Campus Learning Assistance Services at UCSB

Physics Sp Exam #3 Name:

Chapter 7. Impulse and Momentum

TP A.30 The effect of cue tip offset, cue weight, and cue speed on cue ball speed and spin

Name: Answer Key Date: Regents Physics. Energy

One Dimensional Collisions

Physics 20 Lesson 28 Simple Harmonic Motion Dynamics & Energy

Chapter 7 Impulse and Momentum. So far we considered only constant force/s BUT There are many situations when the force on an object is not constant

Today s s topics are: Collisions and Momentum Conservation. Momentum Conservation

Physics 11 HW #7 Solutions

Conservation of Momentum

Impulse and Momentum

Linear Momentum. calculate the momentum of an object solve problems involving the conservation of momentum. Labs, Activities & Demonstrations:

Discover the answer to this question in this chapter.

2. REASONING According to the impulse-momentum theorem, the rocket s final momentum mv f

PHY 171 Practice Test 3 Solutions Fall 2013

Page 1. t F t m v. N s kg s. J F t SPH4U. From Newton Two New Concepts Impulse & Momentum. Agenda

Practice Midterm #1 Solutions. Physics 6A

Page 1. Physics 131: Lecture 16. Today s Agenda. Collisions. Elastic Collision

v 24 m a = 5.33 Δd = 100 m[e] m[e] m[e] Δd = 550 m[e] BLM 2-6: Chapter 2 Test/Assessment Δd = + 10 s [E] uuv a = (10 0) s uuv a = (20 0)s

1.1 Speed and Velocity in One and Two Dimensions

increases. In part (b) the impulse and initial momentum are in opposite directions and the velocity decreases.

Physics 201, Lecture 15

We last left off by talking about how the area under a force vs. time curve is impulse.

Seat: PHYS 1500 (Fall 2006) Exam #2, V1. After : p y = m 1 v 1y + m 2 v 2y = 20 kg m/s + 2 kg v 2y. v 2x = 1 m/s v 2y = 9 m/s (V 1)

Lecture 6. Announcements. Conservation Laws: The Most Powerful Laws of Physics. Conservation Laws Why they are so powerful

CHAPTER 7 TEST REVIEW -- MARKSCHEME

CHAPTER 7: Linear Momentum

Conditions for equilibrium (both translational and rotational): 0 and 0

PHYSICS 211 MIDTERM II 12 May 2004

CHAPTER 7 IMPULSE AND MOMENTUM

Momentum. February 15, Table of Contents. Momentum Defined. Momentum Defined. p =mv. SI Unit for Momentum. Momentum is a Vector Quantity.

Physics 6A. Practice Midterm #2 solutions. Prepared by Vince Zaccone For Campus Learning Assistance Services at UCSB

Physics 6A. Practice Midterm #2 solutions

before the collision and v 1 f and v 2 f after the collision. Since conservation of the linear momentum

Physics Sp Exam #4 Name:

Physics Chapter 6. Momentum and Its Conservation

Represent each of the following combinations of units in the correct SI form using an appropriate prefix: (a) m/ms (b) μkm (c) ks/mg (d) km μn

Momentum and Collisions

15 N 5 N. Chapter 4 Forces and Newton s Laws of Motion. The net force on an object is the vector sum of all forces acting on that object.

Uniform Acceleration Problems Chapter 2: Linear Motion

ENGINEERING COUNCIL DYNAMICS OF MECHANICAL SYSTEMS D225 TUTORIAL 2 LINEAR IMPULSE AND MOMENTUM

= s = 3.33 s s. 0.3 π 4.6 m = rev = π 4.4 m. (3.69 m/s)2 = = s = π 4.8 m. (5.53 m/s)2 = 5.

Physics 2210 Fall smartphysics 20 Conservation of Angular Momentum 21 Simple Harmonic Motion 11/23/2015

THE BICYCLE RACE ALBERT SCHUELLER

PS 11 GeneralPhysics I for the Life Sciences

Phys101 Lectures 13, 14 Momentum and Collisions

1. A 500-kilogram car is driving at 15 meters/second. What's its kinetic energy? How much does the car weigh?

Phy 212: General Physics II 1/31/2008 Chapter 17 Worksheet: Waves II 1

CHAPTER 7 IMPULSE AND MOMENTUM

7. Momentum balances Partly based on Chapter 7 of the De Nevers textbook (sections ).

Practice Problems Solutions. 1. Frame the Problem - Sketch and label a diagram of the motion. Use the equation for acceleration.

s s 1 s = m s 2 = 0; Δt = 1.75s; a =? mi hr

Homework #6. 1. Continuum wave equation. Show that for long wavelengths the equation of motion,, reduces to the continuum elastic wave equation dt

Test, Lesson 4 Energy-Work-Power- Answer Key Page 1

Introduction to Particle Physics I relativistic kinematics. Risto Orava Spring 2017

Chapter 9 Impulse and Momentum

PHYSICS 151 Notes for Online Lecture 2.3

Physics 140 D100 Midterm Exam 2 Solutions 2017 Nov 10

Physics Circular Motion: Energy and Momentum Conservation. Science and Mathematics Education Research Group

Applied Physics I (Phys 182)

The University of Akron Descriptive Astronomy Department of Physics. 3650: Exam #2 SVD 10/12/17

CHAPTER 1 MOTION & MOMENTUM

5.1 m is therefore the maximum height of the ball above the window. This is 25.1 m above the ground. (b)

KEY. D. 1.3 kg m. Solution: Using conservation of energy on the swing, mg( h) = 1 2 mv2 v = 2mg( h)

Related Rates section 3.9

Momentum. Momentum. Momentum. January 25, momentum presentation Table of Contents. Momentum Defined. Grade:«grade»

Impulse. calculate the impulse given to an object calculate the change in momentum as the result of an impulse

Momentum. Conservation of Linear Momentum. Slide 1 / 140 Slide 2 / 140. Slide 3 / 140. Slide 4 / 140. Slide 6 / 140. Slide 5 / 140.

Work and Energy Problems

UNIT HOMEWORK MOMENTUM ANSWER KEY

Periodic Table of Physical Elements

Can a watch-sized electromagnet deflect a bullet? (from James Bond movie)

The product of force and perpendicular M Ncm. The point beyond which a spring does not

Physics 111: Mechanics Lecture 8

AP CHEM WKST KEY: Atomic Structure Unit Review p. 1

Concept of Reynolds Number, Re

Ch. 6 Single Variable Control ES159/259

SKAA 1213 Engineering Mechanics

Lecture 17: Frequency Response of Amplifiers

Elastic Collisions Definition Examples Work and Energy Definition of work Examples. Physics 201: Lecture 10, Pg 1

Topic 7 Fuzzy expert systems: Fuzzy inference

Midterm Review - Part 1

Chapter 8. Momentum, Impulse and Collisions. 10/22/14 Physics 218

Transcription:

Moentu and Iule Moentu Moentu i what Newton called the quantity of otion of an object. lo called Ma in otion The unit for oentu are: = oentu = a = elocity kg Moentu Moentu i affected by a and elocity eeding bullet ay hae the ae oentu a a low oing car The ore oentu an object ha, the ore force will be needed to change it otion Exale: It i hard to to a large, fat train What i the oentu of a 00 kg car driing at 6 /? = 00 kg = 6 / Iule Iule i the change in oentu Iule relate the tie and force needed to change an object oentu ( 00kg)(6 ) kg 57000 More contact e Le force needed Le contact e Le force needed 3 4 Iule Moentu Theore I = iule, but oetie J i ued. Iule t f i We know: Deriing Iule a a t Then ubtitute and rearrange The unit for iule are: N or kg a t t 1

Moentu and Iule Iule Exale What hould a boxer do when he get hit? t When a boxer roll with the unch he increae the contact tie of the unch. Thi ake the force uch aller. More Iule Exale Droing an egg on a illow will increae the tie of the oentu change. Thi lower the force. car ue an airbag to increae the tie the head change it oentu during an accident. car driing into a wall will change it oentu ery fat, reulting in a huge force. car hitting the brake and lowing down gradually will reult in ery low force. 7 8 Iule Moentu Theore I t f ) ( i I = iule = change oentu = force = a t = tie f = final elocity i = initial elocity What force doe it take to to a 00 kg car driing at 6 /? Cae 1 Ue brake for 1 econd Cae Crah into a wall Sto in 0. t ( f ) ( i 00kg (0 6 ) Coon unit for iule are: N kg 57000 10 What force doe it take to to a 00 kg car driing at 6 /? t t Cae 1 Ue brake for 1 econd 57000kg 700 N 1 What force doe it take to to a 00 kg car driing at 6 /? Cae Crah into a wall Sto in 0. 57000kg 60000 N 0. It i tyically afer to ue brake to to a car intead of uing wall. 11 1

Moentu and Iule Coneration of Moentu Total oentu in a yte doe not change. Moentu i tranferred between object Exale Equation (deend on ituation) i i i i f f f f Coneration of Moentu Each roble ut be analyzed to figure out what i going on. Do object: bounce away in ooite direction? Stick together? (Car crah) Searate? (ullet giing recoil) Tranfer oentu? (Pool ball) Chooe an aroriate coordinate yte to decribe the elocity of each object (+/ ) 13 14 n atronaut at ret in ace fire a thruter itol that exel 35 g of hot ga at 875 /. The cobined a of the atronaut and itol i 84 kg. How fat and in what direction i the atronaut oing after firing the itol? 0. 035kg 84 kg i 0 i 0 f 875 Object earate in ooite direction Deelo equation to ue i The initial ter dro out ince i = 0 / 0 f f f f f f 15 16 Sole for f Plug and Chug f f Elatic Colliion Thi occur when car bounce off each other. The ditance the car bounce deend on the original oentu 0.035kg 875 f 0.36 84 kg Negatie elocity ean ooite direction 17 i i i i f f f f 18 3

Moentu and Iule Inelatic Colliion Thi occur when car tick together. The car will cobine and oe in the direction of the car with greater oentu i i i i f ( ) f 1875 kg car going 3 / rear end a 105 kg coact car going 17 / on ice in the ae direction. The two car tick together. How fat do the two car oe together iediately after the colliion? 1875kg 105kg i 3 i 17 19 0 Object cobine, continue in ae direction Deelo equation to ue i i i i f ( ) Sole for f f i i f Plug and Chug i 1875kg 3 4315kg 105kg 17 1745kg i / 4315kg 1745kg f 1875kg 105kg f 0.8 1 Moentu in Two Dienion Each oentu (or elocity) ut be broken to x and y coonent (in, co, etc) Su coonent oenta (elocitie) and find the reultant oentu (elocity) Reeber to ue = for each oentu. Ue whicheer for, or, that i ore ueful. 3 Moentu in Two Dienion Exale object, and, crahing into each other fro different direction i,x + i,x = P f,x i,y + i,y = P f,y Reultant Moentu ngle fro x axi f tan f, x f 1 P P f f, x 4 4

Moentu and Iule 135 kg car,, oing north at 7.0 /, collide with a 165 kg car,, oing eat at 11.0 /. The two car are tuck together. In what direction and with what eed do they oe after the colliion? 135kg 165kg i 7 i 11 ind total oentu for each coonent i, x i, x f, x 135kg 7 0 35775kg i i, y f 165kg 11 3815kg 0 5 6 f ind reultant oentu f f, x f 3815kg 35775kg f 4976.8kg Relate oentu to elocity f f 7 Sole for f f f inding Direction 4976.8kg 135kg 165kg f 1.3 f 35775kg tan 1 N of E kg 56.4 3815 / 8 5