A piece of fruit falls straight down. As it falls,

Similar documents
At the skate park on the ramp

F N A) 330 N 0.31 B) 310 N 0.33 C) 250 N 0.27 D) 290 N 0.30 E) 370 N 0.26

WORK DONE BY A CONSTANT FORCE

Physics 2A, Sec B00: Mechanics -- Winter 2011 Instructor: B. Grinstein Final Exam

SHORT ANSWER. Write the word or phrase that best completes each statement or answers the question.

Chapter 8: Potential Energy and Conservation of Energy. Work and kinetic energy are energies of motion.

C B A T 3 T 2 T What is the magnitude of the force T 1? A) 37.5 N B) 75.0 N C) 113 N D) 157 N E) 192 N

AP Physics - Chapter 8 Practice Test

AP Physics C Fall Final Web Review

Chapter 6 Work and Energy

Chapter 5 Using Newton s Laws: Friction, Circular Motion, Drag Forces. Copyright 2009 Pearson Education, Inc.

10.1 Quantitative. Answer: A Var: 50+

Physics 125 Practice Exam #3 Chapters 6-7 Professor Siegel

Name Partners Date. Energy Diagrams I

Supplemental Questions

Ch 8 Potential energy and Conservation of Energy. Question: 2, 3, 8, 9 Problems: 3, 9, 15, 21, 24, 25, 31, 32, 35, 41, 43, 47, 49, 53, 55, 63

9. The kinetic energy of the moving object is (1) 5 J (3) 15 J (2) 10 J (4) 50 J

Review Assessment: Lec 02 Quiz

Physics 2048 Test 1 Solution (solutions to problems 2-5 are from student papers) Problem 1 (Short Answer: 20 points)

physics 111N work & energy

Educator Guide to S LAR SYSTEM El Prado, San Diego CA (619)

Chapter 7: Momentum and Impulse

Curso Física Básica Experimental I Cuestiones Tema IV. Trabajo y energía.

Two-Body System: Two Hanging Masses

B) 286 m C) 325 m D) 367 m Answer: B

Work, Power, Energy Multiple Choice. PSI Physics. Multiple Choice Questions

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

Sample Questions for the AP Physics 1 Exam

AP Physics 1 Midterm Exam Review

Weight The weight of an object is defined as the gravitational force acting on the object. Unit: Newton (N)

PHY231 Section 2, Form A March 22, Which one of the following statements concerning kinetic energy is true?

Projectile Motion 1:Horizontally Launched Projectiles

Conceptual Questions: Forces and Newton s Laws

Name: Partners: Period: Coaster Option: 1. In the space below, make a sketch of your roller coaster.

KE =? v o. Page 1 of 12

8. Potential Energy and Conservation of Energy Potential Energy: When an object has potential to have work done on it, it is said to have potential

Conservative vs. Non-conservative forces Gravitational Potential Energy. Work done by non-conservative forces and changes in mechanical energy

VELOCITY, ACCELERATION, FORCE

Problem Set #8 Solutions

circular motion & gravitation physics 111N

Exam 2 is at 7 pm tomorrow Conflict is at 5:15 pm in 151 Loomis

FRICTION, WORK, AND THE INCLINED PLANE

Physics: Principles and Applications, 6e Giancoli Chapter 4 Dynamics: Newton's Laws of Motion

Worksheet #1 Free Body or Force diagrams

Problem Set V Solutions

Use the following information to deduce that the gravitational field strength at the surface of the Earth is approximately 10 N kg 1.

PHY231 Section 1, Form B March 22, 2012

Review D: Potential Energy and the Conservation of Mechanical Energy

TEACHER ANSWER KEY November 12, Phys - Vectors

P211 Midterm 2 Spring 2004 Form D

The University of the State of New York REGENTS HIGH SCHOOL EXAMINATION PHYSICAL SETTING PHYSICS. Tuesday, June 22, :15 a.m. to 12:15 p.m.

BHS Freshman Physics Review. Chapter 2 Linear Motion Physics is the oldest science (astronomy) and the foundation for every other science.

HW Set VI page 1 of 9 PHYSICS 1401 (1) homework solutions

Physics 41 HW Set 1 Chapter 15

Roanoke Pinball Museum Key Concepts

Work, Energy & Momentum Homework Packet Worksheet 1: This is a lot of work!

III. Applications of Force and Motion Concepts. Concept Review. Conflicting Contentions. 1. Airplane Drop 2. Moving Ball Toss 3. Galileo s Argument

PHYSICS 111 HOMEWORK SOLUTION #10. April 8, 2013

PHYS 117- Exam I. Multiple Choice Identify the letter of the choice that best completes the statement or answers the question.

Chapter 4: Newton s Laws: Explaining Motion

Review Chapters 2, 3, 4, 5

LAB 6: GRAVITATIONAL AND PASSIVE FORCES

CHAPTER 6 WORK AND ENERGY

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

ch 15 practice test Multiple Choice Identify the letter of the choice that best completes the statement or answers the question.

LAB 6 - GRAVITATIONAL AND PASSIVE FORCES

AP Physics Applying Forces

The University of the State of New York REGENTS HIGH SCHOOL EXAMINATION PHYSICAL SETTING PHYSICS. Friday, June 20, :15 to 4:15 p.m.

EDUH SPORTS MECHANICS

Work Energy & Power. September 2000 Number Work If a force acts on a body and causes it to move, then the force is doing work.

Physics: Principles and Applications, 6e Giancoli Chapter 2 Describing Motion: Kinematics in One Dimension

Tennessee State University

1 of 7 9/5/2009 6:12 PM

AP Physics C. Oscillations/SHM Review Packet

Catapult Engineering Pilot Workshop. LA Tech STEP

Physics 11 Assignment KEY Dynamics Chapters 4 & 5

The University of the State of New York REGENTS HIGH SCHOOL EXAMINATION PHYSICAL SETTING PHYSICS. Thursday, June 13, :15 to 4:15 p.m.

Work, Energy, Conservation of Energy

Potential Energy and Equilibrium in 1D

Work-Energy Bar Charts

Speed A B C. Time. Chapter 3: Falling Objects and Projectile Motion

Chapter 3 Falling Objects and Projectile Motion

PHYS 211 FINAL FALL 2004 Form A

AS COMPETITION PAPER 2008

Displacement (x) Velocity (v) Acceleration (a) x = f(t) differentiate v = dx Acceleration Velocity (v) Displacement x

Lecture 7 Force and Motion. Practice with Free-body Diagrams and Newton s Laws

Serway_ISM_V1 1 Chapter 4

5-Minute Refresher: FRICTION

5. Forces and Motion-I. Force is an interaction that causes the acceleration of a body. A vector quantity.

HW Set II page 1 of 9 PHYSICS 1401 (1) homework solutions

Energy and Energy Transformations Test Review

1. Mass, Force and Gravity

226 Chapter 15: OSCILLATIONS

Chapter 07 Test A. Name: Class: Date: Multiple Choice Identify the choice that best completes the statement or answers the question.

Longitudinal and lateral dynamics

Chapter 3.8 & 6 Solutions

Lecture 07: Work and Kinetic Energy. Physics 2210 Fall Semester 2014

Forces. Definition Friction Falling Objects Projectiles Newton s Laws of Motion Momentum Universal Forces Fluid Pressure Hydraulics Buoyancy

STATIC AND KINETIC FRICTION

Transcription:

Q7.1 A piece of fruit falls straight down. As it falls, A. the gravitational force does positive work on it and the gravitational potential energy increases. B. the gravitational force does positive work on it and the gravitational potential energy decreases. C. the gravitational force does negative work on it and the gravitational potential energy increases. D. the gravitational force does negative work on it and the gravitational potential energy decreases.

A7.1 A piece of fruit falls straight down. As it falls, A. the gravitational force does positive work on it and the gravitational potential energy increases. B. the gravitational force does positive work on it and the gravitational potential energy decreases. C. the gravitational force does negative work on it and the gravitational potential energy increases. D. the gravitational force does negative work on it and the gravitational potential energy decreases.

Q7.2 You toss a 0.150-kg baseball straight upward so that it leaves your hand moving at 20.0 m/s. The ball reaches a maximum height y 2. What is the speed of the ball when it is at a height of y 2 /2? Ignore air resistance. A. 10.0 m/s B. less than 10.0 m/s but greater than zero C. greater than 10.0 m/s v 2 = 0 v 1 = 20.0 m/s m = 0.150 kg D. not enough information given to decide y 2 y 1 = 0

A7.2 You toss a 0.150-kg baseball straight upward so that it leaves your hand moving at 20.0 m/s. The ball reaches a maximum height y 2. What is the speed of the ball when it is at a height of y 2 /2? Ignore air resistance. A. 10.0 m/s B. less than 10.0 m/s but greater than zero C. greater than 10.0 m/s v 2 = 0 v 1 = 20.0 m/s m = 0.150 kg D. not enough information given to decide y 2 y 1 = 0

Q7.3 As a rock slides from A to B along the inside of this frictionless hemispherical bowl, mechanical energy is conserved. Why? (Ignore air resistance.) A. The bowl is hemispherical. B. The normal force is balanced by centrifugal force. C. The normal force is balanced by centripetal force. D. The normal force acts perpendicular to the bowl s surface. E. The rock s acceleration is perpendicular to the bowl s surface.

A7.3 As a rock slides from A to B along the inside of this frictionless hemispherical bowl, mechanical energy is conserved. Why? (Ignore air resistance.) A. The bowl is hemispherical. B. The normal force is balanced by centrifugal force. C. The normal force is balanced by centripetal force. D. The normal force acts perpendicular to the bowl s surface. E. The rock s acceleration is perpendicular to the bowl s surface.

Q7.4 The two ramps shown are both frictionless. The heights y 1 and y 2 are the same for each ramp. A block of mass m is released from rest at the left-hand end of each ramp. Which block arrives at the righthand end with the greater speed? A. the block on the curved track B. the block on the straight track C. Both blocks arrive at the right-hand end with the same speed. D. The answer depends on the shape of the curved track.

A7.4 The two ramps shown are both frictionless. The heights y 1 and y 2 are the same for each ramp. A block of mass m is released from rest at the left-hand end of each ramp. Which block arrives at the righthand end with the greater speed? A. the block on the curved track B. the block on the straight track C. Both blocks arrive at the right-hand end with the same speed. D. The answer depends on the shape of the curved track.

Q7.5 A block is released from rest on a frictionless incline as shown. When the moving block is in contact with the spring and compressing it, what is happening to the gravitational potential energy U grav and the elastic potential energy U el? A. U grav and U el are both increasing. B. U grav and U el are both decreasing. C. U grav is increasing; U el is decreasing. D. U grav is decreasing; U el is increasing. E. The answer depends on how the block s speed is changing.

A7.5 A block is released from rest on a frictionless incline as shown. When the moving block is in contact with the spring and compressing it, what is happening to the gravitational potential energy U grav and the elastic potential energy U el? A. U grav and U el are both increasing. B. U grav and U el are both decreasing. C. U grav is increasing; U el is decreasing. D. U grav is decreasing; U el is increasing. E. The answer depends on how the block s speed is changing.

Q7.6 The graph shows the potential energy U for a particle that moves along the x-axis. The particle is initially at x = d and moves in the negative x- direction. At which of the labeled x-coordinates does the particle have the greatest speed? A. at x = a B. at x = b C. at x = c D. at x = d E. more than one of the above

A7.6 The graph shows the potential energy U for a particle that moves along the x-axis. The particle is initially at x = d and moves in the negative x- direction. At which of the labeled x-coordinates does the particle have the greatest speed? A. at x = a B. at x = b C. at x = c D. at x = d E. more than one of the above

Q7.7 The graph shows the potential energy U for a particle that moves along the x-axis. The particle is initially at x = d and moves in the negative x- direction. At which of the labeled x-coordinates is the particle slowing down? A. at x = a B. at x = b C. at x = c D. at x = d E. more than one of the above

A7.7 The graph shows the potential energy U for a particle that moves along the x-axis. The particle is initially at x = d and moves in the negative x- direction. At which of the labeled x-coordinates is the particle slowing down? A. at x = a B. at x = b C. at x = c D. at x = d E. more than one of the above

Q7.8 The graph shows the potential energy U for a particle that moves along the x-axis. At which of the labeled x-coordinates is there zero force on the particle? A. at x = a and x = c B. at x = b only C. at x = d only D. at x = b and d E. misleading question there is a force at all values of x

A7.8 The graph shows the potential energy U for a particle that moves along the x-axis. At which of the labeled x-coordinates is there zero force on the particle? A. at x = a and x = c B. at x = b only C. at x = d only D. at x = b and d E. misleading question there is a force at all values of x

Q7.9 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x = 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. U = 0 at x = a B. U is a maximum at x = a. C. U is a minimum at x = a. D. U is neither a minimum or a maximum at x = a, and its value at x = a need not be zero.

A7.9 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x = 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. U = 0 at x = a B. U is a maximum at x = a. C. U is a minimum at x = a. D. U is neither a minimum or a maximum at x = a, and its value at x = a need not be zero.

Q7.10 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x = 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. U = 0 at x = a B. U is a maximum at x = a. C. U is a minimum at x = a. D. U is neither a minimum or a maximum at x = a, and its value at x = a need not be zero.

A7.10 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x = 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. U = 0 at x = a B. U is a maximum at x = a. C. U is a minimum at x = a. D. U is neither a minimum or a maximum at x = a, and its value at x = a need not be zero.

Q7.11 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x > 0 and df x /dx < 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. du/dx > 0 at x = a B. du/dx < 0 at x = a C. du/dx = 0 at x = a D. Any of the above could be correct.

A7.11 The graph shows a conservative force F x as a function of x in the vicinity of x = a. As the graph shows, F x > 0 and df x /dx < 0 at x = a. Which statement about the associated potential energy function U at x = a is correct? 0 F x a x A. du/dx > 0 at x = a B. du/dx < 0 at x = a C. du/dx = 0 at x = a D. Any of the above could be correct.

Q7.12 You push a block up an inclined ramp at a constant speed. There is friction between the block and the ramp. The rate at which the internal energy of the block and ramp increases is A. greater than the rate at which you do work on the block. B. the same as the rate at which you do work on the block. C. less than the rate at which you do work on the block. D. not enough information given to decide

A7.12 You push a block up an inclined ramp at a constant speed. There is friction between the block and the ramp. The rate at which the internal energy of the block and ramp increases is A. greater than the rate at which you do work on the block. B. the same as the rate at which you do work on the block. C. less than the rate at which you do work on the block. D. not enough information given to decide