Exam 2 Phys Fall 2002 Version A. Name ID Section

Similar documents
University Physics (Prof. David Flory) Chapt_06 Saturday, October 06, 2007 Page 1

Phys101 Second Major-162 Zero Version Coordinator: Dr. Kunwar S. Saturday, March 25, 2017 Page: 1

You may use g = 10 m/s 2, sin 60 = 0.87, and cos 60 = 0.50.

Q16.: A 5.0 kg block is lowered with a downward acceleration of 2.8 m/s 2 by means of a rope. The force of the block on the rope is:(35 N, down)

Physics for Scientist and Engineers third edition Newton s Laws. Example Problem. Variables. Drawing. Solution. Answer: O, 10 N, 20 N, 38N, 39N, 29N

PHYS 124 Section A1 Mid-Term Examination Spring 2006 SOLUTIONS

w = mg Use: g = 10 m/s 2 1 hour = 60 min = 3600 sec

(a) On the dots below that represent the students, draw and label free-body diagrams showing the forces on Student A and on Student B.

Lecture PowerPoints. Chapter 5 Physics for Scientists & Engineers, with Modern Physics, 4 th edition. Giancoli

66 Chapter 6: FORCE AND MOTION II

AP Physics Free Response Practice Dynamics

= 40 N. Q = 60 O m s,k

MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question. Diagram 1 A) B - A. B) A - B. C) A + B. D) A B.

Phys 1401: General Physics I

Physics 218 Exam II. Fall 2017 (all sections) October 25 th, 2017

PHYSICS 221 SPRING EXAM 1: February 20, 2014; 8:15pm 10:15pm

OPEN ONLY WHEN INSTRUCTED

Physics Exam 2 October 11, 2007

Phys101 Second Major-162 Zero Version Coordinator: Dr. Kunwar S. Saturday, March 25, 2017 Page: N Ans:

1. A sphere with a radius of 1.7 cm has a volume of: A) m 3 B) m 3 C) m 3 D) 0.11 m 3 E) 21 m 3

Multiple Choice (A) (B) (C) (D)

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

Physics 53 Summer Exam I. Solutions

8.01x Classical Mechanics, Fall 2016 Massachusetts Institute of Technology. Problem Set 2

Webreview practice test. Forces (again)

Choose the best answer for Questions 1-15 below. Mark your answer on your scantron form using a #2 pencil.

On my honor, I have neither given nor received unauthorized aid on this examination.

Elementary Physics October 8, 2007

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

Review: Advanced Applications of Newton's Laws

Exam 1 Solutions. PHY 2048 Spring 2014 Acosta, Rinzler. Note that there are several variations of some problems, indicated by choices in parentheses.

CHAPTER 4 TEST REVIEW -- Answer Key

Phys101 Second Major-131 Zero Version Coordinator: Dr. A. A. Naqvi Sunday, November 03, 2013 Page: 1

PHYS 101 Previous Exam Problems. Force & Motion I

Show all work in answering the following questions. Partial credit may be given for problems involving calculations.

PHYS 100 (from 221) Newton s Laws Week8. Exploring the Meaning of Equations

Physics B Newton s Laws AP Review Packet

AP* Circular & Gravitation Free Response Questions

AP Physics C: Mechanics Practice (Newton s Laws including friction, resistive forces, and centripetal force).

Reading Quiz. Chapter 5. Physics 111, Concordia College

Physics 101. Hour Exam I Spring Last Name: First Name Network-ID Discussion Section: Discussion TA Name:

Physics 101. Hour Exam I Fall Last Name: First Name Network-ID Discussion Section: Discussion TA Name:

1 A car moves around a circular path of a constant radius at a constant speed. Which of the following statements is true?

Student AP Physics 1 Date. Newton s Laws B FR

ω = k/m x = A cos (ωt + ϕ 0 ) L = I ω a x = ω 2 x P = F v P = de sys J = F dt = p w = m g F G = Gm 1m 2 D = 1 2 CρAv2 a r = v2

Physics I (Navitas) FINAL EXAM Fall 2015

Newton s Laws.

Announcements 24 Sep 2013

Old Exam. Question Chapter 7 072

HATZIC SECONDARY SCHOOL

Chapter 5 Applying Newton s Laws

B C = B 2 + C 2 2BC cosθ = (5.6)(4.8)cos79 = ) The components of vectors B and C are given as follows: B x. = 6.

Physics 116A, Section 2, Second Exam Version B, February 26, Name (Please print)

Physics 116A, Section 2, Second Exam A, February 26, Name (Please print)

Twentieth SLAPT Physics Contest Southern Illinois University Edwardsville April 30, Mechanics Test

Phys 1401: General Physics I

Phys101 Second Major-152 Zero Version Coordinator: Dr. W. Basheer Monday, March 07, 2016 Page: 1

AP PHYSICS 1 UNIT 3 PRACTICE TEST

Name ID Section. 1. One mile is equal to 1609 m; 1 hour is equal to 3600 s. The highway speed limit of 65 mph is equivalent to the speed of:

End-of-Chapter Exercises

Isaac Newton ( ) 1687 Published Principia Invented Calculus 3 Laws of Motion Universal Law of Gravity

Physics 101. Hour Exam I Fall Last Name: First Name Network-ID Discussion Section: Discussion TA Name:

PSI AP Physics B Dynamics

The diagram below shows a block on a horizontal frictionless surface. A 100.-newton force acts on the block at an angle of 30. above the horizontal.

Friction is always opposite to the direction of motion.

UIC PHYSICS 105 Fall st Midterm Exam

Forces & Newton s Laws FR Practice Problems

IB Questionbank Physics NAME. IB Physics 2 HL Summer Packet

Physics 6A TR Section Winter 2012 Midterm

PHYSICS 221, FALL 2009 EXAM #1 SOLUTIONS WEDNESDAY, SEPTEMBER 30, 2009

TYPICAL NUMERIC QUESTIONS FOR PHYSICS I REGULAR QUESTIONS TAKEN FROM CUTNELL AND JOHNSON CIRCULAR MOTION CONTENT STANDARD IB

Physics 121, Final Exam Do not turn the pages of the exam until you are instructed to do so.

UNIVERSITY OF SASKATCHEWAN Department of Physics and Engineering Physics

Family Name (Please print Given Name(s) Student Number Tutorial Group in BLOCK LETTERS) as on student card Code (eg. R3C,etc)

Dynamics-Friction. 1. Which vector diagram best represents a cart slowing down as it travels to the right on a horizontal surface?

PHYSICS 221, FALL 2010 EXAM #1 Solutions WEDNESDAY, SEPTEMBER 29, 2010

A. B. C. D. E. v x. ΣF x

UNIVERSITY OF SASKATCHEWAN Department of Physics and Engineering Physics

Physics 2211 ABC Quiz #3 Solutions Spring 2017

Hint 1. The direction of acceleration can be determined from Newton's second law

>>>>>>>>WHEN YOU FINISH <<<<<<<< Hand in the answer sheet separately. Formula-sheet: Exam 1. For constant acceleration a:

General Physics Physics 101 Test #2 Spring 2017 Wednesday 3/1/17 Prof. Bob Ekey

The next two questions pertain to the situation described below.

Kinematics. v (m/s) ii. Plot the velocity as a function of time on the following graph.

Fraser Heights Secondary Physics 11 Mr. Wu Practice Test (Dynamics)

3. The diagram shows two bowling balls, A and B, each having a mass of 7.00 kilograms, placed 2.00 meters apart.

Circular Motion.

Physics I Exam 2 Spring 2015 (version A)

University of Guelph. Department of Physics

Physics 23 Exam 2 March 3, 2009

P F = ma Newton's Laws Hmk

ΣF=ma SECOND LAW. Make a freebody diagram for EVERY problem!

Phys101 First Major-061 Zero Version Coordinator: Abdelmonem Monday, October 30, 2006 Page: 1

This is a closed book exam. You have ninety (90) minutes to complete it.

Physics 218 Exam II. Spring 2018 (all UP sections) March 19 th, 2018

Physics 111: Mechanics Lecture 9

HATZIC SECONDARY SCHOOL

Applying Newton s Laws

PRACTICE TEST for Midterm Exam

Physics 2101, First Exam, Spring 2008

Transcription:

Closed book exam - Calculators are allowed. Only the official formula sheet downloaded from the course web page can be used. You are allowed to write notes on the back of the formula sheet. Use the scantron forms (pencil only!) for the multiple choice problems. Circle the ansers on the examination sheet as well, and return it together with the scantron form. Use the back of these page, or attache your own pages with solutions for the problems which require calcuations. The multiple-choice problems are 1 point each. Work out problems are 4 points each. Passing of the exam requires at least 50% of the maximum number of points. Clearly print your last name and indicate your section number on both the scantron form and the examination sheet. Also indicate your name and ID on each of the two sheets with work-out problems since they will be graded separately. Failure to do any of these will result in a penalty of 2 points. Problem 1: Please mark the version of the exam you are taking A) YOU ARE TAKING VERSION A B) C) D) E) Problem 2: Find the mass of an object whose initial speed of 4 m/s is reduced to zero with a constant 4 N force in 2 seconds. B) 0.5 kg B) 2 kg C) 4 kg D) 8 kg E) 16 kg Problem 3: Two forces acting on an object of mass 5.0 kg give rise to an acceleration a = (2.0 m/s 2 )i + (3.0 m/s 2 )j. One of the forces is F 1 = (10 N)i (4 N)j. The other must be A) F 2 = (10 N)i + (15 N)j B) F 2 = (20 N)i + (11 N)j C) F 2 = (10 N)i D) F 2 = (12 N)i (1 N)j E) F 2 = (19 N)j Problem 4: A 5 kg lamp is suspended by a string from the ceiling inside an elevator moving up with decreasing speed. If the magnitude of the elevator s acceleration is 3 m/s 2, what is the tension in the string? A) 64 N B) 49 N C) 34 N D) 15 N E) 60 N Problem 5: A 10 kg block is dragged along a horizontal frictionless surface with a 100 N force that makes an angle of 25 o with the horizontal. The normal force exerted by the surface on the block is Page 1 of 5

A) 98 N B) 140 N C) 7.4 N D) 56 N E) 2 N Problem 6: A block initially moving at 4 m/s upwards on an incline comes to rest after traveling 5 m up the incline. What is the angle between the incline and the horizontal in degrees? A) 9.4 B) 81 C) 45 D) 53 E) 6.7 Problem 7: The tension in the string on the right of the right block is 36 N. Each block has a mass of 2 kg. The surface is frictionless. What is the tension in the string between the blocks? A) 9 N B) 36 N C) 18 N D) 12 N E) 27 N Problem 8: A 2000kg car slides on the ice and stops in 20m due to the frictional force between the car and the ice. If the initial speed of the car is 5 m/s, the coefficient of kinetic friction between the ice and car is: A) 0. B) 0.064 C) 0.013 D) 1.0 E) 9.8 Problem 9: A block of mass 5kg is pulled along a horizontal floor by a force of 20N as shown in the figure. The coefficient of static friction is 0.4. The coefficient of dynamic friction is 0.2. the magnitude of the acceleration of the block is A) The block does not accelerate. The 20N force is not strong enough. B) The acceleration is zero, but the block moves at constant velocity. C) 2.04 m/s 2 D) 0.24 m/s 2 E) 9.8 m/s 2 Problem 10: As shown in the Figure below, a sled is pulled up a snow covered hill by a force F. The angle of the slope is 25 degrees. The weight of the sled is 100N. Which of the labeled arrows below indicate the DIRECTION of the frictional force? A) Arrow 1 B) Arrow 2 C) Arrow 3 D) Arrow 4 E) None of the above Page 2 of 5

Problem 11: Referring to the sled problem above, the coefficient of static friction is 0.25 and the coefficient of kinetic friction is 0.15. What value of F is required such that the sled moves at a constant velocity? A) 56 N B) 65 N C) 42 N D) 91 N E) 100 N Problem 12: A ball a mass 0.5kg is tied to a string. The ball is swung in a circle (in the absence of gravity) in a circle of radius 2m. For the diagrams below, which correctly shows the relative directions of the centripetal force (P) acting on the ball and the velocity (v) of the ball. A) Figure 1 B) Figure 2 C) Figure 3 D) Figure 4 E) Figure 5 Problem 13: Referring to the problem above with the ball moving in circular motion, if the time for the ball to complete one revolution is 0.5 seconds, the magnitude of the centripetal acceleration is A) 9.8 m/s 2 B) 4 m/s 2 C) 25 m/s 2 D) 157 m/s 2 E) 316 m/s 2 Page 3 of 5

WORKOUT PROBLEM 1: [ 1 point for each part] For the diagram shown, assume that the pulley is massless and frictionless, the incline is frictionless, the string is massless, M = 4.0 kg and Θ = 43 o. Starting from rest, the mass M moves downhill with a speed that is increasing at a rate of 2.0 m/s 2. a) Draw the free-body-diagram of each of the objects. b) Write components of Newton s 2nd Law of Motion for each of the masses using symbols only (M, m, Θ, g etc.) c) Solve the equations in part b using the data supplied and find the tension in the string T and the mass m. d) What value of m would have given an uphill motion of M with constant speed? Page 4 of 5

WORKOUT PROBLEM 2: (a) [3 points] A 2000 kg race car is rounding a level curve at a speed of 50m/s. If the coefficient of static friction between the road and the tires is 0.5, what is the minimum radius of the curve for which the car can round the curve without skidding? (b) [1 point] If the curve is banked rather than flat, does the minimum radius at which the car can turn without skidding at 50m/s increase or decrease compared to the case of a flat curve? IN ORDER TO RECEIVE CREDIT, YOU MUST JUSTIFY YOUR ANSWER using a diagram and a brief explanation. Page 5 of 5