104 Practice Exam 2-3/21/02



Similar documents
Physics 25 Exam 3 November 3, 2009


45. The peak value of an alternating current in a 1500-W device is 5.4 A. What is the rms voltage across?

Physics 121 Sample Common Exam 3 NOTE: ANSWERS ARE ON PAGE 6. Instructions: 1. In the formula F = qvxb:

PHYS 222 Spring 2012 Final Exam. Closed books, notes, etc. No electronic device except a calculator.

Induced voltages and Inductance Faraday s Law

Phys222 Winter 2012 Quiz 4 Chapters Name

Homework # Physics 2 for Students of Mechanical Engineering

1. The diagram below represents magnetic lines of force within a region of space.

Physics 112 Homework 5 (solutions) (2004 Fall) Solutions to Homework Questions 5

Direction of Induced Current

Physics 6C, Summer 2006 Homework 2 Solutions

Magnetism. d. gives the direction of the force on a charge moving in a magnetic field. b. results in negative charges moving. clockwise.

physics 112N magnetic fields and forces

Chapter 19 Magnetic Forces and Fields

Review Questions PHYS 2426 Exam 2

2. A conductor of length 2m moves at 4m/s at 30 to a uniform magnetic field of 0.1T. Which one of the following gives the e.m.f. generated?

PHY114 S11 Term Exam 3

ElectroMagnetic Induction. AP Physics B

12. The current in an inductor is changing at the rate of 100 A/s, and the inductor emf is 40 V. What is its self-inductance?

Force on Moving Charges in a Magnetic Field

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

Refraction of Light at a Plane Surface. Object: To study the refraction of light from water into air, at a plane surface.

i( t) L i( t) 56mH 1.1A t = τ ln 1 = ln 1 ln ms

TEACHER S CLUB EXAMS GRADE 11. PHYSICAL SCIENCES: PHYSICS Paper 1

Force on a square loop of current in a uniform B-field.

UNIVERSITY OF SASKATCHEWAN Department of Physics and Engineering Physics

PHYSICS PAPER 1 (THEORY)

The purposes of this experiment are to test Faraday's Law qualitatively and to test Lenz's Law.

1. Units of a magnetic field might be: A. C m/s B. C s/m C. C/kg D. kg/c s E. N/C m ans: D

Lesson 3 DIRECT AND ALTERNATING CURRENTS. Task. The skills and knowledge taught in this lesson are common to all missile repairer tasks.

Candidate Number. General Certificate of Education Advanced Level Examination June 2010

Chapter 11. Inductors ISU EE. C.Y. Lee

( )( 10!12 ( 0.01) 2 2 = 624 ( ) Exam 1 Solutions. Phy 2049 Fall 2011

Circuits with inductors and alternating currents. Chapter 20 #45, 46, 47, 49

General Physics (PHY 2140)

Experiment 8: Undriven & Driven RLC Circuits

Conceptual: 1, 3, 5, 6, 8, 16, 18, 19. Problems: 4, 6, 8, 11, 16, 20, 23, 27, 34, 41, 45, 56, 60, 65. Conceptual Questions

Sample Questions for the AP Physics 1 Exam

AP Physics Electricity and Magnetism #4 Electrical Circuits, Kirchoff s Rules

Electromagnetism Extra Study Questions Short Answer

Practice final for Basic Physics spring 2005 answers on the last page Name: Date:

AP2 Magnetism. (c) Explain why the magnetic field does no work on the particle as it moves in its circular path.

Diodes have an arrow showing the direction of the flow.

Slide 1 / 26. Inductance by Bryan Pflueger

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

potential in the centre of the sphere with respect to infinity.

PHYS 101-4M, Fall 2005 Exam #3. MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.

The University of the State of New York REGENTS HIGH SCHOOL EXAMINATION PHYSICAL SETTING PHYSICS. Wednesday, June 17, :15 to 4:15 p.m.

Chapter 35 Alternating Current Circuits

Code number given on the right hand side of the question paper should be written on the title page of the answerbook by the candidate.

Physics 30 Worksheet #10 : Magnetism From Electricity

AP Physics - Chapter 8 Practice Test

Faraday s Law of Induction

Aircraft Electrical System

Inductors & Inductance. Electronic Components

Chapter 30 - Magnetic Fields and Torque. A PowerPoint Presentation by Paul E. Tippens, Professor of Physics Southern Polytechnic State University

Lecture 22. Inductance. Magnetic Field Energy. Outline:

Solution Derivations for Capa #11

Quiz: Work and Energy

Inductance. Motors. Generators

MASSACHUSETTS INSTITUTE OF TECHNOLOGY Department of Physics Spring 2013 Conflict Exam Two Solutions

GRAAD 12 NATIONAL SENIOR CERTIFICATE GRADE 11

An equivalent circuit of a loop antenna.

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.

Pre-lab Quiz/PHYS 224 Magnetic Force and Current Balance. Your name Lab section

Candidate Number. General Certificate of Education Advanced Level Examination June 2014

DOE FUNDAMENTALS HANDBOOK ELECTRICAL SCIENCE Volume 3 of 4

Rectifier circuits & DC power supplies

Inductors in AC Circuits

Objectives. Capacitors 262 CHAPTER 5 ENERGY

1. A wire carries 15 A. You form the wire into a single-turn circular loop with magnetic field 80 µ T at the loop center. What is the loop radius?

Chapter 27 Magnetic Field and Magnetic Forces

EE301 Lesson 14 Reading: , , and

Physical Quantities, Symbols and Units

PHY121 #8 Midterm I

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

Chapter 22: Electric motors and electromagnetic induction

Physics 2102 Lecture 19. Physics 2102

Q27.1 When a charged particle moves near a bar magnet, the magnetic force on the particle at a certain point depends

Electricity & Electronics 5: Alternating Current and Voltage

Chapter 19: Magnetic Forces and Fields

Chapter 12 Driven RLC Circuits

BASIC ELECTRONICS AC CIRCUIT ANALYSIS. December 2011

Candidate Number. General Certificate of Education Advanced Level Examination June 2012

Three phase circuits

Eðlisfræði 2, vor 2007

Alternating-Current Circuits

Cambridge International Examinations Cambridge International General Certificate of Secondary Education

ε: Voltage output of Signal Generator (also called the Source voltage or Applied

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

Chapter 22 Magnetism

PHYS 211 FINAL FALL 2004 Form A

Cambridge International Examinations Cambridge International Advanced Subsidiary and Advanced Level

The DC Motor. Physics 1051 Laboratory #5 The DC Motor

Magnetic Field of a Circular Coil Lab 12

Chapter 10. Faraday s Law of Induction

Physics 221 Experiment 5: Magnetic Fields

Practice Test SHM with Answers

Eðlisfræði 2, vor 2007

Transcription:

104 Practice Exam 2-3/21/02 1. Two electrons are located in a region of space where the magnetic field is zero. Electron A is at rest; and electron B is moving westward with a constant velocity. A non-zero magnetic field directed eastward is then applied to the region. In what direction, if any, will each electron be moving after the field is applied? electron A electron B at rest westward northward eastward at rest eastward southward downward, toward the earth upward, away from earth westward 2. A loop of wire with a weight of 1.47N is oriented vertically and carries a current I = 1.75 A. A segment of the wire passes through a magnetic field directed into the plane of the page as shown. The net force on the wire is measured using a balance and found to be zero. What is the magnitude of the magnetic field? zero 0.51 T 0.84 T 1.5 T 4.2 T 3. A solenoid of length 0.25 m and radius 0.02 m is comprised of 120 turns of wire. Determine the magnitude of the magnetic field at the center of the solenoid when it carries a current of 15 A. 2.26 > 10 K 3 T 4.52 > 10 K 3 T 9.05 > 10 K 3 T 7.50 > 10 K 3 T zero 1

4. A rectangular loop has sides of length 0.06 m and 0.08 m. The wire carries a current of 10 A in the direction shown. The loop is in a uniform magnetic field of magnitude 0.2 T and directed in the positive x direction. What is the magnitude of the torque on the loop? 4.2 > 10 K 2 N@m 4.8 > 10 K 2 N@m 4.8 > 10 K 3 N@m 8.3 > 10 K 3 N@m 9.6 > 10 K 3 N@m 5. A coil of wire with a resistance of 0.15 Ω has a self-inductance of 0.083 H. If a 5.0-V battery is connected across the ends of the coil and the current in the circuit reaches an equilibrium value, what is the stored energy in the inductor? 92 J 46 J 16 J 4.1 J 1.4 J 2

6. Four long, straight wires are parallel to each other; and their cross-section forms a square. Each side of the square is 0.02 m as shown in the figure. If each wire carries a current of 8.0 A in the direction shown in the figure, determine the magnitude of the total magnetic field at P, the center of the square. 5.1 > 10 K 5 T 1.1 > 10 K 4 T 1.7 > 10 K 4 T 2.3 > 10 K 4 T zero The figure shows a uniform, 3.0-T magnetic field that is normal to the plane of a conducting, circular loop with a resistance of 1.5 Ω and a radius of 0.024 m. The magnetic field is directed out of the paper as shown. Note: The area of the non-circular portion of the wire is considered negligible compared to that of the circular loop. 7. What is the average current around the loop if the magnitude of the magnetic field is doubled in 0.4 s? 2.8 > 10 K 3 A, clockwise 4.5 > 10 K 3 A, clockwise 4.5 > 10 K 3 A, counterclockwise 9.0 > 10 K 3 A, clockwise 9.0 > 10 K 3 A, counterclockwise 3

Two coils, 1 and 2, with iron cores are positioned as shown in the figure. Coil 1 is part of a circuit with a battery and a switch. 8. Assume that S has been closed for a long time. Which one of the following changes will result in an induced magnetic field in coil 2 that points toward C? The switch S is opened. The iron core is removed from coil 1. Coil 1 and its core are moved toward A. Coil 1 and its core are moved toward B. Coil 2 and its core are moved toward C. 9. The current in a solenoid is decreased to one-half of its original value. Which one of the following statements is true concerning the self-inductance of the solenoid? The self-inductance does not change. The self-inductance increases by a factor of two. The self-inductance decreases by a factor of two. The self-inductance increases by a factor of four. The self-inductance decreases by a factor of four. 10. In an ac circuit, a 0.025-H inductor is connected to a generator which has an rms voltage of 25 V and operates at 50.0 Hz. What is the rms current through the inductor? 0.62 A 2.0 A 3.2 A 7.1 A 14 A 4

11. A 2.0-kg rod has a length of 1.0 m and a resistance of 4.0 Ω. It slides with constant speed down a pair of frictionless vertical conducting rails that are joined at the bottom. A uniform magnetic field of magnitude 3.0 T is perpendicular to the plane formed by the rod and the rails as shown. Determine the speed of the rod. 0.38 m/s 0.90 m/s 2.6 m/s 5.6 m/s 8.7 m/s 12. A variable capacitor is connected to an ac source. What effect does decreasing the capacitance have on the reactance and current in this circuit? Reactance Current no change no change decreases no change increases increases decreases increases increases decreases An ac generator supplies a peak (not rms)voltage of 120 V at 60.0 Hz. It is connected in series with a 50.0-Ω resistor and a 0.5-H inductor. 13. What is the rms current through the resistor? 2.4 A 1.7 A 1.3 A 0.62 A 0.44 A 5

14. Use the information given in the figure for the series RCL circuit to determine the phase angle between the current and the voltage. zero +5.3 K9.6 K84 +90 15. Two 250-µF capacitors, with equal capacitances, and a 1.5-mH inductor are connected as shown in the figure. It is desired to "drive" the circuit by placing an ac generator in series with the inductor. Which output voltage for the generator will produce the largest current in the above circuit? Assume that V is in volts when t is in seconds. V = 0.6 sin[(1.1 > 10 6 rad/s)t] V = 0.6 sin[(1.2 > 10 3 rad/s)t] V = 1.2 sin[(5.3 > 10 6 rad/s)t] V = 1.2 sin[(2.3 > 10 6 rad/s)t] V = 2.8 sin[(4.6 > 10 6 rad/s)t] 6

The figure shows the time variation of the magnitude of the electric field of an electromagnetic wave produced by a wire antenna. 16. What is the rms value of the magnitude of the magnetic field? 1.4 > 10 K 8 T 2.4 > 10 K 8 T 3.3 > 10 K 8 T 4.6 > 10 K 8 T 5.4 > 10 K 8 T 17. A ray of light passes from air into a block of glass with a refractive index of 1.50 as shown in the figure. Note: The drawing is not to scale. What is the value of the distance D? 1.42 cm 1.66 cm 1.90 cm 2.14 cm 2.38 cm 7

18. Blue light with a wavelength of 425 nm passes from a vacuum into a glass lens; and the index of refraction is found to be 1.65. The glass lens is replaced with a plastic lens. The index of refraction for the plastic lens is 1.54. In which one of the two lenses does the light have the greatest speed and what is that speed? glass, 2.28 > 10 8 m/s plastic, 2.13 > 10 8 m/s glass, 1.82 > 10 8 m/s plastic, 1.95 > 10 8 m/s The speed of the blue light is the same in the vacuum and both lenses; and it is 3.00 > 10 8 m/s. 19. A fiber optic line is composed of a core with an index of refraction of 1.47 and cladding with an index of 1.31. Which one of the following relations best describes angles of incidence 9 that will result in total internal reflection within the fiber optic line? 9 < 63 9 > 63 9 < 27 9 > 27 0 9 90 20. Light with a wavelength of 589 nm in a vacuum strikes the surface of an unknown liquid at an angle of 31.2 with respect to the normal to the surface. If the light travels at a speed of 1.97 > 10 8 m/s through the liquid, what is the angle of refraction? 19.9 26.1 34.2 39.3 51.9 8

104 Practice Exam 2-3/21/02 Answer Key 1. A 2. E 3. C 4. D 5. B 6. D 7. D 8. D 9. A 10. C 11. E 12. E 13. E 14. D 15. B 16. B 17. E 18. D 19. B 20. A 9