Course Description
The theory of electromagnetism unifies and explains many phenomena associated with charged objects, currents and magnets and was one of the great accomplishments of 19th century physics. By the end of the century the theory had evolved to a compact and aesthetically pleasing form, which is still widely used.
Electromagnetism is arguably the most important way of probing and learning about the physical world. Almost all modern scientific laboratories and the experiments conducted in them would be inconceivable without the extensive electronic equipment. Much of what is learned in these circumstances hinges on understanding the electromagnetic interaction between the equipment and the physical system that is being observed. Additionally, electromagnetism has enabled much of the technology that is characteristic of the industrialized world: electric appliances, electronics, electric motors, power generation, computers, wireless communication, etc,....
One of the predictions of the theory of electromagnetism is the existence of electromagnetic waves, which offer a complete description of the classical properties of light. Optics is the study of the properties of light. Some, such as reflection, refraction and image production using lenses are readily apparent. However, optics has consistently yielded surprising phenomena, which often provide fundamental insights into the nature of the physical world.
Modern physics, particularly quantum theory, covers phenomena which cannot be explained correctly using Newton's mechanics; these include the properties of atoms, nuclei, light particles, and solid materials. The concepts and results in this area are important for understanding chemistry, biochemistry as well as the workings of electronic devices, lasers, MRI and many more.
Phys 112 builds on Phys 111 and aims to introduce you to the phenomena of electricity and magnetism, optics and modern physics and the theories which describe them as well as some of their practical applications.
Course Number: PHYS 112
Instructor: Prof. David Collins, Physics
Contact Information:
- Wubben Science 228B
- Telephone: 248-1787
- Email: [email protected]
Class Times: MTWF 10:00 - 10:50am (Section 001), MTWF 8:00 - 8:50am (Section 002)
Classroom: WS 202 (Section 001), WS 160 (Section 002)
First Class Meeting: Tuesday 22 January 2013
Prerequisites: Phys 111, Phys 111L.
Text: Knight, Jones and Field, College Physics, 2ed, Volume 2, Addison Wesley (2010).
Syllabus: Pdf Format
Syllabus
The following is subject to change.
- Electric charge, fields, potentials and currents.
- Electric circuits.
- Magnetic fields, interaction with currents.
- Electromagnetic waves.
- Geometric optics.
- Interference and diffraction.
- Modern physics of atoms.
Course Structure
Phys 112 meets four times per week. The Monday, Wednesday and Friday meetings will be in lecture format. You will be expected to read the relevant sections of the text beforehand and attempt designated exercises in the text.
The Tuesday meeting will consist of a discussion session during which you will work in small groups (with the instructor's help) on assigned problems. You will be expected to attempt the assigned problems before the Tuesday class meeting. There will be a 10 minute quiz covering the material at the end of the discussion session.
Homework Assignments
Complete homework assignments are below.
Homework | Due date | Problems (Numbers refer to Knight, College Physics, 2ed) |
Homework 1 | 25 January 2013 | Ch 20 Questions: 2, 3, 7, Ch 20 Problems: 4, 8 (your answer should be some fraction of q), 9, 39, 40 |
Homework 2 | 1 February 2013 | Ch 20 Questions: 13, 22, 29, Ch 20 Problems: 22, 28, 45, 51, 67 |
Homework 3 | 8 February 2013 | Ch 21 Questions: 5, 10, 20, Ch 21 Problems: 6, 9, 16, 71, 73 |
Homework 4 | 22 February 2013 | Ch 22 Questions: 9, 12, 15, Ch 22 Problems: 16 (ans: 45C, 405J), 24, 42, 53, 67 |
Homework 5 | 1 March 2013 | Ch 24 Questions: 9, 10, 13, Ch 24 Problems: 5, 6, 15, 53, 57 |
Homework 6 | 8 March 2013 | Ch 24 Questions: 23, 26, 38, Ch 24 Problems: 31, 33, 35, 38, 49 |
Homework 7 | 15 March 2013 | Ch 25 Questions: 9, 12, 18, Ch 25 Problems: 12, 13, 14, 56, 60 (you will have to look up the resistivity of gold) |
Homework 8 | 5 April 2013 | Ch 17 Questions: 4, 6, 7, Ch 17 Problems: 8, 10, 37, 39, 41 |
Homework 9 | 12 April 2013 | Ch 18 Questions: 5, 6, 8, Ch 18 Problems: 5, 7, 40, 43, 44 |
Homework 10 | 19 April 2013 | Ch 18 Questions: 13, 21, Ch 18 Problems: 14, 21, 31, 52 a and c), 66 (in this problem you can make the vertical scale different from the horizontal scale. You can also check your results using the equations), 73 |
Homework 11 | 3 May 2013 | Ch 28 Questions: 24, 34, 35, Ch 28 Problems: 39, 53, 65, 70, 76 |
Homework Solutions
Homework solutions are posted on the course K drive. You can access these from any computer connected to the MSC network. The directory depends on your section number but can be found under K:\PHYS112. You should see a folders in this directory. Click on this and then click on the homework subfolder.
Quizzes
There will be a short quiz at the end of each of each Tuesday discussion session. Quiz solutions are posted on the course K drive. You can access these from any computer connected to the MSC network.
Warm Up Exercises
There will be warm up exercise, approximately once per week, due by 7:30am. Exact dates will be announced by the instructor closer to the time. Warm up exercises are hosted on Desire 2 Learn (D2L).
Exams
There will be three 50 minute exams during class on the following dates: 15 February 2013, 20 March 2013 and 24 April 2013. There will be a comprehensive final exam on 13 May 2013. Solutions to the exams for this semester will be posted below after the exams have been graded.
Exams and solutions from previous semesters.
Semester | Exam | ||
---|---|---|---|
Spring 2011 | Class exam 1 | ||
Spring 2011 | Class exam 2 | ||
Spring 2011 | Class exam 3 | ||
Spring 2011 | Final |
Semester | Exam Solutions | ||
---|---|---|---|
Spring 2011 | Class exam 1: Solutions | ||
Spring 2011 | Class exam 2: Solutions | ||
Spring 2011 | Class exam 3: Solutions | ||
Spring 2011 | Final: Solutions |
Semester | Exam | ||
---|---|---|---|
Spring 2012 | Class exam 1 | ||
Spring 2012 | Class exam 2 | ||
Spring 2012 | Class exam 3 | ||
Spring 2012 | Final (Version 1) | ||
Spring 2012 | Final (Version 2) |
Semester | Exam Solutions | ||
---|---|---|---|
Spring 2012 | Class exam 1: Solutions | ||
Spring 2012 | Class exam 2: Solutions | ||
Spring 2012 | Class exam 3: Solutions | ||
Spring 2012 | Final (Version 1): Solutions | ||
Spring 2012 | Final (Version 2): Solutions |
Exams and solutions from the current semester.
Semester | Exam | ||
---|---|---|---|
Spring 2013 | Class exam 1 (version 1) | ||
Spring 2013 | Class exam 1 (version 1): Solutions | ||
Spring 2013 | Class exam 1 (version 2) | ||
Spring 2013 | Class exam 1 (version 2): Solutions | ||
Spring 2013 | Class exam 2 (version 1) | ||
Spring 2013 | Class exam 2 (version 1): Solutions | ||
Spring 2013 | Class exam 2 (version 2) | ||
Spring 2013 | Class exam 2 (version 2): Solutions | ||
Spring 2013 | Class exam 3 (version 1) | ||
Spring 2013 | Class exam 3 (version 1): Solutions | ||
Spring 2013 | Class exam 3 (version 2) | ||
Spring 2013 | Class exam 3 (version 2): Solutions |
Links and Animations
- Animations
- PhET From the University of Colorado.
- Activ Physics Large collection provided by Addisson Wesley.
- Falstad's animations Excellent and versatile animations by Paul Falstad
- LTU Applets Collection of simulations provided by Scott Schneider, Lawrence Technological University.
- Electromagnetism Applets Collection of simulations provided by Mats Selen, University of Illinois.
- Electromagnetism Video Applets Collection of video animations produced by Pennsylvania State University - Schuylkill.
- Demonstrations
- MIT TechTV Videos of demonstrations provided by MIT.
- Maryland Demos Lecture demonstrations provided by the University of Maryland.
- Wake Forest Demos Main website for demonstrations provided by Wake Forest University, North Carolina.
- Wake Forest Demos Videos of demonstrations provided by Wake Forest University, North Carolina.
- Iowa Demos Demonstrations provided by University of Iowa.
- Electric Fields
- Electric Fields Paul Falstad's 2 dim simulator.
- Electric Fields From PhET, University of Colorado. Alternative link here.
- Electric Field Hockey From PhET, University of Colorado. Alternative link here.
- Circuits
- DC Circuits From PhET, University of Colorado. Alternative link here.
- AC and DC Circuits From PhET, University of Colorado. Alternative link here.
- Magnetic Fields
- Magnet and Compass From PhET, University of Colorado. Alternative link here.
- Faraday's Electromagnetic Lab From PhET, University of Colorado. Alternative link here.
- Solenoid From Scott Schneider, Lawrence Technological University.
- Bubble Chamber tracks From Lawrence Berkeley National Lab. Alternative link here.
- Bubble Chamber tracks From FermiLab. Alternative link here.
- Earth's Magnetic Field From National Center for Atmospheric Research.
- Charged Particle in Magnetosphere From National Center for Atmospheric Research.
- Trapped Charged Particle From Southwest Research Institute.
- Magnetic Bottle 1 From Penn State Schuylkill. A local link is here.
- Magnetic Bottle 2 From Penn State Schuylkill. A local link is here.
- NMR and MRI From PhET, University of Colorado. Alternative link here.
- DC Motor From Penn State Schuylkill. A local link is here.
- Electrons
- Discovery of the Electron from the AIP.
- Electromagnetic Induction
- Generator From PhET, University of Colorado. Alternative link here.
- Induction jump rope. from the University of Iowa.
- Rolling rods. from the University of Maryland.
- Electromagnetic Waves
- EM Waves From Penn State Schuylkill. A local link is here.
- Radio Waves From PhET, University of Colorado. Alternative link here.
- Electromagnetic Wave Generation From Caltech.
- Electromagnetic Wave Propagation From Victor Jones, Harvard University.
- Electromagnetic Wave Propagation From Amanogawa
- Electromagnetic Wave Propagation From Walter Fendt
- Electromagnetic Spectrum From LON-CAPA, Michigan State University
- Waves and Optics
- Geometric Optics From PhET, The University of Colorado. Alternative link here.
- Waves on a String From PhET, The University of Colorado. Alternative link here.
- WebTop Optics Simulations From Mississippi State University.
- Newton's Rings From The University of Iowa.
- Air wedge interference From The University of Iowa.
- Waves From Zona Land. Best with IE.
- Rectangular and Triangular Wave Interference From Zona Land. Best with IE.
- Sinusoidal Wave Interference From Zona Land. Best with IE.
- Wave Interference From PhET, The University of Colorado. Alternative link here.
- Two dimensional waves; ripple tank (From Paul Falstad) Best with IE.
- Diffraction of Ocean Waves Satellite image of two small islands off Luderitz Bay, Namibia. (From Google Maps)
- Single Slit Diffraction From Walter Fendt.
- Microwave Interference From The University of Iowa.
- Interference Fringes From Dietrich Zawischa, The University of Hannover.
- Interference in Nature From Peter Vukusic and Roy Sambles, The University of Exeter.
- Soap Film Interference Fringes From HyperPhysics, Georgia State University.
- Michelson Interferometer From The University of Iowa.
- Poisson spot From the University of Melbourne.
- Diffraction from circular aperture From PhilScience.
- Bending Light From PhET, The University of Colorado. Alternative link here.
- Vision
- Human vision applet From Davidson College
- Eye anatomy From the University of Utah.
- Quantum Physics
- Photoelectric effect From PhET, The University of Colorado. Alternative link here.
- Quantum Wave Interference From PhET, The University of Colorado. Alternative link here.
- Photon interference From the Lyman page, Princeton University.
- Physics Web Excellent summary of experimental efforts to demonstrate interference and diffraction of particles passing through single and multiple slits. From Physics World.
- Electron interference patterns from IMM Institute of the Italian National Research Council (CNR)
- Electron interference patterns from Hitachi, Japan.
- Electron Scattering Davisson-Germer experiment. From PhET, The University of Colorado. Alternative link here.
- Electron scattering Electron scattering images by Luo and Hashimoto, Okayama University of Science, Japan.
- Fullerene Diffraction From Anton Zeilinger, University of Innsbruck, Austria,
- Electron microscopy Assorted images from Wikipedia.
- Electron diffraction Physics 2000, from UC Boulder.
- Hydrogen Spectrum From the University of Utah.
- Emission Spectra From Southeastern Lousiana University.
- Atomic spectra From Prentice-Hall.
- Atomic spectra From University of Missouri - St. Louis.
- Models of the Hydrogen Atom From PhET, The University of Colorado. Alternative link here.
- Rutherford Scattering From PhET, The University of Colorado. Alternative link here.