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Nightingale's A Short Course in General Relativity 2nd Ed by Foster, Nightingale INSTRUCTOR INSTRUCTOR SOLUTIONS MANUAL
Baker's Advanced Financial Accounting 5th, 6th, 7th, 8th Ed by Baker INSTRUCTOR SOLUTIONS MANUAL
Karlin's An Introduction to Stochastic Modeling 3rd Ed by Karlin INSTRUCTOR SOLUTIONS MANUAL
Wheatley's Applied Numerical Analysis, 7th Ed by Gerald, Wheatley INSTRUCTOR SOLUTIONS MANUAL
Grisham's Biochemistry 5th ED by M. Grisham INSTRUCTOR SOLUTIONS MANUAL
Minton's Calculus Early Transcendental Functions 4th Edition by Smith, Minton INSTRUCTOR SOLUTIONS MANUAL
Chang's Chemistry, 10th Ed by Chang INSTRUCTOR SOLUTIONS MANUAL
Proakis's Communication Systems Engineering 2nd Ed by Proakis INSTRUCTOR SOLUTIONS MANUAL
Busby's Contemporary Linear Algebra by Anton, Busby INSTRUCTOR SOLUTIONS MANUAL
S. Franco's Design with Operational Amplifiers, Analog 3rd E., by S. Franco INSTRUCTOR SOLUTIONS MANUAL
C. Therrien's Discrete Random Signals and Statistical Signal Processing by C. Therrien INSTRUCTOR SOLUTIONS MANUAL
Neamen's Electronic Circuit Analysis, 2nd Ed by D. Neamen INSTRUCTOR SOLUTIONS MANUAL
W. Hayt's Engineering Circuit Analysis 6th, 7th, 8th Ed by W. Hayt INSTRUCTOR SOLUTIONS MANUAL
D. Cheng's Field and Wave Electromagnetics 2nd Ed by D. Cheng INSTRUCTOR SOLUTIONS MANUAL
P. Pritchard's Introduction to Fluid Mechanics 9th Ed by ( Fox, McDonald's) P. Pritchard INSTRUCTOR SOLUTIONS MANUAL
Munson Donald F. Young's Fundamentals of Fluid Mechanics 4th, 5th, 6th, 7th Ed by Bruce R. Munson Donald F. Young Theodore H. Okiishi Wade W. Huebsch INSTRUCTOR SOLUTIONS MANUAL
S. Sonntag's Fundamentals of Thermodynamics 5th, 6th, 7th Ed by V. Wylen Sonntag INSTRUCTOR SOLUTIONS MANUAL
M. Haykin's Introduction to Analog and Digital Communications 2nd Ed by Moher M. Haykin INSTRUCTOR SOLUTIONS MANUAL
Histand Alciatore's Introduction to Mechatronics and Measurements Systems 2nd, 3rd Ed by Histand Alciatore INSTRUCTOR SOLUTIONS MANUAL
Knight C. Gerry's Introductory Quantum Optics by P. Knight C. Gerry INSTRUCTOR SOLUTIONS MANUAL
D. Myszka's Machines and Mechanisms Applied Kinematic Analysis 3rd Ed by D. Myszka INSTRUCTOR SOLUTIONS MANUAL
B. Sherwood R. Chabay's Matter and Interactions 3rd Ed by Bruce Sherwood R. Chabay INSTRUCTOR SOLUTIONS MANUAL
Hall's Microprocessors and Interfacing Revised 2nd Ed by D. Hall INSTRUCTOR SOLUTIONS MANUAL
J. Rogawski's Calculus Early Transcendentals both volumes 2nd Ed by J. Rogawski INSTRUCTOR SOLUTIONS MANUAL
M. Greenberg's Ordinary Differential Equations by M. Greenberg INSTRUCTOR SOLUTIONS MANUAL
Cutnell Kenneth's Physics 8th, 9th Ed by John D. Cutnell Kenneth W. Johnson INSTRUCTOR SOLUTIONS MANUAL
Mannering Scott S. Washburn's Principles of Highway Engineering and Traffic Analysis 4th Ed by Fred L. Mannering Scott S. Washburn Walter P. Kilareski INSTRUCTOR SOLUTIONS MANUAL
Dale E. Seborg Duncan A. Mellichamp Thomas F. Edgar's Process Dynamics and Control 2nd, 3rd Ed by Dale E. Seborg Duncan A. Mellichamp Thomas F. Edgar INSTRUCTOR SOLUTIONS MANUAL
Lathi's Signal Processing and Linear Systems by Lathi INSTRUCTOR SOLUTIONS MANUAL
Mendenhall Terry Sincich's Statistics for Engineering and the Sciences 5th Ed by William Mendenhall Terry Sincich INSTRUCTOR SOLUTIONS MANUAL
Lewis's The Environment by Lewis INSTRUCTOR SOLUTIONS MANUAL
Stephen Abbott's Understanding Analysis by Stephen Abbott INSTRUCTOR SOLUTIONS MANUAL
Irwin - Kerns's Essentials of Electrical and Computer Engineering by Kerns, Irwin INSTRUCTOR SOLUTIONS MANUAL
M. Bellac's A Short Introduction to Quantum Information and Quantum Computation by M. Bellac INSTRUCTOR SOLUTIONS MANUAL
Kirkpatrick, McLeish's Advanced Functions - Introductory Calculus by Kirkpatrick, McLeish INSTRUCTOR SOLUTIONS MANUAL
N. Reddy's An Introduction to the Finite Element Method 3rd Ed by N. Reddy INSTRUCTOR SOLUTIONS MANUAL
S. Chapra's Applied Numerical Methods with MATLAB for Engineers and Scientists 2nd E by Chapra INSTRUCTOR SOLUTIONS MANUAL
M. Doran's Bioprocess Engineering Principles by M. Doran INSTRUCTOR SOLUTIONS MANUAL
Edwards's Calculus Early Transcendental Functions 6th Edition by Larson, Edwards
Stanley's Chemistry, 10th ED by Davis, Stanley INSTRUCTOR SOLUTIONS MANUAL
Wunsch's Complex Variables with Applications, 3rd ED by D. Wunsch INSTRUCTOR SOLUTIONS MANUAL
Melcher's Continuum Electromechanics by R. Melcher INSTRUCTOR SOLUTIONS MANUAL
M. kamins's Device Electronics for Integrated Circuits 3rd Ed by M. Kamins INSTRUCTOR SOLUTIONS MANUAL
Ogata's Discrete Time Control Systems 2nd Ed by Ogata INSTRUCTOR SOLUTIONS MANUAL
R. Boylestad's Electronic Devices and Circuit Theory 8th, 10th Ed by R. Boylestad INSTRUCTOR SOLUTIONS MANUAL
Newnan's Engineering Economic Analysis 9th Ed by Newnan INSTRUCTOR SOLUTIONS MANUAL
V. Peralta's Financial Accounting 2012 2013 by V. Peralta INSTRUCTOR SOLUTIONS MANUAL
K. Falcone's Fractal Geometry Mathematical Foundations and Applications, 2nd Ed by K. Falcone INSTRUCTOR SOLUTIONS MANUAL
J. Hull's Fundamentals of futures and options Markets 7th ED by J. Hull INSTRUCTOR SOLUTIONS MANUAL
Viswanath's Fundamentals of Wireless Communication by Viswanath Tse INSTRUCTOR SOLUTIONS MANUAL
H. Abebe's Introduction to Applied Modern Physics by H. Abebe INSTRUCTOR SOLUTIONS MANUAL
Ferbel Das's Introduction to Nuclear And Particle Physics 2nd E by Ferbel Bromberg Das INSTRUCTOR SOLUTIONS MANUAL
Mellett Marriott's Introdution to Accounting 3rd Ed by Mellett Marriott INSTRUCTOR SOLUTIONS MANUAL
Weder Mertens's Macroeconomics 2nd Ed by Weder Mertens INSTRUCTOR SOLUTIONS MANUAL
Dowling N. Emerson's Mechanical Behavior of Materials 3rd Ed by Dowling N. Emerson INSTRUCTOR SOLUTIONS MANUAL
M. David Pozar's Microwave and Rf Design of Wireless Systems by M. David Pozar INSTRUCTOR SOLUTIONS MANUAL
Kelkar M. Schulz's Nanoengineering of Structural, Functional and Smart Materials by D. Kelkar M. Schulz INSTRUCTOR SOLUTIONS MANUAL
M. Hadad's Organic Chemistry A Short Course 13th ED by Christopher M. Hadad Harold Hart INSTRUCTOR SOLUTIONS MANUAL
Tipler Gene Mosca's Physics for Scientist and Engineers 5th Ed by Paul A. Tipler Gene Mosca INSTRUCTOR SOLUTIONS MANUAL
Skoog F. James Holler's Principles of Instrumental Analysis 6th Ed by Douglas A. Skoog F. James Holler Stanley R. Crouch INSTRUCTOR SOLUTIONS MANUAL
James A. Rehg Glenn J. Sartori's Programmable Logic Controllers by James A. Rehg Glenn J. Sartori INSTRUCTOR SOLUTIONS MANUAL
McClellan Ronald W. Schafer's Signal Processing First by James H. McClellan Ronald W. Schafer Mark A. Yoder INSTRUCTOR SOLUTIONS MANUAL
William Navidi's Statistics for Engineers and Scientists 2nd Ed by William Navidi INSTRUCTOR SOLUTIONS MANUAL
JAMES BLACKBURN's The Pendulum a case study in physics by JAMES A. BLACKBURN INSTRUCTOR SOLUTIONS MANUAL
Lyn Fraser Aileen Ormiston's Understanding Financial Statements 8th Ed by Lyn Fraser Aileen Ormiston INSTRUCTOR SOLUTIONS MANUAL
Davidson's Computational Electromagnetics for RF and Microwave Engineering 2nd Ed by Davidson INSTRUCTOR SOLUTIONS MANUAL
S. Martin's Advanced Industrial Economics, 1st, 2nd ED S. Martin INSTRUCTOR SOLUTIONS MANUAL
Neftci's An Introduction To The Mathematics Of Financial Derivatives 2nd Ed by Neftci INSTRUCTOR SOLUTIONS MANUAL
Haberman's Applied Partial Differential Equations 4th Ed by Haberman INSTRUCTOR SOLUTIONS MANUAL
Roxas's Business And Transfer Taxation 3rd E by Roxas INSTRUCTOR SOLUTIONS MANUAL
Davis's Calculus early transcendentals 8th Ed, by Anton Bivens Davis INSTRUCTOR SOLUTIONS MANUAL
S. Zumdahl's Chemistry, 7th, 9th Ed by S. Zumdahl INSTRUCTOR SOLUTIONS MANUAL
CORNELIS LOS's COMPUTATIONAL FINANCE A SCIENTIFIC PERSPECTIVE MILEN KASSABOV,CORNELIS A. LOS INSTRUCTOR SOLUTIONS MANUAL
Norman S. Nise's Control Systems Engineering 4th, 6th, 7th Ed by Norman S. Nise INSTRUCTOR SOLUTIONS MANUAL
C. Edwards's Differential Equations, Linear Algebra 3rd Ed by C. Edwards INSTRUCTOR SOLUTIONS MANUAL
Banks's Discrete Event System Simulation 3rd Ed by banks INSTRUCTOR SOLUTIONS MANUAL
Strabman's Electronic Physics Strabman INSTRUCTOR SOLUTIONS MANUAL
WICKS - SULLIVAN's Engineering Economy 14th, 15th Ed by WICKS, SULLIVAN INSTRUCTOR SOLUTIONS MANUAL
Libby's Financial Accounting 2nd, 6th Ed by Short, Libby INSTRUCTOR SOLUTIONS MANUAL
T. Anderson's Fracture Mechanics 2nd Ed by T. Anderson INSTRUCTOR SOLUTIONS MANUAL
B. Das's Fundamentals of Geotechnical Engineering 4th Ed by B. Das INSTRUCTOR SOLUTIONS MANUAL
Schilling's Fundamentals of Digital Signal Processing 2nd Ed by Harris Schilling INSTRUCTOR SOLUTIONS MANUAL
V. Ness's Introduction to Chemical Engineering Thermodynamics 7th Ed by V. Ness, Smith INSTRUCTOR SOLUTIONS MANUAL
Lieberman F. Hillier's Introduction to Operations Research 7th, 8th, 9th Ed by G. Lieberman F. Hillier INSTRUCTOR SOLUTIONS MANUAL
R. Reilly's Investment Analysis Portfolio Management 7th, 8th Ed by R. Reilly INSTRUCTOR SOLUTIONS MANUAL
Blundell Stephen's Magnetism in Condensed Matter by S. Blundell INSTRUCTOR SOLUTIONS MANUAL
K. Nisbett Shigley's Mechanical Engineering Design, 7th, 8th, 9th Ed by K. Nisbett R. Budynas Shigley INSTRUCTOR SOLUTIONS MANUAL
David M. Pozar's Microwave Engineering, 2nd, 3rd, 4th Ed by David M. Pozar INSTRUCTOR SOLUTIONS MANUAL
T. Robertazzi's Networks and Grids Technology, Theory by T. Robertazzi INSTRUCTOR SOLUTIONS MANUAL
Jonathan Clayden N. Greeves's Organic Chemistry by Jonathan Clayden N. Greeves INSTRUCTOR SOLUTIONS MANUAL
C. Giancoli's Physics for Scientists Engineers with Modern Physics 3rd, 4th Ed by C. Giancoli INSTRUCTOR SOLUTIONS MANUAL
Lawrence J. Gitman's Principles of Managerial Finance 4th Ed by Lawrence J. Gitman Juchau Flanagan INSTRUCTOR SOLUTIONS MANUAL
Richard Gerrig Philip Zimbardo's Psychology and Life 16th Ed by Richard Gerrig Philip Zimbardo INSTRUCTOR SOLUTIONS MANUAL
Simon Haykin Barry Van Veen's Signals and Systems 2nd Ed by Simon Haykin Barry Van Veen INSTRUCTOR SOLUTIONS MANUAL
Agresti Christine A. Franklin's Statistics The Art and Science of Learning From Data 3rd Ed by Alan Agresti Christine A. Franklin INSTRUCTOR SOLUTIONS MANUAL
R. Bergethon Kevin Hallock's The Physical Basis of Biochemistry 2nd Ed by Peter R. Bergethon Kevin Hallock INSTRUCTOR SOLUTIONS MANUAL
McCabe Julian Smith's Unit Operations of Chemical Engineering 6th, 7th Ed Warren McCabe Julian Smith Peter Harriott emeritus INSTRUCTOR SOLUTIONS MANUAL
Obstfeld - Rogoff's Foundations of International Macroeconomics by Obstfeld, Rogoff INSTRUCTOR SOLUTIONS MANUAL
Jordan - Heuring's Computer Systems Design and Architecture 2nd Ed by Heuring, Jordan INSTRUCTOR SOLUTIONS MANUAL
A. Das's Microwave Engineering by A. Das INSTRUCTOR SOLUTIONS MANUAL
Swift - Wirkus' A Course in Ordinary Differential Equations by Swift, Wirkus INSTRUCTOR SOLUTIONS MANUAL
Smith - Eggen's A Transition to Advanced Mathematics 5th E by Smith, Eggen INSTRUCTOR SOLUTIONS MANUAL
Romer's Advanced Macroeconomics 1st, 2nd Ed by Romer INSTRUCTOR SOLUTIONS MANUAL
Frazier's An Introduction to Wavelets through Linear Algebra by Frazier INSTRUCTOR SOLUTIONS MANUAL
J. Logan's Applied Partial Differential Equations by J. Logan INSTRUCTOR SOLUTIONS MANUAL
Groebner's Business Statistics - Decision Making 7th E by D. Groebner INSTRUCTOR SOLUTIONS MANUAL
Anton's Calculus early transcendentals 6th, 7th, 8th, 9th, 10th Ed, by Anton, Davis INSTRUCTOR SOLUTIONS MANUAL
Thornton's Classical Dynamics of Particles and Systems, 5th Ed, by Thornton INSTRUCTOR SOLUTIONS MANUAL
Srinivas's Computational Techniques for Fluid Dynamics by Srinivas INSTRUCTOR SOLUTIONS MANUAL
Gopal's Control Systems Principles and Design 2nd Ed by M. Gopal INSTRUCTOR SOLUTIONS MANUAL
Penney's Differential Equations, Boundary Value Problems, Computing, Modeling 4th Ed by Penney INSTRUCTOR SOLUTIONS MANUAL
S. Oppenheim's Discrete Time Signal Processing 2nd + 3rd Ed by Schafer, Oppenheim INSTRUCTOR SOLUTIONS MANUAL
Kanodia's Electronics, Communication Engineering 5th ED by Kanodia INSTRUCTOR SOLUTIONS MANUAL
J. Hartman's Engineering Economy, the Decision Making Process by J. Hartman INSTRUCTOR SOLUTIONS MANUAL
Harrison's Financial Accounting 6th, 8th Ed by Harrison INSTRUCTOR SOLUTIONS MANUAL
V. Vegt's From Polymers to Plastics by V. Vegt INSTRUCTOR SOLUTIONS MANUAL
L. Bergman Adrienne S. Lavine's Fundamentals of Heat and Mass Transfer 4th, 5th, 6th, 7th Ed Theodore L. Bergman Adrienne S. Lavine Frank P. Incropera INSTRUCTOR SOLUTIONS MANUAL
Keith John's Gas Dynamics 3rd Ed by Keith John INSTRUCTOR SOLUTIONS MANUAL
F. Atiyah's Introduction to Commutative Algebra by F. Atiyah INSTRUCTOR SOLUTIONS MANUAL
Tsitsiklis Bertsekas's Introduction to Probability 2nd Ed by Tsitsiklis Bertsekas INSTRUCTOR SOLUTIONS MANUAL
T. Cavaiani's IT Networking Labs by T. Cavaiani INSTRUCTOR SOLUTIONS MANUAL
Noreen Garrison's Managerial Accounting 11th, 12th, 13th Ed by Noreen Garrison INSTRUCTOR SOLUTIONS MANUAL
G. Gonzalez's Microwave Transistor Amplifiers Analysis and Design 2nd Ed by G. Gonzalez INSTRUCTOR SOLUTIONS MANUAL
S. Haykin's Neural networks and learning machines 3rd Ed by S. Haykin INSTRUCTOR SOLUTIONS MANUAL
Fryhle Solomons's Organic Chemistry 10th, 11th Ed by Graham Solomons Craig B. Fryhle INSTRUCTOR SOLUTIONS MANUAL
Serway John W's Physics For Scientists Engineers 3rd, 4th, 5th, 6th, 7th, 8th, 9th Ed by Raymond A. Serway John W. Jewett INSTRUCTOR SOLUTIONS MANUAL
Walter Rudin's Principles Of Mathmatical Analysis by Walter Rudin INSTRUCTOR SOLUTIONS MANUAL
Jonathan Gruber's Public Finance and Public Policy 3rd, 4th Ed by Jonathan Gruber INSTRUCTOR SOLUTIONS MANUAL
M.J. Roberts's Signals and Systems Analysis of Signals Through Linear Systems by M.J. Roberts INSTRUCTOR SOLUTIONS MANUAL
T. Segui's Steel Design 4th, 5th Ed by William T. Segui INSTRUCTOR SOLUTIONS MANUAL
Binney David Skinner's The Physics of Quantum Mechanics by James Binney David Skinner INSTRUCTOR SOLUTIONS MANUAL
D. Young Roger A. Freedman's University Physics with Modern Physics 11th, 12th Ed Hugh D. Young Roger A. Freedman Lewis Ford INSTRUCTOR SOLUTIONS MANUAL
Feenstra - Taylor's International Trade 2nd Ed by Robert Feenstra, Alan Taylor INSTRUCTOR SOLUTIONS MANUAL
Hunsperger's Integrated Optics - Theory and Technology 6th Ed by Hunsperger INSTRUCTOR SOLUTIONS MANUAL
Romney - Steinbart's Accounting Information Systems 12th Ed by Romney, Steinbart INSTRUCTOR SOLUTIONS MANUAL
Glencoe's Advanced Mathematical Concepts Precalculus with Applications ( Glencoe ) INSTRUCTOR SOLUTIONS MANUAL
Martin's Analog Integrated Circuit Design, by Martin INSTRUCTOR SOLUTIONS MANUAL
Levi's Applied Quantum Mechanics by Levi INSTRUCTOR SOLUTIONS MANUAL
O'connell's Business Statistics in Practice 7th ED by Bowerman, O'connell INSTRUCTOR SOLUTIONS MANUAL
Penney's Calculus Early Transcendentals 6th Ed by Edwards, Penney INSTRUCTOR SOLUTIONS MANUAL
Jose's Classical Dynamics, A Contemporary Approach by Jose INSTRUCTOR SOLUTIONS MANUAL
Hennessy's Computer Architecture - A Quantitative Approach, 4th Ed by Hennessy INSTRUCTOR SOLUTIONS MANUAL
DeMarzo's Corporate Finance, My FinanceLab Student Access Code Card 1st, 2nd Ed by DeMarzo INSTRUCTOR SOLUTIONS MANUAL
J. Farlow's Differential Equations, Linear Algebra 2nd Ed by J. Farlow INSTRUCTOR SOLUTIONS MANUAL
Yoder - Mclellan's DSP First A Multimedia Approach by Yoder, Mclellan INSTRUCTOR SOLUTIONS MANUAL
R. Hambley's Electronics, 2nd Ed by R. Hambley INSTRUCTOR SOLUTIONS MANUAL
Blank's Engineering Economy 7th Ed by Tarquin, Blank INSTRUCTOR SOLUTIONS MANUAL
Gibbins's Financial Accounting An Integrated Approach 6th Ed by Gibbins INSTRUCTOR SOLUTIONS MANUAL
Wainwright's Fundamental Methods of Mathematical Economics 4th Ed by Wainwright, Chiang INSTRUCTOR SOLUTIONS MANUAL
Hwang's Fundamentals of Hydraulic Engineering Systems 4th Ed by Hwang Houghtalen INSTRUCTOR SOLUTIONS MANUAL
R. Petrucci 's General Chemistry Principles, Modern Applications 8th, 10th Ed by W. Harwood R. Petrucci INSTRUCTOR SOLUTIONS MANUAL
Steinbach's Introduction to Data Mining by Steinbach Tan INSTRUCTOR SOLUTIONS MANUAL
Grinstead Snell's Introduction to Probability by Snell Grinstead INSTRUCTOR SOLUTIONS MANUAL
D. Deitel's Java How to Program 5th, 6th, 7th ED by D. Deitel INSTRUCTOR SOLUTIONS MANUAL
H. Carley's Managing Business and Professional Communication 2nd Ed by Dodd H. Carley INSTRUCTOR SOLUTIONS MANUAL
Marangoni's Mechanical Measurements by 6th Ed., Beckwith, Marangoni & Lienhard INSTRUCTOR SOLUTIONS MANUAL
Ogata Katsuhiko's Modern Control Engineering 3rd, 4th, 5th Ed by Ogata Katsuhiko INSTRUCTOR SOLUTIONS MANUAL
P. Bertsekas's Nonlinear Programming 2nd Ed by P.Bertsekas Dimitri INSTRUCTOR SOLUTIONS MANUAL
D.R. Klein's Organic Chemistry 1st, 2nd Ed by D.R. Klein INSTRUCTOR SOLUTIONS MANUAL
Randall D. Knight's Physics for Scientists and Engineers A Strategic Approach 1st, 2nd, 3rd Ed by Randall D. Knight INSTRUCTOR SOLUTIONS MANUAL
Ham Ivica Kostanic's Principles of Neurocomputing for Science and Engineering by Fredric M. Ham Ivica Kostanic INSTRUCTOR SOLUTIONS MANUAL
Daniel C. Harris's Quantitative Chemical Analysis 8th Ed by Daniel C. Harris INSTRUCTOR SOLUTIONS MANUAL
V. Oppenheim Alan S. Willsky's Signals and Systems 2nd Ed by Alan V. Oppenheim Alan S. Willsky S. Hamid INSTRUCTOR SOLUTIONS MANUAL
Shreve Yan Zeng's Stochastic Calculus for Finance by Steven Shreve Yan Zeng INSTRUCTOR SOLUTIONS MANUAL
R. Askeland Wendelin's The Science and Engineering of Materials 4th, 5th Ed by Donald R. Askeland Wendelin J. Wright INSTRUCTOR SOLUTIONS MANUAL
Bauer Gary Westfall's University Physics with Modern Physics 2nd Ed by Wolfgang Bauer Gary Westfall INSTRUCTOR SOLUTIONS MANUAL
Charles P. Jones's Investment 11th Ed by Charles P. Jones INSTRUCTOR SOLUTIONS MANUAL
B. Forouzan's Local Area Networks by B. Forouzan INSTRUCTOR SOLUTIONS MANUAL
Gary Hachtel's Logic Synthesis and Verification Algorithms by Gary Hachtel INSTRUCTOR SOLUTIONS MANUAL
Kieso, Kimmel's Accounting Principles 8th Ed by Kieso, Kimmel INSTRUCTOR SOLUTIONS MANUAL
Schmidt's Advanced Mechanics of Materials 6th ed by Boresi, Schmidt INSTRUCTOR SOLUTIONS MANUAL
Meyer - Gray's Analysis and Design of Analog Integrated Circuits 4th, 5th Ed by Gray, Meyer INSTRUCTOR SOLUTIONS MANUAL
Montgomery George C. Runger's Applied Statistics and Probability for Engineers 6th Ed by Douglas C. Montgomery George C. Runger INSTRUCTOR SOLUTIONS MANUAL
Deitel's C How to Program, 4th Ed by Deitel INSTRUCTOR SOLUTIONS MANUAL
Miranda's Calculus Early Transcendentals by Sullivan, Miranda INSTRUCTOR SOLUTIONS MANUAL
David Jackson's Classical Electrodynamics 1st, 2nd ED by David Jackson INSTRUCTOR SOLUTIONS MANUAL
Flynn's Computer Architecture Pipelined , Parallel Processor Design by Flynn INSTRUCTOR SOLUTIONS MANUAL
Ross's Corporate Finance 7th, 8th, 9th Ed by Ross INSTRUCTOR SOLUTIONS MANUAL
S. Goode's Differential Equations and Linear Algebra 3rd Ed by S. Goode INSTRUCTOR SOLUTIONS MANUAL
Gardner's Dynamic Modeling and Control of Engineering Systems 2nd Ed by Shearer, Gardner INSTRUCTOR SOLUTIONS MANUAL
E. Boyce Richard C. DiPrima's Elementary Differential Equations and Boundary Value Problems 8th, 10th Ed by William E. Boyce Richard C. DiPrima INSTRUCTOR SOLUTIONS MANUAL
H. Hayt's Engineering Electromagnetics 6th, 7th, 8th Ed by Buck, H. Hayt A. INSTRUCTOR SOLUTIONS MANUAL
Keown's Financial Management 10th Ed by Scott, Keown INSTRUCTOR SOLUTIONS MANUAL
Dommelen's Fundamental Quantum Mechanics for Engineers by L. Dommelen INSTRUCTOR SOLUTIONS MANUAL
Jordan's Fundamentals of Investments 4th, 5th, 6th Ed by Miller Jordan INSTRUCTOR SOLUTIONS MANUAL
Gammon Ebbings's General Chemistry 9th Ed by Gammon Ebbings INSTRUCTOR SOLUTIONS MANUAL
M. Watson's Introduction to Econometrics 2nd Ed by M. Watson J. Stock INSTRUCTOR SOLUTIONS MANUAL
M. Ross's Introduction to Probability Models 9th, 10th Ed by M. Ross INSTRUCTOR SOLUTIONS MANUAL
M. Morelli's Java Java Java 2nd Ed by M. Morelli INSTRUCTOR SOLUTIONS MANUAL
Chopra Anupind's Managing Business Process Flows Principles of Operations Management 2nd Ed by Chopra Anupind INSTRUCTOR SOLUTIONS MANUAL
Rao S. Singiresu's Mechanical Vibrations 3rd, 4th, 5th Ed by Rao S. Singiresu INSTRUCTOR SOLUTIONS MANUAL
R. Bishop C. Dorf's Modern Control Systems, 9th, 10th, 11th,12th Ed by R. Bishop C. Dorf INSTRUCTOR SOLUTIONS MANUAL
Sherali Bazaraa's Nonlinear Programming Theory and Algorithms 3rd Ed by Sherali Bazaraa INSTRUCTOR SOLUTIONS MANUAL
Joseph M. Hornback's Organic Chemistry 2nd Ed by Joseph M. Hornback INSTRUCTOR SOLUTIONS MANUAL
S. James Walker's Physics with Mastering Physics 2nd, 3rd, 4th Ed by S. James Walker INSTRUCTOR SOLUTIONS MANUAL
Raymond A. Serway's Principles of Physics A Calculus Based Text 3rd, 4th, 5th Ed by Raymond A. Serway John W. Jewett INSTRUCTOR SOLUTIONS MANUAL
Paolo Brandimarte's Quantitative Methods An Introduction for Business Management by Paolo Brandimarte INSTRUCTOR SOLUTIONS MANUAL
M.J. Roberts's Signals and Systems Analysis Using Transform Methods and MATLAB by M.J. Roberts INSTRUCTOR SOLUTIONS MANUAL
Barry L. Nelson's Stochastic Modeling Analysis and Simulation by Barry L. Nelson INSTRUCTOR SOLUTIONS MANUAL
James Trefil's The Sciences An Integrated Approach 5th Ed by James Trefil Robert M. Hazen INSTRUCTOR SOLUTIONS MANUAL
Ning Lu William J. Likos's Unsaturated Soil Mechanics by Ning Lu William J. Likos INSTRUCTOR SOLUTIONS MANUAL
Pindyck - Rubinfeld's Microeconomics 7th Ed by Pindyck, Rubinfeld INSTRUCTOR SOLUTIONS MANUAL
D. Simon's Optimal State Estimation - Kalman, H, and Nonlinear Approaches by D. Simon INSTRUCTOR SOLUTIONS MANUAL
Cathey's Electric Machines Analysis and Design Applying MatLab by Cathey INSTRUCTOR SOLUTIONS MANUAL
Weygandt 's Accounting principles 8th, 9th Ed by Weygandt INSTRUCTOR SOLUTIONS MANUAL
James's Advanced Modern Engineering Mathematics 3rd, 4th Ed G. James INSTRUCTOR SOLUTIONS MANUAL
Ruey S. Tsay's Analysis of Financial Time Series, 3rd Ed by Ruey S. Tsay INSTRUCTOR SOLUTIONS MANUAL
R. Mott's Applied Strength of Materials 4th, 5th Ed by R. Mott INSTRUCTOR SOLUTIONS MANUAL
V. Broquard's C++ for Computer Science and Engineering 2nd, 3rd ED by V. Broquard INSTRUCTOR SOLUTIONS MANUAL
STEWART's Calculus Early Transcendentals, 5th Edition, JAMES STEWART INSTRUCTOR SOLUTIONS MANUAL
Jackson's Classical Electrodynamics by John David Jackson INSTRUCTOR SOLUTIONS MANUAL
Kelley's Computer Graphics Using Open GL 3rd E by Kelley INSTRUCTOR SOLUTIONS MANUAL
MAHER's COST ACCOUNTING - Creating Value for Management 5th Ed by MAHER INSTRUCTOR SOLUTIONS MANUAL
J. Polking's Differential Equations with Boundary Value Problems 2nd Ed by J. Polking INSTRUCTOR SOLUTIONS MANUAL
Etkin - Reid's Dynamics of Flight Stability, Control 3rd Ed by Reid, Etkin INSTRUCTOR SOLUTIONS MANUAL
E. Kohler's Elementary Differential Equations by Johnson, E. Kohler INSTRUCTOR SOLUTIONS MANUAL
Crowe Donald F. Elger's Engineering Fluid Mechanics 7th, 8th, 9th,10th Ed by Clayton T. Crowe Donald F. Elger John A. Roberson Barbara C. Williams INSTRUCTOR SOLUTIONS MANUAL
Ehrhardt's Financial Management 12th Ed by Ehrhardt, Brigham INSTRUCTOR SOLUTIONS MANUAL
Taylor's Fundamentals of Advanced Accounting by Taylor, Fischer INSTRUCTOR SOLUTIONS MANUAL
Kinney C. Roth's Fundamentals of Logic Design 5th, 6th Ed by Kinney C. Roth, INSTRUCTOR SOLUTIONS MANUAL
S. Lang's Geometry A High School Course by G. Murrow S. Lang INSTRUCTOR SOLUTIONS MANUAL
Dorf's Introduction to Electric Circuits 6th, 7th Ed by Svaboda Dorf INSTRUCTOR SOLUTIONS MANUAL
D. Griffiths's Introduction to Quantum Mechanics 1st, 2nd Ed by D. Griffiths INSTRUCTOR SOLUTIONS MANUAL
Rotman's Journey into Mathematics An Introduction to Proofs by J. Rotman INSTRUCTOR SOLUTIONS MANUAL
M. Morse Babcock's Managing Engineering and Technology 4th by Babcock M. Morse INSTRUCTOR SOLUTIONS MANUAL
Charles Sun's Mechanics of Aircraft Structures 2nd Ed by Charles Sun INSTRUCTOR SOLUTIONS MANUAL
Lathi Zhi Ding's Modern Digital and Analog Communication Systems 3rd Ed by Lathi Zhi Ding INSTRUCTOR SOLUTIONS MANUAL
R. Burden D. Faires's Numerical Analysis 8th Ed by R. Burden D. Faires INSTRUCTOR SOLUTIONS MANUAL
Gorzynski Janice's Organic Chemistry 3rd Ed by Smith Gorzynski Janice INSTRUCTOR SOLUTIONS MANUAL
Douglas Giancoli's Physics Principles with Applications with Mastering Physics 6th, 7th Ed by C. Giancoli INSTRUCTOR SOLUTIONS MANUAL
N. McCrum C. Buckley's Principles of Polymer Engineering 2nd ED by N. McCrum C. Buckley B. Bucknall INSTRUCTOR SOLUTIONS MANUAL
Pinney Donald B. McWilliams's Quantitative Methods for Management by William E. Pinney Donald B. McWilliams Joe Ormsby INSTRUCTOR SOLUTIONS MANUAL
L. Phillips John Parr Eve Riskin's Signals, Systems Transforms 3rd, 4th Ed by Charles L. Phillips John Parr Eve Riskin INSTRUCTOR SOLUTIONS MANUAL
Jones Peter Smith's Stochastic Processes An Introduction by Peter Watts Jones Peter Smith INSTRUCTOR SOLUTIONS MANUAL
Fred Ramsey Daniel Schafer's The Statistical Sleuth A Course in Methods of Data Analysis 3rd Ed by Fred Ramsey Daniel Schafer INSTRUCTOR SOLUTIONS MANUAL
Susan J. Colley's Vector Calculus 3rd, 4th Ed by Susan J. Colley INSTRUCTOR SOLUTIONS MANUAL
Lawrence J. Gitman's Introduction to Managerial Finance by Lawrence J. Gitman INSTRUCTOR SOLUTIONS MANUAL
Stremler's Introduction to Communication Systems 3rd Ed by Stremler INSTRUCTOR SOLUTIONS MANUAL
Sadiku - Musa's Applied Circuit Analysis by Sadiku, Musa INSTRUCTOR SOLUTIONS MANUAL
Warren's Accounting 23th, 25th Ed by Warren INSTRUCTOR SOLUTIONS MANUAL
Sundberg's Advanced Organic Chemistry Part A, Structure and Mechanisms 5th Ed by Carey, Sundberg INSTRUCTOR SOLUTIONS MANUAL
Deen's Analysis of Transport Phenomena, by Deen INSTRUCTOR SOLUTIONS MANUAL
Beddard's Applying Maths in the Chemical and Biomolecular Sciences, by Beddard INSTRUCTOR SOLUTIONS MANUAL
Deitel 's C++ How to Program 7th Ed by Deitel INSTRUCTOR SOLUTIONS MANUAL
George Thomas's Calculus George Thomas 10th ed Vol 1 INSTRUCTOR SOLUTIONS MANUAL
Goldstein's Classical Mechanics 2nd Ed by Goldstein INSTRUCTOR SOLUTIONS MANUAL
Kurose's Computer Networking A Top Down Approach Featuring the Internet, 3rd, 4th Ed by Kurose INSTRUCTOR SOLUTIONS MANUAL
Horngren's - Datar's Cost Accounting A Managerial Emphasis 13th, 14th Ed by Horngren, Datar INSTRUCTOR SOLUTIONS MANUAL
L. Couch's Digital & Analog Communication Systems 7th Ed by L. Couch INSTRUCTOR SOLUTIONS MANUAL
Ross's Dynamics of Mechanical Systems by F. Ross INSTRUCTOR SOLUTIONS MANUAL
S. Grossman's Elementary Linear Algebra 5th edition by S. Grossman INSTRUCTOR SOLUTIONS MANUAL
M. Ohring's Engineering Materials Science, by M. Ohring INSTRUCTOR SOLUTIONS MANUAL
Gibson's Financial Reporting and Analysis, Information 10th Ed by Gibson INSTRUCTOR SOLUTIONS MANUAL
R. Anderson's Fundamentals of Aerodynamics 3rd Ed by R. Anderson INSTRUCTOR SOLUTIONS MANUAL
J. Juvinall's Fundamentals of Machine Component Design 3rd, 4th Ed by J. Juvinall INSTRUCTOR SOLUTIONS MANUAL
Wesley's Geometry and Discrete Mathematics by Wesley Addison INSTRUCTOR SOLUTIONS MANUAL
D. Griffiths's Introduction to Electrodynamics 2nd, 3rd Ed D. Griffiths INSTRUCTOR SOLUTIONS MANUAL
R. Cooper's Introduction to Queueing Theory 2nd Ed by R. Cooper INSTRUCTOR SOLUTIONS MANUAL
Kinzel Waldron's Kinematics Dynamics Design of Machinery 2nd Ed by Kinzel Waldron INSTRUCTOR SOLUTIONS MANUAL
S. Smith Kalpakjian's Manufacturing Processes for Engineering Materials 5th Ed by S. Smith Kalpakjian INSTRUCTOR SOLUTIONS MANUAL
Potter Merle's Mechanics of Fluids 3rd Ed by Potter Merle INSTRUCTOR SOLUTIONS MANUAL
Jain ZHU's Modern Digital Electronics 3rd Ed by JAIN ZHU INSTRUCTOR SOLUTIONS MANUAL
Cleve B. Moler's Numerical Computing with MATLAB by Cleve B. Moler INSTRUCTOR SOLUTIONS MANUAL
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- Classical Electrodynamics Jackson 2nd Edition Solutions Manual Youtube
- Classical Electrodynamics Jackson 2nd Edition Solutions Manual 2017
Heat Transfer 2nd Edition ( Instructor Solutions Manual ) Authors; Cengel Heat Transfer A Practical Approach,Yunus A. Cengel 2d ed Heating, Ventilating and Air Conditioning Analysis and Design, 6th Edition McQuiston, Parker, Spitler Higher Algebra 3rd edition ( Instructor Solutions Manual ) Authors; Hall and Knight. Unlike static PDF Classical Electrodynamics solution manuals or printed answer keys, our experts show you how to solve each problem step-by-step. No need to wait for office hours or assignments to be graded to find out where you took a wrong turn. You can check your reasoning as you tackle a problem using our interactive solutions viewer. Electrodynamics Jackson Solution Manual 2ndEdition student solution manual from the bookstore? Our interactive player makes it easy to find solutions to Classical Electrodynamics 3rd Edition problems you're working on - just go to the chapter for your book. Classical Electrodynamics Jackson Page 13/28. Nov 02, 2018 Classical Electrodynamics (John David Jackson)(Solution Manual) John David Jackson. Language: English File Type: PDF. Classical Electrodynamics (John David Jackson). Free download solution manual of Classical Electrodynamics book in pdf. CLASSICAL ELECTRODYNAMICS 3rd edition by JOHN DAVID JACKSON August 07, 2018. Gauss's Divergence theorem and Stroke's Theorem. The second chapter of this book is about Particle Dynamics that includes the motion of conical pendulum, the rotor, banked curve etc.
This page contains copies of the class handouts, and other pertinent items ofinterest for the U.C. Santa Cruz Physics 214 graduate Electromagnetism II class.
SPECIAL ANNOUNCEMENTS
Solutions to the final exam have been posted toSection IV of this website.The graded homework set 5 and the final exam are now available. Stopby my office any time during the spring quarter to retrieve your work.
Final grades have been posted. The final exam scores ranged from alow of 52 to a high of 91. The mean was 67.
One final bonus to celebrate the spring break. I have posted a classhandout entitled Thomas Precession and the BMT equation toSection V of this website. A link to one of the referencesto the handout is also provided in Section IX ofthis website. Enjoy!
Table of Contents
Classical Electrodynamics Jackson 2nd Edition Solutions Manual Youtube
[ I. General Information and Syllabus | II. Disability Statement to Students in Class | III. Problem Sets and Exams | IV. Solutions to Problem Sets and Exams | V. Other Class Handouts | VI. References on special functions of mathematical physics | VII. Free Textbooks on Classical Electrodynamics | VIII. Other books of interest | IX. Articles of interest | X. Web pages of interest ]
I. General Information and Syllabus
The General Information and Syllabus handout is available in either PDF or Postscript format [PDF | Postscript]
Some of the information in this handout is reproduced here.
General Information | |
---|---|
Instructor | Howard Haber |
Office | ISB 326 |
Phone | 459-4228 |
Office Hours | Mondays 2--4 pm |
haber@scipp.ucsc.edu | |
academic webpage | http://scipp.ucsc.edu/~haber/ |
Class Hours
Lectures: Tuesdays and Thursdays, 5:10--6:45 pm, ISB 231
Required Textbook
Classical Electrodynamics, 3rd Edition,by John David Jackson [Errata for the 18th reprinting (dated 2008) can be found here inPDF format.]
Course Grading and Requirements
50% Homework (5 problem sets)
20% Midterm Exam (24 hour take-home exam; due Friday February 24, 2017 at 7 pm)
30% Final Exam (Wednesday March 22, 2017, from 4--7 pm)
Homework assignments are not optional. Homework assignmentsare typically due on Thursdays (with two weeks allotted for each homework set).You are encouraged to discuss the class material and homework problems with your classmates and to work in groups, but all submitted problems should represent your own work and understanding.
The final exam will be held in ISB 231.This exam will be three hours long and cover the complete coursematerial. You must take the final exam to pass the course.You will be permitted to consult any textbook of your choosing, your ownhandwritten notes, and any class handout (including solutions to theproblem sets) during the final exam.
Course Syllabus
- Review of Maxwell's Equations
- Plane Electromagnetic Waves
- Wave Propagation in a Dispersive Medium
- Special Theory of Relativity
- Simple Radiating Systems and Antennae
- Multipole Fields
- Dynamics of Relativistic Particles and Electromagnetic Fields
- Radiation by Accelerated Charges
- Scattering of Electromagnetic Waves
II. Disability Statement to Students in Class
UC Santa Cruz is committed to creating an academic environment thatsupports its diverse student body. If you are a student with adisability who requires accommodations to achieve equal access in thiscourse, please submit your Accommodation Authorization Letter from theDisability Resource Center (DRC) to me privately during my officehours or by appointment, preferably within the first two weeks of thequarter. At this time, we would also like us to discuss ways we canensure your full participation in the course. We encourage allstudents who may benefit from learning more about DRC services tocontact DRC by phone at 831-459-2089 or by email atdrc@ucsc.edu.III. Problem Sets and Exams
Problem sets and exams are available in either PDF or Postscript formats.
- Problem Set #1--due: Thursday, January 26, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #1 [PDF]
- Problem Set #2--due: Thursday, February 9, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #2 [PDF]
- Problem Set #3--due: Thursday, February 23, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #3 [PDF]
- Midterm Exam--due: Monday, February 27, 2017 [PDF | Postscript]
- Problem Set #4--due: Thursday, March 9, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #4 [PDF]
- Problem Set #5--due: Tuesday, March 21, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #5 [PDF]
- Final Exam--Wednesday, March 22, 2017 [PDF | Postscript]
IV. Solutions to Problem Sets and Exams
The problem set and exam solutions are available in either PDF or postscript formats.
- Solution Set #1 [PDF | Postscript]
- Solution Set #2 [PDF | Postscript]
- Solution Set #3 [PDF | Postscript]
- Midterm Exam Solutions [PDF | Postscript]
- Solution Set #4 [PDF | Postscript]
- Solution Set #5 [PDF | Postscript]
- Final Exam Solutions [PDF | Postscript]
V. Other Class Handouts
Class handouts are available in either PDF or postscript formats.1. A handout entitled The Poisson equation and the inverse Laplacian introduces the concept of the inverse Laplacian and uses it to provide a solution to Poisson's equation.This method of solution is closely related to the Green function techniqueto Poisson's equation. Finally, the inverse Laplacian isused to derive the Helmholtz decomposition of a vector field. [PDF| Postscript].
2. A handout entitled TheRiemann-Lebesgue Lemma is a very important result ofFourier analysis. It has many applications in mathematical physics. A simple proof of the Riemann-Lebesgue lemmais given in this handout. [PDF| Postscript].
3. The identity 1/(x ± iε)=P(1/x)∓iπ is calledthe Sokhotski-Plemelj formula. In a handout entitled TheSokhotski-Plemelj Formula, three different derivations of thisformula are provided. In an appendix, the Fourier transform of atempered distribution is discussed and then applied to theSokhotski-Plemelj formula. Since the Fourier transform of a tempereddistribution (and its inverse Fourier transform) are unique, thisanalysis proides a fourth derivation of the Sokhotski-Plemelj formula. [PDF| Postscript].
4. A handout entitled Examples offour-vectors examines the properties of thevelocity, momentum, force and acceleration four-vectors of specialrelativity. These notes provide a careful derivation of the law of addition of velocities. Inaddition, it presents the relativistic version of Newton's 2nd Lawand discusses the meaning of constant acceleration for relativistic motion. [PDF| Postscript].
5. A handout entitled The electromagnetic fields of a uniformly moving charge provides a derivation ofthe expressions for the electric and magnetic fields of a uniformlymoving charge in the laboratory frame. The derivation, which is basedon performing a Lorentz boost from the rest frame of the charge tothe laboratory frame, is more generalthan the one given in Jackson. Also given are alternative expressions for theelectromagnetic fields in terms of quantities that depend on theretarded time. [PDF| Postscript].
6. The handout entitled The tensor spherical harmonics treats thevector spherical harmonics in a more general context,which provides for a better understanding of their origin (and allows forfurther generalizations). The formalism of addition of angular momentum in quantum mechanics plays a key role in this more generaltreatment. [PDF| Postscript].
7. These notes derive the classical Hamiltonian of a non-relativisticcharged particle in an electromagnetic field, and introduces theprinciple of minimal substitution. This principle is then employed to obtain the Schrodinger equation inthe presence of an external electromagnetic field.As an example, the special case of a uniform magnetic field is exhibited. Finally,we demonstrate the origin of the coupling of the spin operator to the external magnetic fieldin the case of a charged spin-1/2 particle. [PDF | Postscript]
8. These notes present a derivation of the Thomas precession of aparticle with intrinsic spin. The derivation is then extended to thecase of a charged particle with intrinsic spin in an externalelectromagnetic field. The dynamics of such a particle are describedby the BMT equation. A detailed derivation is provided that followsthe method employed in the derivation of the Thomas precession. [PDF | Postscript]
9. In deriving the Liénard-Wiechert potentials in class, we needed toevaluate a Jacobian determinant associated with a change of variables.To evaluate this determinant, we used the result,det(δij+aibj)=1+a•b. In this handount, three derivations of this determinantalidentity are provided. [PDF | Postscript]
10. A handout entitled The Poisson Sum Formula provides a derivation of this famous formula, along with somecommentary. You will use this formula in solving problem 14.13 ofJackson, which examines the radiation of an accelerating particlewhose motion is periodic. [PDF| Postscript].
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11. A handout entitled The power spectrum ofCherenkov radiation provides a derivation of the Tamm-Frankformula for the differential distribution of power with respect tothe frequencies of the radiation. This derivation employs the methodsof Chapter 14 of Jackson. In contrast, Jackson uses a differentmethod for obtaining the Tamm-Frank formula in Chapter 13. [PDF| Postscript].
VI. References on special functions of mathematical physics
1. A superb resource for both the elementary functions and thespecial functions of mathematical physics is theHandbookof Mathematical Functions by Milton Abramowitz and Irene A. Stegun,which is freely available on-line. The home page for thisresource can be foundhere. There, youwill find links to a framesinterface of the book. Another scan of the book can be found here.A third independent link to the book can be foundhere.
2. The NISTHandbook of Mathematical Functions (publishedby Cambridge University Press), together with its Webcounterpart, the NIST Digital Library of Mathematical Functions(DLMF), is the culmination of a project that was conceived in 1996 atthe National Institute of Standards and Technology (NIST). The projecthad two equally important goals: to develop an authoritativereplacement for the highly successful Handbook of MathematicalFunctions with Formulas, Graphs, and Mathematical Tables, published in1964 by the National Bureau of Standards (M. Abramowitz andI. A. Stegun, editors); and to disseminate essentially the sameinformation from a public Web site operated by NIST. The new Handbookand DLMF are the work of many hands: editors, associate editors,authors, validators, and numerous technical experts.The NISTHandbook coversthe properties of mathematical functions, from elementarytrigonometric functions to the multitude of special functions.All of the mathematical information contained in the Handbook is alsocontained in the DLMF, along with additional features such as moregraphics, expanded tables, and higher members of some families offormulas. A PDF copy of the handbook is provided here: [PDF]
3. One of the classic references to special functions is a threevolume set entitled Higher Transcendental Functions (edited by A. Erdelyi), which wascompiled in 1953 and is based in part on notes left by Harry Bateman.This was the primary reference for a generation of physicists andapplied mathematicians, which is colloquially referred to as theBateman Manuscripts. This esteemed reference work continues to be a valuable resources for students and professionals. PDF versions of the three volumes are now available free of charge. Check out the three volumes by clicking on the relevant links here: [Volume 1 |Volume 2 |Volume 3].
4. Another very useful reference for both the elementary functions and thespecial functions of mathematical physics is An Atlasof Functions (2nd edition) by Keith B. Oldham, Jan Myland and JeromeSpanier, published by Springer Science in 2009.This resource is freely available on-line to studentsat the University of California at thislink.
5. Yet another excellent website for both the elementary functions and thespecial functions of mathematical physics is the Wolfram Functionssite. This site was created with Mathematica and is developed and maintainedby Wolfram Research with partial support from the National Science Foundation. Additional mathematical information canbe found on the relatedWolfram MathWorld site.
6. One of my favorite books on special functions isSpecial Functions and Their Applications by N.N. Lebedev (Dover Publications, Inc., Mineola, NY, 1972). Itprovides invaluable information on special functions, while being extremely cheap to buy (and even cheaper to peruse onGoogle Books).
7. In working out Jackson problems, you will encounter many difficultintegrals. Although you may be tempted to use Mathematica or Maple(which sometimes is the easiest approach), I cannot overestimate thevalue of a good table of integrals. Professionals always choose firstto consult the Table ofIntegrals, Series and Products, 8th edition,by I.S. Gradshteyn and Ryzhik, edited byDaniel Zwillinger and Victor Moll (Academic Press, Elsevier, Inc.,Amsterdam, 2015). This resource is freely available on-line to studentsat the University of California at thislink.
Classical Electrodynamics Jackson 2nd Edition Solutions Manual 2017
VII. Free Textbooks on Electrodynamics
1. Electromagnetic Field Theoryby Bo Thidé is the result of a long standing advancedelectrodynamics internet textbook project, roughly at the same levelas Jackson. A companion book with exercises (electrodynamics problems with solutions) is available for free download too.
2. ClassicalElectrodynamics, Part II by Robert G. Brown is a set of notes written for a graduate electrodynamics course taught at Duke University.These notes have evolved into an online book that is available here: [PDF| Postscript]
This page contains copies of the class handouts, and other pertinent items ofinterest for the U.C. Santa Cruz Physics 214 graduate Electromagnetism II class.
SPECIAL ANNOUNCEMENTS
Solutions to the final exam have been posted toSection IV of this website.The graded homework set 5 and the final exam are now available. Stopby my office any time during the spring quarter to retrieve your work.
Final grades have been posted. The final exam scores ranged from alow of 52 to a high of 91. The mean was 67.
One final bonus to celebrate the spring break. I have posted a classhandout entitled Thomas Precession and the BMT equation toSection V of this website. A link to one of the referencesto the handout is also provided in Section IX ofthis website. Enjoy!
Table of Contents
Classical Electrodynamics Jackson 2nd Edition Solutions Manual Youtube
[ I. General Information and Syllabus | II. Disability Statement to Students in Class | III. Problem Sets and Exams | IV. Solutions to Problem Sets and Exams | V. Other Class Handouts | VI. References on special functions of mathematical physics | VII. Free Textbooks on Classical Electrodynamics | VIII. Other books of interest | IX. Articles of interest | X. Web pages of interest ]
I. General Information and Syllabus
The General Information and Syllabus handout is available in either PDF or Postscript format [PDF | Postscript]
Some of the information in this handout is reproduced here.
General Information | |
---|---|
Instructor | Howard Haber |
Office | ISB 326 |
Phone | 459-4228 |
Office Hours | Mondays 2--4 pm |
haber@scipp.ucsc.edu | |
academic webpage | http://scipp.ucsc.edu/~haber/ |
Class Hours
Lectures: Tuesdays and Thursdays, 5:10--6:45 pm, ISB 231
Required Textbook
Classical Electrodynamics, 3rd Edition,by John David Jackson [Errata for the 18th reprinting (dated 2008) can be found here inPDF format.]
Course Grading and Requirements
50% Homework (5 problem sets)
20% Midterm Exam (24 hour take-home exam; due Friday February 24, 2017 at 7 pm)
30% Final Exam (Wednesday March 22, 2017, from 4--7 pm)
Homework assignments are not optional. Homework assignmentsare typically due on Thursdays (with two weeks allotted for each homework set).You are encouraged to discuss the class material and homework problems with your classmates and to work in groups, but all submitted problems should represent your own work and understanding.
The final exam will be held in ISB 231.This exam will be three hours long and cover the complete coursematerial. You must take the final exam to pass the course.You will be permitted to consult any textbook of your choosing, your ownhandwritten notes, and any class handout (including solutions to theproblem sets) during the final exam.
Course Syllabus
- Review of Maxwell's Equations
- Plane Electromagnetic Waves
- Wave Propagation in a Dispersive Medium
- Special Theory of Relativity
- Simple Radiating Systems and Antennae
- Multipole Fields
- Dynamics of Relativistic Particles and Electromagnetic Fields
- Radiation by Accelerated Charges
- Scattering of Electromagnetic Waves
II. Disability Statement to Students in Class
UC Santa Cruz is committed to creating an academic environment thatsupports its diverse student body. If you are a student with adisability who requires accommodations to achieve equal access in thiscourse, please submit your Accommodation Authorization Letter from theDisability Resource Center (DRC) to me privately during my officehours or by appointment, preferably within the first two weeks of thequarter. At this time, we would also like us to discuss ways we canensure your full participation in the course. We encourage allstudents who may benefit from learning more about DRC services tocontact DRC by phone at 831-459-2089 or by email atdrc@ucsc.edu.III. Problem Sets and Exams
Problem sets and exams are available in either PDF or Postscript formats.
- Problem Set #1--due: Thursday, January 26, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #1 [PDF]
- Problem Set #2--due: Thursday, February 9, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #2 [PDF]
- Problem Set #3--due: Thursday, February 23, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #3 [PDF]
- Midterm Exam--due: Monday, February 27, 2017 [PDF | Postscript]
- Problem Set #4--due: Thursday, March 9, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #4 [PDF]
- Problem Set #5--due: Tuesday, March 21, 2017 [PDF | Postscript]; Link to Jackson problems appearing in Problem Set #5 [PDF]
- Final Exam--Wednesday, March 22, 2017 [PDF | Postscript]
IV. Solutions to Problem Sets and Exams
The problem set and exam solutions are available in either PDF or postscript formats.
- Solution Set #1 [PDF | Postscript]
- Solution Set #2 [PDF | Postscript]
- Solution Set #3 [PDF | Postscript]
- Midterm Exam Solutions [PDF | Postscript]
- Solution Set #4 [PDF | Postscript]
- Solution Set #5 [PDF | Postscript]
- Final Exam Solutions [PDF | Postscript]
V. Other Class Handouts
Class handouts are available in either PDF or postscript formats.1. A handout entitled The Poisson equation and the inverse Laplacian introduces the concept of the inverse Laplacian and uses it to provide a solution to Poisson's equation.This method of solution is closely related to the Green function techniqueto Poisson's equation. Finally, the inverse Laplacian isused to derive the Helmholtz decomposition of a vector field. [PDF| Postscript].
2. A handout entitled TheRiemann-Lebesgue Lemma is a very important result ofFourier analysis. It has many applications in mathematical physics. A simple proof of the Riemann-Lebesgue lemmais given in this handout. [PDF| Postscript].
3. The identity 1/(x ± iε)=P(1/x)∓iπ is calledthe Sokhotski-Plemelj formula. In a handout entitled TheSokhotski-Plemelj Formula, three different derivations of thisformula are provided. In an appendix, the Fourier transform of atempered distribution is discussed and then applied to theSokhotski-Plemelj formula. Since the Fourier transform of a tempereddistribution (and its inverse Fourier transform) are unique, thisanalysis proides a fourth derivation of the Sokhotski-Plemelj formula. [PDF| Postscript].
4. A handout entitled Examples offour-vectors examines the properties of thevelocity, momentum, force and acceleration four-vectors of specialrelativity. These notes provide a careful derivation of the law of addition of velocities. Inaddition, it presents the relativistic version of Newton's 2nd Lawand discusses the meaning of constant acceleration for relativistic motion. [PDF| Postscript].
5. A handout entitled The electromagnetic fields of a uniformly moving charge provides a derivation ofthe expressions for the electric and magnetic fields of a uniformlymoving charge in the laboratory frame. The derivation, which is basedon performing a Lorentz boost from the rest frame of the charge tothe laboratory frame, is more generalthan the one given in Jackson. Also given are alternative expressions for theelectromagnetic fields in terms of quantities that depend on theretarded time. [PDF| Postscript].
6. The handout entitled The tensor spherical harmonics treats thevector spherical harmonics in a more general context,which provides for a better understanding of their origin (and allows forfurther generalizations). The formalism of addition of angular momentum in quantum mechanics plays a key role in this more generaltreatment. [PDF| Postscript].
7. These notes derive the classical Hamiltonian of a non-relativisticcharged particle in an electromagnetic field, and introduces theprinciple of minimal substitution. This principle is then employed to obtain the Schrodinger equation inthe presence of an external electromagnetic field.As an example, the special case of a uniform magnetic field is exhibited. Finally,we demonstrate the origin of the coupling of the spin operator to the external magnetic fieldin the case of a charged spin-1/2 particle. [PDF | Postscript]
8. These notes present a derivation of the Thomas precession of aparticle with intrinsic spin. The derivation is then extended to thecase of a charged particle with intrinsic spin in an externalelectromagnetic field. The dynamics of such a particle are describedby the BMT equation. A detailed derivation is provided that followsthe method employed in the derivation of the Thomas precession. [PDF | Postscript]
9. In deriving the Liénard-Wiechert potentials in class, we needed toevaluate a Jacobian determinant associated with a change of variables.To evaluate this determinant, we used the result,det(δij+aibj)=1+a•b. In this handount, three derivations of this determinantalidentity are provided. [PDF | Postscript]
10. A handout entitled The Poisson Sum Formula provides a derivation of this famous formula, along with somecommentary. You will use this formula in solving problem 14.13 ofJackson, which examines the radiation of an accelerating particlewhose motion is periodic. [PDF| Postscript].
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11. A handout entitled The power spectrum ofCherenkov radiation provides a derivation of the Tamm-Frankformula for the differential distribution of power with respect tothe frequencies of the radiation. This derivation employs the methodsof Chapter 14 of Jackson. In contrast, Jackson uses a differentmethod for obtaining the Tamm-Frank formula in Chapter 13. [PDF| Postscript].
VI. References on special functions of mathematical physics
1. A superb resource for both the elementary functions and thespecial functions of mathematical physics is theHandbookof Mathematical Functions by Milton Abramowitz and Irene A. Stegun,which is freely available on-line. The home page for thisresource can be foundhere. There, youwill find links to a framesinterface of the book. Another scan of the book can be found here.A third independent link to the book can be foundhere.
2. The NISTHandbook of Mathematical Functions (publishedby Cambridge University Press), together with its Webcounterpart, the NIST Digital Library of Mathematical Functions(DLMF), is the culmination of a project that was conceived in 1996 atthe National Institute of Standards and Technology (NIST). The projecthad two equally important goals: to develop an authoritativereplacement for the highly successful Handbook of MathematicalFunctions with Formulas, Graphs, and Mathematical Tables, published in1964 by the National Bureau of Standards (M. Abramowitz andI. A. Stegun, editors); and to disseminate essentially the sameinformation from a public Web site operated by NIST. The new Handbookand DLMF are the work of many hands: editors, associate editors,authors, validators, and numerous technical experts.The NISTHandbook coversthe properties of mathematical functions, from elementarytrigonometric functions to the multitude of special functions.All of the mathematical information contained in the Handbook is alsocontained in the DLMF, along with additional features such as moregraphics, expanded tables, and higher members of some families offormulas. A PDF copy of the handbook is provided here: [PDF]
3. One of the classic references to special functions is a threevolume set entitled Higher Transcendental Functions (edited by A. Erdelyi), which wascompiled in 1953 and is based in part on notes left by Harry Bateman.This was the primary reference for a generation of physicists andapplied mathematicians, which is colloquially referred to as theBateman Manuscripts. This esteemed reference work continues to be a valuable resources for students and professionals. PDF versions of the three volumes are now available free of charge. Check out the three volumes by clicking on the relevant links here: [Volume 1 |Volume 2 |Volume 3].
4. Another very useful reference for both the elementary functions and thespecial functions of mathematical physics is An Atlasof Functions (2nd edition) by Keith B. Oldham, Jan Myland and JeromeSpanier, published by Springer Science in 2009.This resource is freely available on-line to studentsat the University of California at thislink.
5. Yet another excellent website for both the elementary functions and thespecial functions of mathematical physics is the Wolfram Functionssite. This site was created with Mathematica and is developed and maintainedby Wolfram Research with partial support from the National Science Foundation. Additional mathematical information canbe found on the relatedWolfram MathWorld site.
6. One of my favorite books on special functions isSpecial Functions and Their Applications by N.N. Lebedev (Dover Publications, Inc., Mineola, NY, 1972). Itprovides invaluable information on special functions, while being extremely cheap to buy (and even cheaper to peruse onGoogle Books).
7. In working out Jackson problems, you will encounter many difficultintegrals. Although you may be tempted to use Mathematica or Maple(which sometimes is the easiest approach), I cannot overestimate thevalue of a good table of integrals. Professionals always choose firstto consult the Table ofIntegrals, Series and Products, 8th edition,by I.S. Gradshteyn and Ryzhik, edited byDaniel Zwillinger and Victor Moll (Academic Press, Elsevier, Inc.,Amsterdam, 2015). This resource is freely available on-line to studentsat the University of California at thislink.
Classical Electrodynamics Jackson 2nd Edition Solutions Manual 2017
VII. Free Textbooks on Electrodynamics
1. Electromagnetic Field Theoryby Bo Thidé is the result of a long standing advancedelectrodynamics internet textbook project, roughly at the same levelas Jackson. A companion book with exercises (electrodynamics problems with solutions) is available for free download too.
2. ClassicalElectrodynamics, Part II by Robert G. Brown is a set of notes written for a graduate electrodynamics course taught at Duke University.These notes have evolved into an online book that is available here: [PDF| Postscript]
3. MacroscopicElectrodynamics, by Walter Wilcox and Chris Thron is the onlineversion of a book by the same name that was published in March, 2016by World Scientific.
4. ElectromagneticWaves and Antennas, by Sophocles J. Orfanidis is freelyavailable here: [PDF]
VIII. Other books of interest
1. One of the important mathematical tools used in classical electrodynamicsis the theory of complex variables and analytic functions.There aremany books that treat this topic. One very nice treatment can befound in Chapter 6 of Frederick W. Byron and Robert C. Fuller,Mathematics of Classical and Quantum Physics (Dover Publications,Inc., New York, 1992), originally published by the Addison-WesleyPublishing Company in 1970, but has now been reprinted in aninexpensive paperback edition by Dover Publications.Section 6.6 provides a pedagogical introduction to dispersion relations, whichwill be especially useful for understanding the material of Section 7.10of Jackson. For yourconvenience, I am providing a link to Chapter 6 here. [PDF]
2. A somewhat terse but useful introduction to complex integration canbe found in Chapter 2 of Debabrata Basu, Introductionto Classical and Modern Analysis and Their Application to GroupRepresentation Theory (World Scientific, Singapore, 2011). Theentire chapter is provided free of charge byGoogleBooks. The treatment of analytic continuation at the beginning ofChapter 3 is especially noteworthy. In particular, the exampleprovided in Section 3.1 is spectacular and deserves a place in anybook on complex analysis!
3. Many fully solved problems in the theory of complex variables canbe found in Schaum's outlines, Complex Variables (2nd edition)by Murray R. Spiegel, Seymour Lipschutz, John J. Schiller and DennisSpellman (McGraw Hill, New York, 2009). [PDF]
4. Fianlly, you can also peruse Chapter 1 of Alexander O. Gogolin, Lectureson Complex Integration, which surveys the basics of complexanalysis and applies it to evaluating integrals of various types. This resource isavailable to University of California students. [PDF]
5. One of the best elementary treatments of Green functions forpartial differential equations suitable for physicists can be found in a book by Gabriel Barton,Elements of Green's Functions and Propagation---Potentials,Diffusion and Waves, published byOxford Science Publications in 1989.Among other things, there is a very clear discussion of which boundary conditions constitute a well-posed problem.
IX. Articles of interest
1. Davon Ferrara, who was once a physics graduate student at VanderbiltUniversity claimed thateverything he needed to knowin life he learned from Jackson Electrodynamics. To verify hisassertion, he posted the following document, available here inyour choice of formats: [PDF | [DOCX]
2. The Lorentz gauge condition, which was specified by the Dutch theoretical physicist Hendrik Antoon Lorentz in 1904 was not the first to write down this condition. Thirty-seven years earlier in 1867, the Danish theorist Ludvig Valentin Lorenz introduced a similar constraint on the choice of scalar and vector potentials. J.D. Jackson argues that Lorenz deserves the recognition of understanding the arbitrariness and equivalence of difference forms of the potential. For more details check out his paper, Examplesof the zeroth theorem of the history of science, which canbe found in J.D. Jackson, American Journal of Physics 76, 704 (2008). [PDF]
Jackson is not the first to point out the slighting of Lorenz. In1991, J. van Bladel also argued in Lorenz' favor inLorenz or Lorentz?, which can be found inJ. van Bladel, Antennas and Propagation Magazine, IEEE 33, Issue 2, 69 (1991). Asplundh lr50 manual pdf. [PDF]
3. The historicalroots of gauge invariance are described in this scholarly reviewby J.D. Jackson and L.B. Okun, Review of Modern Physics 73,663 (2001). The relevant work of L.V. Lorenz and H.A. Lorentzare also clarified in this survey. [PDF]
4. J.D. Jackson discusses how to gauge transform from one set of scalar and vector potentials to another set in a paper entitled,From Lorenz to Coulomb and other explicit gauge transformations, which can be found in J.D. Jackson, American Journal of Physics 70, 917 (2002).This paper also shows that the electric and magnetic fields displaythe properties of causality and propagation at the speed of light,even if these properties are not exhibited by the corresponding scalar and vector potentials. [PDF]
5. A comparison of the causal relations in the Lorenz and Coulombgauges is presented in an article entitled,in Causality in the Coulomb Gauge, which can be found inO.L. Brill and B. Goodman, American Journal of Physics 35, 832(1967). [PDF]
6. In Jackson problem 7.27, the term identified as the spin-angular momentum ofthe electromagnetic field is an expression that is not invariant undergauge transformations. However, one can show that a gauge-invariantexpression for the spin-angular momentum does exist that reduces in the Coulomb gauge to Jackson's expression. For further detailscheck out Canonical separation of angular momentum of light into its orbital and spin parts,which can be found in Iwo Bialynicki-Birula and Zofia Bialynicka-Birula,Journal of Optics 13, 064014 (2011). [PDF]
7. In class, I stated that the only invariant Lorentz tensors of specialrelativity are δμν, gμν, gμν,the Levi Civita tensor εμναβ(and its relatives with raised indices), and product thereof.A similar theorem exists for n-dimensionalCartesian tensors, where the onlyinvariant tensors (also called isotropic tensors) are δij, εi1..in andproducts thereof. For a simple proof of the latter theorem, seeOn isotropic tensors by Sir Harold Jeffreys, MathematicalProceedings of the Cambridge Philosophical Society 73, 173--176 (1973). [PDF]
A similar proof can be given for the Lorentz tensors of special relativityas well as tensors with respect to more general transformations. A more sophisticatedtreatment of the classification of invariant tensors can be found inOn the classification of isotropic tensors byP.G. Appleby, B.R. Duffy and R.W. Ogden, Glasgow Mathematical Journal 29, 185--196 (1987). [PDF]
8. A pedagogicalpaper that treats the properties of localized steady charges and currents moving with a constant velocity provides the exactrelativistic transformations for the electric and magnetic dipole moments(which were treated to first order in β in Jackson, problem11.27). Further details can be found in the solutions to problem set2. But, you might be interested in having a look at the original paperentitled The Electric Dipole Moment of a Moving Magnetic Dipole byGeorge P. Fisher, American Journal of Physics 39, 1528--1533 (1971). [PDF].
A related paper of interest that treats the same subject matter inmore depth is entitled Moving pointlike charges and electric and magnetic dipoles byMarijan Ribarič and Luka Šušteršič, American Journal of Physics 60, 513--519 (1992). [PDF]
Remarkably, the result obtained in part (a) of Jackson, problem11.27 often appears in the literature without the overall factor of1/2. For a discussion on this discrepancy, see the paperentitled Magnetic dipole moment of a moving electric dipole by V. Hnizdo,American Journal of Physics 80, 645--647 (2012). [PDF]
Further analysis is provided by V. Hnizdo and Kirk T. MacDonald, Fields and moments of a moving electric dipole [PDF| Postscript]
9. A divergenceless vector field F(r) can be represented in terms of two scalar potential fields ψ(r) andχ(r) [called Debye potentials] as F(r)= Lψ(r)+∇×Lχ(r), where L = -i r×∇. A proof of this result aimed atphysicists can be found in a paper entitled Debye potential representation of vector fields by C.G. Gray andB.G. Nickel, American Journal of Physics 46, 735--736 (1978). [PDF]
The application of the Debye potentials to the multipole expansion canbe found in a paper entitled Multipole expansions of electromagnetic fields using Debye potentials byC.G. Gray, American Journal of Physics 46, 169--179 (1978). In particular, Appendix A of this paper provides a proof of the expansion of an arbitrary vector field (not assumed tobe divergenceless) in terms of three Debye potentials, and Appendix F of this paper contains a number of veryuseful identities involving the differential operators ∇and L. [PDF]
10. The role of the observer is frequently obscured, either by writingequations in a coordinate system implicitly pertaining to somespecific observer or by entangling the invariance and the observerdependence of physical quantities. For example, this confusion often arises in the treatment of Thomas precession. The confusion underlying the aforementioned misconceptions areclarified by a number of examples in relativistic kinematics andclassical electrodynamics in thepaper, Bruno Klajn and Ivica Smolić,entitled Subtleties of Invariance, Covariance and Observer Independence, EuropeanJournal of Physics 34, 887--899 (2013). In particular, check out the very nice analysis ofthe Thomas precession which is presented there. [PDF]
11. A simple and pedagogical derivation of the Bargmann-Michel-Telegdi(BMT) equation (which also exhibit the presence of Thomas precession)is given in a paper by Krysztof Rębilas, entitled Simpleapproach to relativistic spin dynamics, American Journal ofPhysics 79, 1064--1067 (2011). [PDF]
12. Using Jefimenko's equations, one can derive directly theexpressions for the electric and magnetic fields of a moving pointcharge without having to first calculate the scalar and vectorpotentials. This calculation is carried out in detail in Omer Dushekand Sergiy V. Kuzmon, The fields of a moving point charge: a newderivation from Jefimenko's euations, European Journal of Physics 25,343--349 (2004). [PDF]
13. In class, we derived the Liénard-Wiechert scalar and vector potentials for an accelerating point charge, and then evaluated thecorresponding electric and magnetic fields. Our analysis wasperformed under the assumption that the mass of the charge is non-zero(so that v<c). The electric and magnetic fields due to amassless accelerating point charge have been obtained for thefirst time in Francesco Azzurli and Jurt Lechner,The Liénard-Wichert field of accelerated massless charges, Physics Letters A377, 1025--1029 (2013). [PDF]
14. A point charge moving with constant velocity in a material mediumgenerates time-dependent elemental dipoles. If the velocityof the charge is larger than c/nr (i.e. the speed oflight in the medium), then there is a coherent superposition of theradiation emitted by each elemental dipole. The total coherentradiation can be identified as the Cherenkov radiation. This analysisprovides for a very physical picture for the origin of Cherenkovradiation. For further details, see the article entitledInduced time-dependent polarization and the Cherenkov effectby J.A.E. Roa-Neri, J.L. Jimenez and M. Villavicencio,European Journal of Physics, 16, 191--194 (1995). [PDF]
15. In the computation of Cherenkov radiation presented in class, the electric field is singular on the surface of the Mach cone where n•v=ct/n and r=ct/n, and n is the index of refraction of the medium, These singularities arise due to an idealizationof the problem (e.g. the assumption of a point charge); in a more realistic setting these singularities are smoothed out. For example, see the paper entitledCherenkov radiation from a charge of finite size or a bunch of charges, by Glenn S. Smith, American Journal of Physics 61, 147--155 (1993). [PDF]
X. Web pages of interest
1. One of the most prolific sources for pedagogical treatments ofa variety of interesting problems in classical electrodynamicsis a webpage maintained by Kirk T. McDonaldentitled Physics Examples and other Pedagogic Diversions.Although some of the content is password protected, most of thearticles listed are available freely.
2. Which direction is the electric field rotating in a left or right circularlypolarized wave? Check out the Wikipedia page on circularpolarization, which provides some enlightening animationsthat illustate the answer to this question.
haber@scipp.ucsc.eduLast Updated: March 27, 2017