SlideShare una empresa de Scribd logo
1 de 13
Electromagnetic Theory
             2012 - 2011



       Dr. Omed Ghareb Abdullah
         University of Sulaimani
Faculty of Science and Science Education
 School of Science / Physics Department
Electromagnetic Theory Lectures
on webpage of University of Sulaimani
  http://www.univsul.org
  Faculties
  School of Science
  Departments or Branches
  Department of Physics
  Department staff
  http://www.univsul.org/E_U_Mamosta.aspx?Jimare=84&Ziman=2
Course Reading list and References
Main References:
 [1] David J. Griffiths, and Reed College, “Introduction to Electrodynamics”,
     Prentice-Hall, Inc. (1999).
 [2] Matthew N. O. Sadiku, “Elements of Electromagnetics”, Fourth Edition,
     Oxford University Press, Inc., (2007).

Useful References:
  [3] Herbert P. Neff, “Introductory Electromagnetics”, John Wiley & Sons,
      Inc., (1991).
  [4] Joseph A. Edminister, “Schaum’s outline of Theory and Problems of
      Electromagnetis”, Second Edition, The McGraw-Hill Companies, Inc.
      (1993).
  [5] Fawwaz T. Ulaby, “Fundamentals of Applied Electromagnetics”, (2004).
  [6] Stuart M. Wentworth, “Fundamentals of Electromagnetics With
      Engineering Application”, (2005).
  [7] http://home.att.net/~numericana/answer/maxwell.htm
Syllabus for 1st and 2nd Semester
Chapter One: Vector Analysis and Coordinate
               Systems
Chapter Two: Electrostatic Fields
Chapter Three: Special Techniques
Chapter Four: Electrostatic Field in Matter
Chapter Five: Magnetostatics Field
Chapter Six: Magnetic Fields in Matter
Chapter Seven: Electrodynamics Fields
Chapter Eight: Electromagnetic Waves Propagation
Branches of electromagnetic spectrum in terms of their
             frequencies, wavelengths and energies

No.       Branches
1.       Cosmic Ray
2.       Gamma Ray

3.          X-Ray

4.       Ultra Violet

5.       Visible light
6.         Infrared

7.       Microwave


8.       Radio Wave
Branches of electromagnetic spectrum in terms of their
       frequencies, wavelengths and energies
Multiple and submultiples prefixes

 Prefix        Symbol     Magnitude
  exa            E           1018
  peta           P           1015
  tera           T           1012
  giga           G           109
  mega           M           106
  kilo           K           103
  milli          m           10-3
 micro           μ           10-6
  nano           n           10-9
  pico           p           10-12
  fimto          f           10-15
  atto           a           10-18
 Electromagnetic Theory: Is a science which studies the
  electric and magnetic        phenomenon      with   their
  engineering applications.

 Wave: Generally the wave is defined as a form of energy
  in move.

 Field: Is defined as the action at a distance between two
  objects without direct contact, such as Electric,
  Magnetic and Gravitational fields.
 Electrostatics Field: Stationary charges produce E-field. This field
  and their phenomenon’s have been studied by many scientists:
  Coulomb, Ohm, Gauss, Kirschofe and Volta.

 Magnetostatics Field: Moving charges or stationary current lead
  to the production of magnetic field. This field and their
  phenomenon’s have been studied by many scientists: Oerestd,
  Ampere, Biot-Savart, Henry, Lenz, Lorentz and Faraday.

 Electromagnetic Field: Time varying current or when the charge
  is accelerated (i.e. moving with varying velocity) the field which
  produced is known as electromagnetic field. This theory has
  been constructed by Maxwell who unified the theory of
  electricity and magnetism through a set of four equations
  known as the Maxwell’s equations.
       ρ
             E
                   o
                       
                     B
           E
                       t
          
           B 0
                                       
                                    E
           B   oJ           o      o
                                       t
E   Electric field Intensity ( N / C ) or (V / m)
B   Magnetic flux density ( Web / m 2 )
    Ch arg e density ( C / m 3 )
J   Current density ( A / m 2 )
History of Electric and Magnetic Phenomenon
1. ca. 900 Legend has it that while walking across a field in northern Greece, a
   shepherd named Magnus experiences a pull on the iron nails in his sandals
   by the black rock he was standing on. The region was later named
   Magnesia and the rock became known as magnetite [a form of iron with
   permanent magnetism].

2. ca. 600 Greek philosopher Thales describes how amber, after being rubbed
   with cat fur, can pick up feathers [static electricity].

3. ca. 1000 Magnetic compass used as a navigational device.

4. 1600 William Gilbert (English) coins the term electric after the Greek word
   for amber (elektron), and observes that a compass needle points north-
   south because the Earth acts as a bar magnet.

5. 1671 Isaac Newton (English) demonstrates that white light is a mixture of
   all the colors.

6. 1733 Charles-Francois du Fay (French) discovered that electric charges are
   of two forms, and that like charges repel and unlike charges attract.

7. 1745 Pieter van Musschenbroek (Dutch) invents the Leyden jar, the first
   electrical capacitor.
8. 1752 Benjamin Franklin (American) invents the lightning rod and
   demonstrates that lightning is electricity.

9. 1785 Charles-Augustin de Coulomb (French) demonstrates that the
   electrical force between charges is proportional to the inverse of the
   square of the distance between them.

10. 1800 Alessandro Volta (Italian) develops the first electric battery.

11. 1820 Hans Christian Oersted (Danish) demonstrates the interconnection
   between electricity and magnetism through his discovery that an electric
   current in a wire causes a compass needle to orient itself perpendicular
   to the wire.

12. 1820 Andre-Marie Ampere (French) notes that parallel currents in wires
   attract each other and opposite currents repel.

13. 1820 Jean-Baptiste Biot (French) and Felix Savart (French) develop the
   Biot-Savart law relating the magnetic field induced by a wire segment to
   the current flowing through it.

14. 1827 Georg Simon Ohm (German) formulates Ohm’s law relating electric
   potential to current and resistance.
15. 1827 Joseph Henry (American) introduces the concept of inductance and built one
    of the earliest electric motors. He also assisted Samuel Morse in the development of
    the telegraph.

16. 1831 Michael Faraday (English) discovers that a changing magnetic flux can induce
    an electromotive force.

17. 1835 Carl Friedrich Gauss (German) formulates Gauss’s law relating the electric flux
    flowing through an enclosed surface to the enclosed electric charge.

18. 1873 James Clerk Maxwell (Scottish) publishes his Treatise on Electricity and
    Magnetism in which he unites the discoveries of Coulomb, Oersted, Ampere,
    Faraday, and others into four elegantly constructed mathematical equations known
    today as Maxwell’s Equations.

19. 1887 Heinrich Hertz (German) builds a system that can generate electromagnetic
    waves (at radio frequencies) and detect them.

20. 1888 Nikola Tesla (Serbian-American) invents the ac (alternating current) electric
    motor.

21. 1895 Wilhelm Roentgen (German) discovers Xrays. One of his first X-ray images
    was of the bones in his wife’s hand. [1901 Nobel Prize in physics.]

22. 1897 Joseph John Thomson (English) discovers the electron and measures its
    charge-to-mass ratio. [1906 Nobel Prize in physics.]

23. 1905 Albert Einstein (German-American) explains the photoelectric effect
   discovered earlier by Hertz in 1887. [1921 Nobel Prize in physics.]

Más contenido relacionado

La actualidad más candente

8-1 Electric Charge
8-1 Electric Charge8-1 Electric Charge
8-1 Electric Chargeguested7952
 
5.1 electric fields
5.1 electric fields5.1 electric fields
5.1 electric fieldsPaula Mills
 
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...Jitin Pillai
 
Chapter (1) electrostatics
Chapter (1) electrostaticsChapter (1) electrostatics
Chapter (1) electrostaticsAbdulahiSahal
 
8-2 Electric Current
8-2 Electric Current8-2 Electric Current
8-2 Electric Currentguested7952
 
Electromagnetism
ElectromagnetismElectromagnetism
ElectromagnetismLk
 
Electric charge and electric field
Electric charge and electric fieldElectric charge and electric field
Electric charge and electric fieldChris Auld
 
faradays law and its applications ppt
faradays law and its applications pptfaradays law and its applications ppt
faradays law and its applications pptIndira Kundu
 
Electromagnetic fields:Units and constants
Electromagnetic fields:Units and constantsElectromagnetic fields:Units and constants
Electromagnetic fields:Units and constantsDr.SHANTHI K.G
 
Electro 0
Electro 0Electro 0
Electro 0Omed
 
Maxwell's equation and it's correction in Ampere's circuital law
Maxwell's equation and it's correction in Ampere's circuital lawMaxwell's equation and it's correction in Ampere's circuital law
Maxwell's equation and it's correction in Ampere's circuital lawKamran Ansari
 
Electromagnetic induction 2
Electromagnetic induction 2Electromagnetic induction 2
Electromagnetic induction 2Olaug S
 
ELECTRICITY AND MAGNETISM
ELECTRICITY AND MAGNETISMELECTRICITY AND MAGNETISM
ELECTRICITY AND MAGNETISMguest25cc9d
 

La actualidad más candente (20)

8-1 Electric Charge
8-1 Electric Charge8-1 Electric Charge
8-1 Electric Charge
 
Electric Field Lines | Physics
Electric Field Lines | PhysicsElectric Field Lines | Physics
Electric Field Lines | Physics
 
5.1 electric fields
5.1 electric fields5.1 electric fields
5.1 electric fields
 
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...
INTRODUCTION OF ELEMENTARY CONCEPTS AND FUNDAMENTAL LAWS RELATED TO ELECTROST...
 
Electrostatics part 2
Electrostatics part 2Electrostatics part 2
Electrostatics part 2
 
Electric Fields
Electric FieldsElectric Fields
Electric Fields
 
Chapter (1) electrostatics
Chapter (1) electrostaticsChapter (1) electrostatics
Chapter (1) electrostatics
 
8-2 Electric Current
8-2 Electric Current8-2 Electric Current
8-2 Electric Current
 
Electrostatics -1
Electrostatics -1Electrostatics -1
Electrostatics -1
 
Electromagnetism
ElectromagnetismElectromagnetism
Electromagnetism
 
Electric charge and electric field
Electric charge and electric fieldElectric charge and electric field
Electric charge and electric field
 
faradays law and its applications ppt
faradays law and its applications pptfaradays law and its applications ppt
faradays law and its applications ppt
 
Electrostatics
ElectrostaticsElectrostatics
Electrostatics
 
Electromagnetic fields:Units and constants
Electromagnetic fields:Units and constantsElectromagnetic fields:Units and constants
Electromagnetic fields:Units and constants
 
Test
TestTest
Test
 
Electro 0
Electro 0Electro 0
Electro 0
 
Maxwell's equation and it's correction in Ampere's circuital law
Maxwell's equation and it's correction in Ampere's circuital lawMaxwell's equation and it's correction in Ampere's circuital law
Maxwell's equation and it's correction in Ampere's circuital law
 
Electromagnetic induction 2
Electromagnetic induction 2Electromagnetic induction 2
Electromagnetic induction 2
 
ELECTRICITY AND MAGNETISM
ELECTRICITY AND MAGNETISMELECTRICITY AND MAGNETISM
ELECTRICITY AND MAGNETISM
 
Faradays law
Faradays lawFaradays law
Faradays law
 

Destacado

Class06 transmission line_basics
Class06 transmission line_basicsClass06 transmission line_basics
Class06 transmission line_basicss.p.c.e.t.
 
Fundamentals of electromagnetics
Fundamentals of electromagneticsFundamentals of electromagnetics
Fundamentals of electromagneticsRichu Jose Cyriac
 
Smith chart:A graphical representation.
Smith chart:A graphical representation.Smith chart:A graphical representation.
Smith chart:A graphical representation.amitmeghanani
 
Computational electromagnetics
Computational electromagneticsComputational electromagnetics
Computational electromagneticsAwaab Fakih
 
Transmission line analysis
Transmission line analysisTransmission line analysis
Transmission line analysisAnurag Anupam
 
Transmission Line Basics
Transmission Line BasicsTransmission Line Basics
Transmission Line BasicsJohn Williams
 
[Solutions manual] elements of electromagnetics BY sadiku - 3rd
[Solutions manual] elements of electromagnetics BY sadiku - 3rd[Solutions manual] elements of electromagnetics BY sadiku - 3rd
[Solutions manual] elements of electromagnetics BY sadiku - 3rdPriSim
 

Destacado (8)

Class06 transmission line_basics
Class06 transmission line_basicsClass06 transmission line_basics
Class06 transmission line_basics
 
Fundamentals of electromagnetics
Fundamentals of electromagneticsFundamentals of electromagnetics
Fundamentals of electromagnetics
 
Transmission Line
Transmission LineTransmission Line
Transmission Line
 
Smith chart:A graphical representation.
Smith chart:A graphical representation.Smith chart:A graphical representation.
Smith chart:A graphical representation.
 
Computational electromagnetics
Computational electromagneticsComputational electromagnetics
Computational electromagnetics
 
Transmission line analysis
Transmission line analysisTransmission line analysis
Transmission line analysis
 
Transmission Line Basics
Transmission Line BasicsTransmission Line Basics
Transmission Line Basics
 
[Solutions manual] elements of electromagnetics BY sadiku - 3rd
[Solutions manual] elements of electromagnetics BY sadiku - 3rd[Solutions manual] elements of electromagnetics BY sadiku - 3rd
[Solutions manual] elements of electromagnetics BY sadiku - 3rd
 

Similar a Electro 0

518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf
518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf
518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdfVaishanaviG1
 
Proponents on the Formulation of EM Wave Theory.pptx
Proponents  on the Formulation of  EM Wave Theory.pptxProponents  on the Formulation of  EM Wave Theory.pptx
Proponents on the Formulation of EM Wave Theory.pptxChristyRoseGVelasco
 
Electricity and Magnetism (Timeline).ppt
Electricity and Magnetism (Timeline).pptElectricity and Magnetism (Timeline).ppt
Electricity and Magnetism (Timeline).pptLeanderJamesGalas
 
electromagnetic_waves (1).ppt
electromagnetic_waves (1).pptelectromagnetic_waves (1).ppt
electromagnetic_waves (1).pptmitanshu11
 
electromagnetic_waves.ppt
electromagnetic_waves.pptelectromagnetic_waves.ppt
electromagnetic_waves.pptmragarwal
 
Electromagnetic_Waves.ppt
Electromagnetic_Waves.pptElectromagnetic_Waves.ppt
Electromagnetic_Waves.pptJosephMuez2
 
EM wave theory.pptx
EM wave theory.pptxEM wave theory.pptx
EM wave theory.pptxmikeebio1
 
ch-8 ( electromagnetic waves ).pptx
ch-8 ( electromagnetic waves ).pptxch-8 ( electromagnetic waves ).pptx
ch-8 ( electromagnetic waves ).pptxbablivashisht
 
Ap2 unit6 open stax notes electromagnetic waves
Ap2 unit6 open stax notes electromagnetic wavesAp2 unit6 open stax notes electromagnetic waves
Ap2 unit6 open stax notes electromagnetic wavesSarah Sue Calbio
 
Electromagneticinduction
ElectromagneticinductionElectromagneticinduction
Electromagneticinductionyuva raj
 
ELECTROMAGNETIC WAVE THEORY PPT.pptx
ELECTROMAGNETIC WAVE THEORY PPT.pptxELECTROMAGNETIC WAVE THEORY PPT.pptx
ELECTROMAGNETIC WAVE THEORY PPT.pptxMarybel41
 
Physicsproject 140129130848-phpapp01
Physicsproject 140129130848-phpapp01Physicsproject 140129130848-phpapp01
Physicsproject 140129130848-phpapp01Shivansh Patel
 
EM wave theory.pptx
EM wave theory.pptxEM wave theory.pptx
EM wave theory.pptxmikeebio1
 
AIP Project Physics 1.pptx
AIP Project Physics 1.pptxAIP Project Physics 1.pptx
AIP Project Physics 1.pptxJohanVarughese1
 
Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Self-employed
 
PHY PUC 2 Notes-Electromagnetic waves
PHY PUC 2 Notes-Electromagnetic wavesPHY PUC 2 Notes-Electromagnetic waves
PHY PUC 2 Notes-Electromagnetic wavesstudy material
 
General.physics 2-quarter 4-WEEK-EM WAVES
General.physics 2-quarter 4-WEEK-EM WAVESGeneral.physics 2-quarter 4-WEEK-EM WAVES
General.physics 2-quarter 4-WEEK-EM WAVESElaisaBassig
 
Electromagnetic waves
Electromagnetic wavesElectromagnetic waves
Electromagnetic wavesharshbharti6
 

Similar a Electro 0 (20)

518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf
518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf
518901864-Physics-Project-Class-XII-2021-22-Investigatory-Project.pdf
 
Proponents on the Formulation of EM Wave Theory.pptx
Proponents  on the Formulation of  EM Wave Theory.pptxProponents  on the Formulation of  EM Wave Theory.pptx
Proponents on the Formulation of EM Wave Theory.pptx
 
History of radio
History of radioHistory of radio
History of radio
 
Electricity and Magnetism (Timeline).ppt
Electricity and Magnetism (Timeline).pptElectricity and Magnetism (Timeline).ppt
Electricity and Magnetism (Timeline).ppt
 
electromagnetic_waves (1).ppt
electromagnetic_waves (1).pptelectromagnetic_waves (1).ppt
electromagnetic_waves (1).ppt
 
electromagnetic_waves.ppt
electromagnetic_waves.pptelectromagnetic_waves.ppt
electromagnetic_waves.ppt
 
Electromagnetic_Waves.ppt
Electromagnetic_Waves.pptElectromagnetic_Waves.ppt
Electromagnetic_Waves.ppt
 
Physics
PhysicsPhysics
Physics
 
EM wave theory.pptx
EM wave theory.pptxEM wave theory.pptx
EM wave theory.pptx
 
ch-8 ( electromagnetic waves ).pptx
ch-8 ( electromagnetic waves ).pptxch-8 ( electromagnetic waves ).pptx
ch-8 ( electromagnetic waves ).pptx
 
Ap2 unit6 open stax notes electromagnetic waves
Ap2 unit6 open stax notes electromagnetic wavesAp2 unit6 open stax notes electromagnetic waves
Ap2 unit6 open stax notes electromagnetic waves
 
Electromagneticinduction
ElectromagneticinductionElectromagneticinduction
Electromagneticinduction
 
ELECTROMAGNETIC WAVE THEORY PPT.pptx
ELECTROMAGNETIC WAVE THEORY PPT.pptxELECTROMAGNETIC WAVE THEORY PPT.pptx
ELECTROMAGNETIC WAVE THEORY PPT.pptx
 
Physicsproject 140129130848-phpapp01
Physicsproject 140129130848-phpapp01Physicsproject 140129130848-phpapp01
Physicsproject 140129130848-phpapp01
 
EM wave theory.pptx
EM wave theory.pptxEM wave theory.pptx
EM wave theory.pptx
 
AIP Project Physics 1.pptx
AIP Project Physics 1.pptxAIP Project Physics 1.pptx
AIP Project Physics 1.pptx
 
Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Electromagnetic Waves Class 12
Electromagnetic Waves Class 12
 
PHY PUC 2 Notes-Electromagnetic waves
PHY PUC 2 Notes-Electromagnetic wavesPHY PUC 2 Notes-Electromagnetic waves
PHY PUC 2 Notes-Electromagnetic waves
 
General.physics 2-quarter 4-WEEK-EM WAVES
General.physics 2-quarter 4-WEEK-EM WAVESGeneral.physics 2-quarter 4-WEEK-EM WAVES
General.physics 2-quarter 4-WEEK-EM WAVES
 
Electromagnetic waves
Electromagnetic wavesElectromagnetic waves
Electromagnetic waves
 

Último

Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machinePadma Pradeep
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyAlfredo García Lavilla
 
Search Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfSearch Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfRankYa
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Mark Simos
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesZilliz
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfSeasiaInfotech2
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brandgvaughan
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebUiPathCommunity
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationRidwan Fadjar
 
AI as an Interface for Commercial Buildings
AI as an Interface for Commercial BuildingsAI as an Interface for Commercial Buildings
AI as an Interface for Commercial BuildingsMemoori
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024Lorenzo Miniero
 
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr LapshynFwdays
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 3652toLead Limited
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Commit University
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenHervé Boutemy
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsMark Billinghurst
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticscarlostorres15106
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationSafe Software
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Patryk Bandurski
 

Último (20)

Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machine
 
Commit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easyCommit 2024 - Secret Management made easy
Commit 2024 - Secret Management made easy
 
Search Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdfSearch Engine Optimization SEO PDF for 2024.pdf
Search Engine Optimization SEO PDF for 2024.pdf
 
DMCC Future of Trade Web3 - Special Edition
DMCC Future of Trade Web3 - Special EditionDMCC Future of Trade Web3 - Special Edition
DMCC Future of Trade Web3 - Special Edition
 
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
Tampa BSides - Chef's Tour of Microsoft Security Adoption Framework (SAF)
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector Databases
 
The Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdfThe Future of Software Development - Devin AI Innovative Approach.pdf
The Future of Software Development - Devin AI Innovative Approach.pdf
 
WordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your BrandWordPress Websites for Engineers: Elevate Your Brand
WordPress Websites for Engineers: Elevate Your Brand
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio Web
 
My Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 PresentationMy Hashitalk Indonesia April 2024 Presentation
My Hashitalk Indonesia April 2024 Presentation
 
AI as an Interface for Commercial Buildings
AI as an Interface for Commercial BuildingsAI as an Interface for Commercial Buildings
AI as an Interface for Commercial Buildings
 
SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024SIP trunking in Janus @ Kamailio World 2024
SIP trunking in Janus @ Kamailio World 2024
 
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
"Federated learning: out of reach no matter how close",Oleksandr Lapshyn
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!
 
DevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache MavenDevoxxFR 2024 Reproducible Builds with Apache Maven
DevoxxFR 2024 Reproducible Builds with Apache Maven
 
Human Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR SystemsHuman Factors of XR: Using Human Factors to Design XR Systems
Human Factors of XR: Using Human Factors to Design XR Systems
 
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmaticsKotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
Kotlin Multiplatform & Compose Multiplatform - Starter kit for pragmatics
 
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry InnovationBeyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
Beyond Boundaries: Leveraging No-Code Solutions for Industry Innovation
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
 

Electro 0

  • 1. Electromagnetic Theory 2012 - 2011 Dr. Omed Ghareb Abdullah University of Sulaimani Faculty of Science and Science Education School of Science / Physics Department
  • 2. Electromagnetic Theory Lectures on webpage of University of Sulaimani http://www.univsul.org Faculties School of Science Departments or Branches Department of Physics Department staff http://www.univsul.org/E_U_Mamosta.aspx?Jimare=84&Ziman=2
  • 3. Course Reading list and References Main References: [1] David J. Griffiths, and Reed College, “Introduction to Electrodynamics”, Prentice-Hall, Inc. (1999). [2] Matthew N. O. Sadiku, “Elements of Electromagnetics”, Fourth Edition, Oxford University Press, Inc., (2007). Useful References: [3] Herbert P. Neff, “Introductory Electromagnetics”, John Wiley & Sons, Inc., (1991). [4] Joseph A. Edminister, “Schaum’s outline of Theory and Problems of Electromagnetis”, Second Edition, The McGraw-Hill Companies, Inc. (1993). [5] Fawwaz T. Ulaby, “Fundamentals of Applied Electromagnetics”, (2004). [6] Stuart M. Wentworth, “Fundamentals of Electromagnetics With Engineering Application”, (2005). [7] http://home.att.net/~numericana/answer/maxwell.htm
  • 4. Syllabus for 1st and 2nd Semester Chapter One: Vector Analysis and Coordinate Systems Chapter Two: Electrostatic Fields Chapter Three: Special Techniques Chapter Four: Electrostatic Field in Matter Chapter Five: Magnetostatics Field Chapter Six: Magnetic Fields in Matter Chapter Seven: Electrodynamics Fields Chapter Eight: Electromagnetic Waves Propagation
  • 5. Branches of electromagnetic spectrum in terms of their frequencies, wavelengths and energies No. Branches 1. Cosmic Ray 2. Gamma Ray 3. X-Ray 4. Ultra Violet 5. Visible light 6. Infrared 7. Microwave 8. Radio Wave
  • 6. Branches of electromagnetic spectrum in terms of their frequencies, wavelengths and energies
  • 7. Multiple and submultiples prefixes Prefix Symbol Magnitude exa E 1018 peta P 1015 tera T 1012 giga G 109 mega M 106 kilo K 103 milli m 10-3 micro μ 10-6 nano n 10-9 pico p 10-12 fimto f 10-15 atto a 10-18
  • 8.  Electromagnetic Theory: Is a science which studies the electric and magnetic phenomenon with their engineering applications.  Wave: Generally the wave is defined as a form of energy in move.  Field: Is defined as the action at a distance between two objects without direct contact, such as Electric, Magnetic and Gravitational fields.
  • 9.  Electrostatics Field: Stationary charges produce E-field. This field and their phenomenon’s have been studied by many scientists: Coulomb, Ohm, Gauss, Kirschofe and Volta.  Magnetostatics Field: Moving charges or stationary current lead to the production of magnetic field. This field and their phenomenon’s have been studied by many scientists: Oerestd, Ampere, Biot-Savart, Henry, Lenz, Lorentz and Faraday.  Electromagnetic Field: Time varying current or when the charge is accelerated (i.e. moving with varying velocity) the field which produced is known as electromagnetic field. This theory has been constructed by Maxwell who unified the theory of electricity and magnetism through a set of four equations known as the Maxwell’s equations.
  • 10.  ρ E o    B E t   B 0     E B oJ o o t E Electric field Intensity ( N / C ) or (V / m) B Magnetic flux density ( Web / m 2 ) Ch arg e density ( C / m 3 ) J Current density ( A / m 2 )
  • 11. History of Electric and Magnetic Phenomenon 1. ca. 900 Legend has it that while walking across a field in northern Greece, a shepherd named Magnus experiences a pull on the iron nails in his sandals by the black rock he was standing on. The region was later named Magnesia and the rock became known as magnetite [a form of iron with permanent magnetism]. 2. ca. 600 Greek philosopher Thales describes how amber, after being rubbed with cat fur, can pick up feathers [static electricity]. 3. ca. 1000 Magnetic compass used as a navigational device. 4. 1600 William Gilbert (English) coins the term electric after the Greek word for amber (elektron), and observes that a compass needle points north- south because the Earth acts as a bar magnet. 5. 1671 Isaac Newton (English) demonstrates that white light is a mixture of all the colors. 6. 1733 Charles-Francois du Fay (French) discovered that electric charges are of two forms, and that like charges repel and unlike charges attract. 7. 1745 Pieter van Musschenbroek (Dutch) invents the Leyden jar, the first electrical capacitor.
  • 12. 8. 1752 Benjamin Franklin (American) invents the lightning rod and demonstrates that lightning is electricity. 9. 1785 Charles-Augustin de Coulomb (French) demonstrates that the electrical force between charges is proportional to the inverse of the square of the distance between them. 10. 1800 Alessandro Volta (Italian) develops the first electric battery. 11. 1820 Hans Christian Oersted (Danish) demonstrates the interconnection between electricity and magnetism through his discovery that an electric current in a wire causes a compass needle to orient itself perpendicular to the wire. 12. 1820 Andre-Marie Ampere (French) notes that parallel currents in wires attract each other and opposite currents repel. 13. 1820 Jean-Baptiste Biot (French) and Felix Savart (French) develop the Biot-Savart law relating the magnetic field induced by a wire segment to the current flowing through it. 14. 1827 Georg Simon Ohm (German) formulates Ohm’s law relating electric potential to current and resistance.
  • 13. 15. 1827 Joseph Henry (American) introduces the concept of inductance and built one of the earliest electric motors. He also assisted Samuel Morse in the development of the telegraph. 16. 1831 Michael Faraday (English) discovers that a changing magnetic flux can induce an electromotive force. 17. 1835 Carl Friedrich Gauss (German) formulates Gauss’s law relating the electric flux flowing through an enclosed surface to the enclosed electric charge. 18. 1873 James Clerk Maxwell (Scottish) publishes his Treatise on Electricity and Magnetism in which he unites the discoveries of Coulomb, Oersted, Ampere, Faraday, and others into four elegantly constructed mathematical equations known today as Maxwell’s Equations. 19. 1887 Heinrich Hertz (German) builds a system that can generate electromagnetic waves (at radio frequencies) and detect them. 20. 1888 Nikola Tesla (Serbian-American) invents the ac (alternating current) electric motor. 21. 1895 Wilhelm Roentgen (German) discovers Xrays. One of his first X-ray images was of the bones in his wife’s hand. [1901 Nobel Prize in physics.] 22. 1897 Joseph John Thomson (English) discovers the electron and measures its charge-to-mass ratio. [1906 Nobel Prize in physics.] 23. 1905 Albert Einstein (German-American) explains the photoelectric effect discovered earlier by Hertz in 1887. [1921 Nobel Prize in physics.]