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Analytical Mechanics
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally,
- Package deal
- • 6 items •
- Chapter 6 AM: Motion in One Degree of Freedom • Class notes
- Chapter 5 AM: Canonical Transformation • Class notes
- Chapter 3 AM: Conservation Laws • Class notes
- Chapter 2 AM: Lagrangian Mechanics • Class notes
- Chapter 4 AM: Canonical Equations • Class notes
- And more ….
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally,
Chapter 1 AM: The Laws of Newtonian Mechanics
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
- Package deal
- Class notes
- • 52 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
Chapter 4 AM: Canonical Equations
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
- Package deal
- Class notes
- • 45 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
Chapter 2 AM: Lagrangian Mechanics
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
- Package deal
- Class notes
- • 71 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
Chapter 3 AM: Conservation Laws
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
- Package deal
- Class notes
- • 41 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
Chapter 5 AM: Canonical Transformation
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
- Package deal
- Class notes
- • 48 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetism....
Chapter 6 AM: Motion in One Degree of Freedom
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetis...
- Package deal
- Class notes
- • 32 pages •
The main objective of this course is to introduce students of physics to the 'modern' formalism of classical (or Newtonian) mechanics, especially Lagrangian and Hamiltonian mechanics. An important part of the course will focus on introducing the variational methods and principles in mechanics, or or more generally in theoretical physics. Additionally, the course introduces the students to the mechanics of rigid bodies. 
 
COURSE PRE-REQUISITE: 
Mechanics. 
Calculus. 
Elements of electromagnetis...
Electromagnetism Course
Electromagnetism course covering content in David Cheng fundamentals of electromagnetics engineering
- Package deal
- • 4 items •
- Chapter 4 EM: Faradays law of electromagnetic induction • Class notes
- Chapter 2 EM: Static Electric Fields • Class notes
- Chapter 3 EM: Magnetic Fields • Class notes
- Chapter 1 EM: Vector Analysis • Class notes
Electromagnetism course covering content in David Cheng fundamentals of electromagnetics engineering
Chapter 1 EM: Vector Analysis
This is a calculus based electromagnetism course which goes into the details of dielectric and magnetie materials under electric and magnetic 
fields. The course presents boundary values problems and Maxwell's equations in their local and integral 
forms. 
 
In this chapter we covered: 
Addition of Vectors 
Multiplication of Vectors 
Vector Product 
Mixed Scalar Product 
Mixed Vector Product 
Cartesian-Polar-Cylindrical-Spherical coordinates 
Gradient of a scalar function 
Divergence of a vector...
- Book & Paket-Deal
- Class notes
- • 11 pages •
This is a calculus based electromagnetism course which goes into the details of dielectric and magnetie materials under electric and magnetic 
fields. The course presents boundary values problems and Maxwell's equations in their local and integral 
forms. 
 
In this chapter we covered: 
Addition of Vectors 
Multiplication of Vectors 
Vector Product 
Mixed Scalar Product 
Mixed Vector Product 
Cartesian-Polar-Cylindrical-Spherical coordinates 
Gradient of a scalar function 
Divergence of a vector...
Chapter 3 EM: Magnetic Fields
This is a calculus based electromagnetism course which goes into the details of dielectric and magnetic materials under electric and magnetic 
fields. The course presents boundary values problems and Maxwell's equations in their local and integral 
forms. 
 
In this chapter we covered: 
Axioms of Magnetic fields 
Ampere's Law 
Biot-Savart Law 
Magnetization and equivalent current densities 
Magnetic field Intensity and Permeability 
Behaviour of Magnetic Materials 
Boundary conditions of magneti...
- Book & Paket-Deal
- Class notes
- • 39 pages •
This is a calculus based electromagnetism course which goes into the details of dielectric and magnetic materials under electric and magnetic 
fields. The course presents boundary values problems and Maxwell's equations in their local and integral 
forms. 
 
In this chapter we covered: 
Axioms of Magnetic fields 
Ampere's Law 
Biot-Savart Law 
Magnetization and equivalent current densities 
Magnetic field Intensity and Permeability 
Behaviour of Magnetic Materials 
Boundary conditions of magneti...