Derivation of maxwells equation

  • Thread starter quantumfireball
  • Start date
  • Tags
    Derivation
In summary, the conversation discusses the lack of mention of "the Physical lines of force" by J.C Maxwell in undergraduate electromagnetism courses and the importance of studying Maxwell's classical paper. Despite potential flaws in the underlying physics, it is believed that studying the paper can provide a better understanding of the subject. A link to the paper is provided for further reading.
  • #1
quantumfireball
91
0
When i did my undergraduate course in electromagnetism i never heard of or never told by
the professors of "the Physical lines of force" the classical paper by J.C Maxwell.
I want to know why is that students are not taught(or encouraged) to go through this classic,why is that maxwell equations are just taught to be emperical when a lot of underlying theoretical work was done by Maxwell,to arrive at the eqns.
No doubt the underlying physics is wrong(aether,displacement of aether etc...)
but it still hopefully should result in an intuitive grasp of the subject.
Im planning to go through the paper thoroughly even after 2 and half years of taking the formal course
 
Physics news on Phys.org
  • #4
Ah, that's a web page, not a pdf ... an attempt to download it as a pdf didn't work so well;)
 
  • #5
Peeter said:
Ah, that's a web page, not a pdf ... an attempt to download it as a pdf didn't work so well;)
It is in fact a PDF file, but wiki redirects you to a web page. You need to click on the link on that page to download the PDF.
 

1. What are Maxwell's equations?

Maxwell's equations are a set of four fundamental equations that describe the behavior of electric and magnetic fields in space and time. They were developed by physicist James Clerk Maxwell in the 19th century and are considered to be one of the cornerstones of classical electromagnetism.

2. How were Maxwell's equations derived?

Maxwell's equations were derived through a combination of experimental observations and mathematical equations. Maxwell studied the works of previous scientists, such as Michael Faraday and André-Marie Ampère, and combined their theories to create a unified set of equations that accurately describe the behavior of electric and magnetic fields.

3. Why are Maxwell's equations important?

Maxwell's equations are important because they provide a comprehensive understanding of the relationship between electric and magnetic fields. They have also been used to make significant advancements in technology, such as the development of radio communication and electromagnetic waves.

4. What are the four equations in Maxwell's equations?

The four equations in Maxwell's equations are Gauss's law, Gauss's law for magnetism, Faraday's law of induction, and Ampère's law with Maxwell's correction. These equations describe the relationship between electric and magnetic fields, and how they interact with charges and currents.

5. How are Maxwell's equations used in real-world applications?

Maxwell's equations have been used in a wide range of real-world applications, including the design of electrical and electronic circuits, radio and satellite communication, radar and sonar systems, and medical imaging technologies. They are also used in the study of electromagnetic waves, which has led to the discovery of new forms of radiation such as X-rays and gamma rays.

Similar threads

Replies
7
Views
242
  • Electromagnetism
Replies
2
Views
21K
Replies
1
Views
2K
  • Electromagnetism
Replies
7
Views
3K
Replies
2
Views
606
Replies
7
Views
1K
Replies
8
Views
2K
Replies
3
Views
1K
Replies
3
Views
1K
Replies
3
Views
2K
Back
Top