"Electromagnetics"의 두 판 사이의 차이

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four-vector field
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==basic history==
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* Leyden jar : capacitor
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* Volta vs Galvani
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* Humphrey Davy
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* Oesrsted
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* Faraday
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* Maxwell
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* Lodge
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* Marconi
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* Tesla : alternating current
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==gauge invariance==
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*  the electromagnetic potential is a connection on a U(1)-bundle on spacetime whose curvature is the electromagnetic field
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*  the electromagnetism is a gauge field theory with structure group U(1)
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==Lorentz force==
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* almost all forces in mechanics are conservative forces, those that are functions only of positions, and certainly not functions of velocities
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* Lorentz force is a rare example of velocity dependent force
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==polarization of light==
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*  has two possibilites
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** what does this mean?
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==Lagrangian formulation==
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* [[Lagrangian formulation of electromagetism]]
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==Hamiltonian formulation==
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*  total energy of a charge particle in an electromagnetic field
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:<math>E=\frac{1}{2m}(p_j-eA_{j})(p_j-eA_j)+q\phi</math>
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*  replace the momentum with the canonical momentum
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**  similar to covariant derivative
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==force on a particle==
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* force on a particle is same as
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:<math>e\mathbf{E}+e\mathbf{v}\times \mathbf{B}</math>
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==메모==
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* [http://www.math.toronto.edu/%7Ecolliand/426_03/Papers03/C_Quigley.pdf http://www.math.toronto.edu/~colliand/426_03/Papers03/C_Quigley.pdf]
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*  Feynman's proof of Maxwell equations and Yang's unification of electromagnetic and gravitational Aharonov–Bohm effects
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==related items==
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* [[Gauge theory]]
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* [[QED]]
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==encyclopedia==
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* http://ko.wikipedia.org/wiki/
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* http://en.wikipedia.org/wiki/Classical_electromagnetism
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* [http://en.wikipedia.org/wiki/Maxwell%27s_equations http://en.wikipedia.org/wiki/Maxwell's_equations]
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* [http://en.wikipedia.org/wiki/Maxwell%27s_equations#Differential_geometric_formulations http://en.wikipedia.org/wiki/Maxwell's_equations#Differential_geometric_formulations]
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* http://en.wikipedia.org/wiki/Covariant_formulation_of_classical_electromagnetism
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* http://en.wikipedia.org/wiki/electrical_current
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* http://en.wikipedia.org/wiki/Four-current
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==books==
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* ELECTROMAGNETIC THEORY AND COMPUTATION
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* [[The Early History of Radio from Faraday to Marconi]]
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[[분류:math and physics]]
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[[분류:gauge theory]]
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[[분류:migrate]]
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==메타데이터==
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===위키데이터===
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* ID :  [https://www.wikidata.org/wiki/Q377930 Q377930]
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===Spacy 패턴 목록===
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* [{'LOWER': 'classical'}, {'LEMMA': 'electromagnetism'}]
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* [{'LEMMA': 'electrodynamic'}]

2021년 2월 17일 (수) 03:16 기준 최신판

basic history

  • Leyden jar : capacitor
  • Volta vs Galvani
  • Humphrey Davy
  • Oesrsted
  • Faraday
  • Maxwell
  • Lodge
  • Marconi
  • Tesla : alternating current


gauge invariance

  • the electromagnetic potential is a connection on a U(1)-bundle on spacetime whose curvature is the electromagnetic field
  • the electromagnetism is a gauge field theory with structure group U(1)


Lorentz force

  • almost all forces in mechanics are conservative forces, those that are functions only of positions, and certainly not functions of velocities
  • Lorentz force is a rare example of velocity dependent force



polarization of light

  • has two possibilites
    • what does this mean?


Lagrangian formulation


Hamiltonian formulation

  • total energy of a charge particle in an electromagnetic field

\[E=\frac{1}{2m}(p_j-eA_{j})(p_j-eA_j)+q\phi\]

  • replace the momentum with the canonical momentum
    • similar to covariant derivative


force on a particle

  • force on a particle is same as

\[e\mathbf{E}+e\mathbf{v}\times \mathbf{B}\]


메모


related items


encyclopedia



books

메타데이터

위키데이터

Spacy 패턴 목록

  • [{'LOWER': 'classical'}, {'LEMMA': 'electromagnetism'}]
  • [{'LEMMA': 'electrodynamic'}]