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Classical electron radius and Electron

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Classical electron radius and Electron

Classical electron radius vs. Electron

The classical electron radius is a combination of fundamental physical quantities that define a length scale for problems involving electrons interacting with electromagnetic radiation. The electron is a subatomic particle, symbol or, whose electric charge is negative one elementary charge.

Similarities between Classical electron radius and Electron

Classical electron radius and Electron have 12 things in common (in Unionpedia): Cambridge University Press, Compton wavelength, Electric charge, Elementary charge, Fine-structure constant, Hendrik Lorentz, National Institute of Standards and Technology, Planck constant, Point particle, Quantum electrodynamics, Speed of light, Thomson scattering.

Cambridge University Press

Cambridge University Press (CUP) is the publishing business of the University of Cambridge.

Cambridge University Press and Classical electron radius · Cambridge University Press and Electron · See more »

Compton wavelength

The Compton wavelength is a quantum mechanical property of a particle.

Classical electron radius and Compton wavelength · Compton wavelength and Electron · See more »

Electric charge

Electric charge is the physical property of matter that causes it to experience a force when placed in an electromagnetic field.

Classical electron radius and Electric charge · Electric charge and Electron · See more »

Elementary charge

The elementary charge, usually denoted as or sometimes, is the electric charge carried by a single proton, or equivalently, the magnitude of the electric charge carried by a single electron, which has charge.

Classical electron radius and Elementary charge · Electron and Elementary charge · See more »

Fine-structure constant

In physics, the fine-structure constant, also known as Sommerfeld's constant, commonly denoted (the Greek letter ''alpha''), is a fundamental physical constant characterizing the strength of the electromagnetic interaction between elementary charged particles.

Classical electron radius and Fine-structure constant · Electron and Fine-structure constant · See more »

Hendrik Lorentz

Hendrik Antoon Lorentz (18 July 1853 – 4 February 1928) was a Dutch physicist who shared the 1902 Nobel Prize in Physics with Pieter Zeeman for the discovery and theoretical explanation of the Zeeman effect.

Classical electron radius and Hendrik Lorentz · Electron and Hendrik Lorentz · See more »

National Institute of Standards and Technology

The National Institute of Standards and Technology (NIST) is one of the oldest physical science laboratories in the United States.

Classical electron radius and National Institute of Standards and Technology · Electron and National Institute of Standards and Technology · See more »

Planck constant

The Planck constant (denoted, also called Planck's constant) is a physical constant that is the quantum of action, central in quantum mechanics.

Classical electron radius and Planck constant · Electron and Planck constant · See more »

Point particle

A point particle (ideal particle or point-like particle, often spelled pointlike particle) is an idealization of particles heavily used in physics.

Classical electron radius and Point particle · Electron and Point particle · See more »

Quantum electrodynamics

In particle physics, quantum electrodynamics (QED) is the relativistic quantum field theory of electrodynamics.

Classical electron radius and Quantum electrodynamics · Electron and Quantum electrodynamics · See more »

Speed of light

The speed of light in vacuum, commonly denoted, is a universal physical constant important in many areas of physics.

Classical electron radius and Speed of light · Electron and Speed of light · See more »

Thomson scattering

Thomson scattering is the elastic scattering of electromagnetic radiation by a free charged particle, as described by classical electromagnetism.

Classical electron radius and Thomson scattering · Electron and Thomson scattering · See more »

The list above answers the following questions

Classical electron radius and Electron Comparison

Classical electron radius has 23 relations, while Electron has 439. As they have in common 12, the Jaccard index is 2.60% = 12 / (23 + 439).

References

This article shows the relationship between Classical electron radius and Electron. To access each article from which the information was extracted, please visit:

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