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Field (physics) and Symmetry (physics)

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

Difference between Field (physics) and Symmetry (physics)

Field (physics) vs. Symmetry (physics)

In physics, a field is a physical quantity, represented by a number or tensor, that has a value for each point in space and time. In physics, a symmetry of a physical system is a physical or mathematical feature of the system (observed or intrinsic) that is preserved or remains unchanged under some transformation.

Similarities between Field (physics) and Symmetry (physics)

Field (physics) and Symmetry (physics) have 25 things in common (in Unionpedia): Boson, Covariance and contravariance of vectors, Electric charge, Electric field, Electromagnetism, Electroweak interaction, Eugene Wigner, Flavour (particle physics), Fundamental interaction, General relativity, Isospin, Mathematical formulation of the Standard Model, Particle physics, Quark, Real number, Scalar field, Spacetime, Special relativity, Spinor field, Standard Model, Strong interaction, Temperature, Vector field, Weak isospin, Yang–Mills theory.

Boson

In quantum mechanics, a boson is a particle that follows Bose–Einstein statistics.

Boson and Field (physics) · Boson and Symmetry (physics) · See more »

Covariance and contravariance of vectors

In multilinear algebra and tensor analysis, covariance and contravariance describe how the quantitative description of certain geometric or physical entities changes with a change of basis.

Covariance and contravariance of vectors and Field (physics) · Covariance and contravariance of vectors and Symmetry (physics) · 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.

Electric charge and Field (physics) · Electric charge and Symmetry (physics) · See more »

Electric field

An electric field is a vector field surrounding an electric charge that exerts force on other charges, attracting or repelling them.

Electric field and Field (physics) · Electric field and Symmetry (physics) · See more »

Electromagnetism

Electromagnetism is a branch of physics involving the study of the electromagnetic force, a type of physical interaction that occurs between electrically charged particles.

Electromagnetism and Field (physics) · Electromagnetism and Symmetry (physics) · See more »

Electroweak interaction

In particle physics, the electroweak interaction is the unified description of two of the four known fundamental interactions of nature: electromagnetism and the weak interaction.

Electroweak interaction and Field (physics) · Electroweak interaction and Symmetry (physics) · See more »

Eugene Wigner

Eugene Paul "E.

Eugene Wigner and Field (physics) · Eugene Wigner and Symmetry (physics) · See more »

Flavour (particle physics)

In particle physics, flavour or flavor refers to the species of an elementary particle.

Field (physics) and Flavour (particle physics) · Flavour (particle physics) and Symmetry (physics) · See more »

Fundamental interaction

In physics, the fundamental interactions, also known as fundamental forces, are the interactions that do not appear to be reducible to more basic interactions.

Field (physics) and Fundamental interaction · Fundamental interaction and Symmetry (physics) · See more »

General relativity

General relativity (GR, also known as the general theory of relativity or GTR) is the geometric theory of gravitation published by Albert Einstein in 1915 and the current description of gravitation in modern physics.

Field (physics) and General relativity · General relativity and Symmetry (physics) · See more »

Isospin

In nuclear physics and particle physics, isospin is a quantum number related to the strong interaction.

Field (physics) and Isospin · Isospin and Symmetry (physics) · See more »

Mathematical formulation of the Standard Model

This article describes the mathematics of the Standard Model of particle physics, a gauge quantum field theory containing the internal symmetries of the unitary product group.

Field (physics) and Mathematical formulation of the Standard Model · Mathematical formulation of the Standard Model and Symmetry (physics) · See more »

Particle physics

Particle physics (also high energy physics) is the branch of physics that studies the nature of the particles that constitute matter and radiation.

Field (physics) and Particle physics · Particle physics and Symmetry (physics) · See more »

Quark

A quark is a type of elementary particle and a fundamental constituent of matter.

Field (physics) and Quark · Quark and Symmetry (physics) · See more »

Real number

In mathematics, a real number is a value of a continuous quantity that can represent a distance along a line.

Field (physics) and Real number · Real number and Symmetry (physics) · See more »

Scalar field

In mathematics and physics, a scalar field associates a scalar value to every point in a space – possibly physical space.

Field (physics) and Scalar field · Scalar field and Symmetry (physics) · See more »

Spacetime

In physics, spacetime is any mathematical model that fuses the three dimensions of space and the one dimension of time into a single four-dimensional continuum.

Field (physics) and Spacetime · Spacetime and Symmetry (physics) · See more »

Special relativity

In physics, special relativity (SR, also known as the special theory of relativity or STR) is the generally accepted and experimentally well-confirmed physical theory regarding the relationship between space and time.

Field (physics) and Special relativity · Special relativity and Symmetry (physics) · See more »

Spinor field

In differential geometry, given a spin structure on an n-dimensional orientable Riemannian manifold (M, g), a section of the spinor bundle S is called a spinor field.

Field (physics) and Spinor field · Spinor field and Symmetry (physics) · See more »

Standard Model

The Standard Model of particle physics is the theory describing three of the four known fundamental forces (the electromagnetic, weak, and strong interactions, and not including the gravitational force) in the universe, as well as classifying all known elementary particles.

Field (physics) and Standard Model · Standard Model and Symmetry (physics) · See more »

Strong interaction

In particle physics, the strong interaction is the mechanism responsible for the strong nuclear force (also called the strong force or nuclear strong force), and is one of the four known fundamental interactions, with the others being electromagnetism, the weak interaction, and gravitation.

Field (physics) and Strong interaction · Strong interaction and Symmetry (physics) · See more »

Temperature

Temperature is a physical quantity expressing hot and cold.

Field (physics) and Temperature · Symmetry (physics) and Temperature · See more »

Vector field

In vector calculus and physics, a vector field is an assignment of a vector to each point in a subset of space.

Field (physics) and Vector field · Symmetry (physics) and Vector field · See more »

Weak isospin

In particle physics, weak isospin is a quantum number relating to the weak interaction, and parallels the idea of isospin under the strong interaction.

Field (physics) and Weak isospin · Symmetry (physics) and Weak isospin · See more »

Yang–Mills theory

Yang–Mills theory is a gauge theory based on the SU(''N'') group, or more generally any compact, reductive Lie algebra.

Field (physics) and Yang–Mills theory · Symmetry (physics) and Yang–Mills theory · See more »

The list above answers the following questions

Field (physics) and Symmetry (physics) Comparison

Field (physics) has 173 relations, while Symmetry (physics) has 130. As they have in common 25, the Jaccard index is 8.25% = 25 / (173 + 130).

References

This article shows the relationship between Field (physics) and Symmetry (physics). To access each article from which the information was extracted, please visit:

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