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Diamagnetism and Electron configuration

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

Difference between Diamagnetism and Electron configuration

Diamagnetism vs. Electron configuration

Diamagnetic materials are repelled by a magnetic field; an applied magnetic field creates an induced magnetic field in them in the opposite direction, causing a repulsive force. In atomic physics and quantum chemistry, the electron configuration is the distribution of electrons of an atom or molecule (or other physical structure) in atomic or molecular orbitals.

Similarities between Diamagnetism and Electron configuration

Diamagnetism and Electron configuration have 11 things in common (in Unionpedia): Copper, Core electron, Electron, Gold, Magnetic field, Magnetic moment, Mercury (element), Paramagnetism, Pauli exclusion principle, Quantum mechanics, Silver.

Copper

Copper is a chemical element with symbol Cu (from cuprum) and atomic number 29.

Copper and Diamagnetism · Copper and Electron configuration · See more »

Core electron

Core electrons are the electrons in an atom that are not valence electrons and therefore do not participate in bonding.

Core electron and Diamagnetism · Core electron and Electron configuration · See more »

Electron

The electron is a subatomic particle, symbol or, whose electric charge is negative one elementary charge.

Diamagnetism and Electron · Electron and Electron configuration · See more »

Gold

Gold is a chemical element with symbol Au (from aurum) and atomic number 79, making it one of the higher atomic number elements that occur naturally.

Diamagnetism and Gold · Electron configuration and Gold · See more »

Magnetic field

A magnetic field is a vector field that describes the magnetic influence of electrical currents and magnetized materials.

Diamagnetism and Magnetic field · Electron configuration and Magnetic field · See more »

Magnetic moment

The magnetic moment is a quantity that represents the magnetic strength and orientation of a magnet or other object that produces a magnetic field.

Diamagnetism and Magnetic moment · Electron configuration and Magnetic moment · See more »

Mercury (element)

Mercury is a chemical element with symbol Hg and atomic number 80.

Diamagnetism and Mercury (element) · Electron configuration and Mercury (element) · See more »

Paramagnetism

Paramagnetism is a form of magnetism whereby certain materials are weakly attracted by an externally applied magnetic field, and form internal, induced magnetic fields in the direction of the applied magnetic field.

Diamagnetism and Paramagnetism · Electron configuration and Paramagnetism · See more »

Pauli exclusion principle

The Pauli exclusion principle is the quantum mechanical principle which states that two or more identical fermions (particles with half-integer spin) cannot occupy the same quantum state within a quantum system simultaneously.

Diamagnetism and Pauli exclusion principle · Electron configuration and Pauli exclusion principle · See more »

Quantum mechanics

Quantum mechanics (QM; also known as quantum physics, quantum theory, the wave mechanical model, or matrix mechanics), including quantum field theory, is a fundamental theory in physics which describes nature at the smallest scales of energy levels of atoms and subatomic particles.

Diamagnetism and Quantum mechanics · Electron configuration and Quantum mechanics · See more »

Silver

Silver is a chemical element with symbol Ag (from the Latin argentum, derived from the Proto-Indo-European ''h₂erǵ'': "shiny" or "white") and atomic number 47.

Diamagnetism and Silver · Electron configuration and Silver · See more »

The list above answers the following questions

Diamagnetism and Electron configuration Comparison

Diamagnetism has 64 relations, while Electron configuration has 187. As they have in common 11, the Jaccard index is 4.38% = 11 / (64 + 187).

References

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

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