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Linus Pauling and Valence bond theory

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

Difference between Linus Pauling and Valence bond theory

Linus Pauling vs. Valence bond theory

Linus Carl Pauling (February 28, 1901 – August 19, 1994) was an American chemist, biochemist, peace activist, author, educator, and husband of American human rights activist Ava Helen Pauling. In chemistry, valence bond (VB) theory is one of two basic theories, along with molecular orbital (MO) theory, that were developed to use the methods of quantum mechanics to explain chemical bonding.

Similarities between Linus Pauling and Valence bond theory

Linus Pauling and Valence bond theory have 12 things in common (in Unionpedia): Atomic orbital, August Kekulé, Chemical bond, Covalent bond, Fritz London, Gilbert N. Lewis, Hydrogen, Molecular orbital theory, Orbital hybridisation, Resonance (chemistry), Walter Heitler, Wave function.

Atomic orbital

In quantum mechanics, an atomic orbital is a mathematical function that describes the wave-like behavior of either one electron or a pair of electrons in an atom.

Atomic orbital and Linus Pauling · Atomic orbital and Valence bond theory · See more »

August Kekulé

Friedrich August Kekulé, later Friedrich August Kekule von Stradonitz (7 September 1829 – 13 July 1896), was a German organic chemist.

August Kekulé and Linus Pauling · August Kekulé and Valence bond theory · See more »

Chemical bond

A chemical bond is a lasting attraction between atoms, ions or molecules that enables the formation of chemical compounds.

Chemical bond and Linus Pauling · Chemical bond and Valence bond theory · See more »

Covalent bond

A covalent bond, also called a molecular bond, is a chemical bond that involves the sharing of electron pairs between atoms.

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Fritz London

Fritz Wolfgang London (March 7, 1900 – March 30, 1954) was a Jewish-German physicist and professor at Duke University.

Fritz London and Linus Pauling · Fritz London and Valence bond theory · See more »

Gilbert N. Lewis

Gilbert Newton Lewis (October 25 (or 23), 1875 – March 23, 1946) was an American physical chemist known for the discovery of the covalent bond and his concept of electron pairs; his Lewis dot structures and other contributions to valence bond theory have shaped modern theories of chemical bonding.

Gilbert N. Lewis and Linus Pauling · Gilbert N. Lewis and Valence bond theory · See more »

Hydrogen

Hydrogen is a chemical element with symbol H and atomic number 1.

Hydrogen and Linus Pauling · Hydrogen and Valence bond theory · See more »

Molecular orbital theory

In chemistry, molecular orbital (MO) theory is a method for determining molecular structure in which electrons are not assigned to individual bonds between atoms, but are treated as moving under the influence of the nuclei in the whole molecule.

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Orbital hybridisation

In chemistry, orbital hybridisation (or hybridization) is the concept of mixing atomic orbitals into new hybrid orbitals (with different energies, shapes, etc., than the component atomic orbitals) suitable for the pairing of electrons to form chemical bonds in valence bond theory.

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Resonance (chemistry)

In chemistry, resonance or mesomerism is a way of describing delocalized electrons within certain molecules or polyatomic ions where the bonding cannot be expressed by one single Lewis structure.

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Walter Heitler

Walter Heinrich Heitler (2 January 1904 – 15 November 1981) was a German physicist who made contributions to quantum electrodynamics and quantum field theory.

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Wave function

A wave function in quantum physics is a mathematical description of the quantum state of an isolated quantum system.

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The list above answers the following questions

Linus Pauling and Valence bond theory Comparison

Linus Pauling has 320 relations, while Valence bond theory has 36. As they have in common 12, the Jaccard index is 3.37% = 12 / (320 + 36).

References

This article shows the relationship between Linus Pauling and Valence bond theory. To access each article from which the information was extracted, please visit:

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