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Self-Adjoint: Mathematics, Star- Algebra, Involution, Functional Analysis, Linear Operator, Hilbert Space, Adjoint Operator, Self- Adjoint Operator -

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2026-03-15
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High Quality Content by WIKIPEDIA articles! High Quality Content by WIKIPEDIA articles! In mathematics, an element x of a star-algebra is self-adjoint if x * = x. A collection C of elements of a star-algebra is self-adjoint if it is closed under the involution operation. For example, if x * = y then since y * = x * * = x in a star-algebra, the set {x,y} is a self-adjoint set even though x and y need not be ... Pilns apraksts

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High Quality Content by WIKIPEDIA articles! High Quality Content by WIKIPEDIA articles! In mathematics, an element x of a star-algebra is self-adjoint if x * = x. A collection C of elements of a star-algebra is self-adjoint if it is closed under the involution operation. For example, if x * = y then since y * = x * * = x in a star-algebra, the set {x,y} is a self-adjoint set even though x and y need not be self-adjoint elements. In functional analysis, a linear operator A on a Hilbert space is called self-adjoint if it is equal to its own adjoint A*. See self-adjoint operator for a detailed discussion. If the Hilbert space is finite-dimensional and an orthonormal basis has been chosen, then the operator A is self-adjoint if and only if the matrix describing A with respect to this basis is Hermitian, i.e. if it is equal to its own conjugate transpose. Hermitian matrices are also called self-adjoint.

Vairāk informācijas

Izdevējs OmniScriptum
Izlaides gads 2026
Vāka tips Mīkstais vāks
EAN 9786131157080
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146,96 € 244,94 €