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  1. Linear operator: linear transformation, linear map A mapping between two vector spaces (cf. Vector space) that is compatible with their linear structures. (Mathematics) [100%] 2023-10-23 [Linear and multilinear algebra] [ matrix theory]...
  2. Operator theory: In mathematics, operator theory is the study of linear operators on function spaces, beginning with differential operators and integral operators. The operators may be presented abstractly by their characteristics, such as bounded linear operators or closed operators, and consideration may ... (Mathematical field of study) [90%] 2024-08-26 [Operator theory]
  3. Operator theory: In mathematics, operator theory is the study of linear operators on function spaces, beginning with differential operators and integral operators. The operators may be presented abstractly by their characteristics, such as bounded linear operators or closed operators, and consideration may ... (Mathematical field of study) [90%] 2025-06-23 [Operator theory]
  4. Linear differential operator: in the narrow sense An operator $ A $ that acts on $ k $-valued functions ( $ k = \mathbf R $ or $ k = \mathbf C $) defined on an open set $ U \subset \mathbf R ^ {n} $, according to the formula $$ \tag{1 } A u = v \equiv ... (Mathematics) [81%] 2023-10-17
  5. Positive linear operator: In mathematics, more specifically in functional analysis, a positive linear operator from an preordered vector space \displaystyle{ (X, \leq) }[/math] into a preordered vector space \displaystyle{ (Y, \leq) }[/math]is a linear operator \displaystyle{ f }[/math] on \displaystyle{ X }[/math ... [81%] 2024-01-10 [Functional analysis] [Order theory]...
  6. Non-linear operator: A mapping $ A $ of a space (as a rule, a vector space) $ X $ into a vector space $ Y $ over a common field of scalars that does not have the property of linearity, that is, such that generally speaking $$ A ( \alpha ... (Mathematics) [81%] 2024-01-10
  7. Linear Schrödinger Operator: A linear Schrödinger operator is an exponential operator used in the theory of Schrödinger equation in expressing solution of Schrödinger equation in an integral form. It is essentially defined by \displaystyle{ U(t) =e^{i tD } }[/math], where \displaystyle{ D ... (Physics) [81%] 2024-01-10 [Schrödinger equation]
  8. Integral representations of linear operators: Let $ ( X, \Lambda, \mu ) $ and $ ( Y, \Sigma, \nu ) $ be $ \sigma $-finite measure spaces (cf. Measure space) and let $ L _ {0} ( X, \mu ) $ and $ L _ {0} ( Y, \nu ) $ be the spaces of the complex-valued $ \mu $-measurable functions on ... (Mathematics) [81%] 2024-01-10
  9. Linear transport theory: In mathematical physics Linear transport theory is the study of equations describing the migration of particles or energy within a host medium when such migration involves random absorption, emission and scattering events. Subject to certain simplifying assumptions, this is a ... [79%] 2024-01-03 [Mathematical physics]
  10. General linear model: According to Minitab Incorporated. [77%] 2023-02-23 [Statistics]
  11. General linear group: The general linear group of degree $n$ is the group of all $(n\times n)$ invertible matrices over an associative ring (cf. Associative rings and algebras) $K$ with a unit; the usual symbols are $\def\GL{\textrm{GL}} \GL_n(K ... (Mathematics) [77%] 2024-01-10
  12. General linear methods: General linear methods (GLMs) for the numerical solution of ordinary differential equations (ODEs) \[\tag{1} \left\{ \begin{array}{ll} y'(x)=f(y(x)), & x\in [x_0,X], \\ y(x_0)=y_0, & \end{array} \right. \] are defined by \[\tag{2} \left ... [77%] 2021-12-21 [Numerical Analysis] [Dynamical Systems]...
  13. General linear group: In mathematics, the general linear group of degree n is the set of n×n invertible matrices, together with the operation of ordinary matrix multiplication. This forms a group, because the product of two invertible matrices is again invertible, and ... (Group of n×n invertible matrices) [77%] 2024-01-10 [Abstract algebra] [Linear algebra]...
  14. General linear model: The general linear model or general multivariate regression model is a compact way of simultaneously writing several multiple linear regression models. In that sense it is not a separate statistical linear model. (Statistical linear model) [77%] 2024-04-16 [Regression models]
  15. General linear model: The general linear model or general multivariate regression model is a compact way of simultaneously writing several multiple linear regression models. In that sense it is not a separate statistical linear model. (Statistical linear model) [77%] 2024-05-15 [Regression models]
  16. Kernel of a linear operator: The linear subspace of the domain of definition of a linear operator that consists of all vectors that are mapped to zero. The kernel of a continuous linear operator that is defined on a topological vector space is a closed ... (Mathematics) [77%] 2024-01-10
  17. General theory of evolution: The general theory of evolution says that, "all the living forms in the world have arisen from a single source which itself came from an inorganic form.". [75%] 2023-02-26 [Evolution]
  18. General theory of relativity: See Counterexamples to Relativity. See Theory of relativity for a more "general" description of relativity. [75%] 2023-02-26 [Physics]
  19. General theory of relativity: The general theory of relativity explains the phenomena of gravity as a an artifact of the geometry of space and time, which is not simply a Euclidean geometry but a Riemannian geometry that varies from location to location as it ... [75%] 2023-06-14
  20. Linear (Hong Kong): Linear blocks (Chinese: 相連長型大廈) are a design of public housing blocks. It is divided into Linear 1, 2 (never built), 3, Linear L, and L2. (Hong Kong) [75%] 2023-10-24 [Urban planning]

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