Search results for "Bounded"

showing 10 items of 658 documents

On the solutions to 1-Laplacian equation with L1 data

2009

AbstractIn the present paper we study the behaviour, as p goes to 1, of the renormalized solutions to the problems(0.1){−div(|∇up|p−2∇up)=finΩ,up=0on∂Ω, where p>1, Ω is a bounded open set of RN (N⩾2) with Lipschitz boundary and f belongs to L1(Ω). We prove that these renormalized solutions pointwise converge, up to “subsequences,” to a function u. With a suitable definition of solution we also prove that u is a solution to a “limit problem.” Moreover we analyze the situation occurring when more regular data f are considered.

Discrete mathematicsPointwise1-Laplace operatorRenormalized solutionsOpen setBoundary (topology)Function (mathematics)Nonlinear elliptic equationsLipschitz continuityRenormalized solutionBounded functionSummable dataLimit (mathematics)L1-data1Laplce operatorLaplace operatorAnalysisMathematicsJournal of Functional Analysis
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Polynomial codimension growth and the Specht problem

2017

Abstract We construct a continuous family of algebras over a field of characteristic zero with slow codimension growth bounded by a polynomial of degree 4. This is achieved by building, for any real number α ∈ ( 0 , 1 ) a commutative nonassociative algebra A α whose codimension sequence c n ( A α ) , n = 1 , 2 , …  , is polynomially bounded and lim ⁡ log n ⁡ c n ( A α ) = 3 + α . As an application we are able to construct a new example of a variety with an infinite basis of identities.

Discrete mathematicsPolynomialAlgebra and Number TheoryDegree (graph theory)Polynomial identity Codimension Growth010102 general mathematicsZero (complex analysis)Field (mathematics)Basis (universal algebra)Codimension01 natural sciences010101 applied mathematicsSettore MAT/02 - AlgebraBounded function0101 mathematicsVariety (universal algebra)Mathematics
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Polynomial identities on superalgebras: Classifying linear growth

2006

Abstract We classify, up to PI-equivalence, the superalgebras over a field of characteristic zero whose sequence of codimensions is linearly bounded. As a consequence we determine the linear functions describing the graded codimensions of a superalgebra.

Discrete mathematicsPolynomialPure mathematicsSequenceAlgebra and Number TheoryMathematics::Commutative AlgebraMathematics::Rings and AlgebrasZero (complex analysis)Field (mathematics)graded polynomial identity T_2-ideal graded codimensionsSuperalgebraSettore MAT/02 - AlgebraMathematics::Quantum AlgebraBounded functionMathematics::Representation TheoryLinear growthMathematicsJournal of Pure and Applied Algebra
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On algebras of polynomial codimension growth

2016

Let A be an associative algebra over a field F of characteristic zero and let $$c_n(A), n=1, 2, \ldots $$ , be the sequence of codimensions of A. It is well-known that $$c_n(A), n=1, 2, \ldots $$ , cannot have intermediate growth, i.e., either is polynomially bounded or grows exponentially. Here we present some results on algebras whose sequence of codimensions is polynomially bounded.

Discrete mathematicsPolynomialSequenceMathematics::Commutative AlgebraGeneral Mathematics010102 general mathematicsZero (complex analysis)Field (mathematics)Codimension01 natural sciencesSettore MAT/02 - AlgebraComputational Theory and MathematicsBounded function0103 physical sciencesAssociative algebraPolynomial identities Codimensions Codimension growth010307 mathematical physics0101 mathematicsStatistics Probability and UncertaintyMathematicsSão Paulo Journal of Mathematical Sciences
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Bounded elements of C*-inductive locally convex spaces

2013

The notion of bounded element of C*-inductive locally convex spaces (or C*-inductive partial *-algebras) is introduced and discussed in two ways: The first one takes into account the inductive structure provided by certain families of C*-algebras; the second one is linked to the natural order of these spaces. A particular attention is devoted to the relevant instance provided by the space of continuous linear maps acting in a rigged Hilbert space.

Discrete mathematicsPositive elementApplied Mathematics010102 general mathematicsMathematics - Operator AlgebrasRigged Hilbert spaceMathematics - Rings and AlgebrasLF-spaceSpace (mathematics)01 natural sciencesOperator spaceBounded operatorBounded elements Inductive limit of C*-algebras Partial *-algebras010101 applied mathematics47L60 47L40Rings and Algebras (math.RA)Bounded functionLocally convex topological vector spaceFOS: Mathematics0101 mathematicsOperator Algebras (math.OA)Mathematics
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Property (R) under perturbations

2012

Property (R) holds for a bounded linear operator $${T \in L(X)}$$ , defined on a complex infinite dimensional Banach space X, if the isolated points of the spectrum of T which are eigenvalues of finite multiplicity are exactly those points λ of the approximate point spectrum for which λI − T is upper semi-Browder. In this paper we consider the permanence of this property under quasi nilpotent, Riesz, or algebraic perturbations commuting with T.

Discrete mathematicsProperty (R)Mathematics::Functional AnalysisPure mathematicsGeneral MathematicsWeyl's theoremSpectrum (functional analysis)Banach spaceMultiplicity (mathematics)Bounded operatorNilpotentSettore MAT/05 - Analisi MatematicaPoint (geometry)Algebraic numberEigenvalues and eigenvectorsMathematics
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Property (R) for Bounded Linear Operators

2011

We introduce the spectral property (R), for bounded linear operators defined on a Banach space, which is related to Weyl type theorems. This property is also studied in the framework of polaroid, or left polaroid, operators.

Discrete mathematicsProperty (philosophy)Settore MAT/05 - Analisi MatematicaApproximation propertyGeneral MathematicsBounded functionLinear operatorsBanach spaceProperty (R) polaroid operatorsOperator theoryType (model theory)Operator normMathematicsMediterranean Journal of Mathematics
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Einklassige Geschlechter totalpositiver quadratischer Formen in totalreellen algebraischen Zahlkörpern

1971

Abstract It is proved that totally positive quadratic forms with three or more variables and class number h = 1 exist only in a finite number of algebraic number fields. Each field allows only a finite number of such forms with bounded scale. To prove this, upper estimates for all local factors in Siegel's analytic formula are constructed by calculating explicitly numbers of solutions of quadratic congruences.

Discrete mathematicsPure mathematicsAlgebra and Number TheoryQuadratic equationBounded functionBinary quadratic formField (mathematics)Quadratic fieldAlgebraic numberCongruence relationFinite setMathematicsJournal of Number Theory
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Polynomial codimension growth of algebras with involutions and superinvolutions

2017

Abstract Let A be an associative algebra over a field F of characteristic zero endowed with a graded involution or a superinvolution ⁎ and let c n ⁎ ( A ) be its sequence of ⁎-codimensions. In [4] , [12] it was proved that if A is finite dimensional such sequence is polynomially bounded if and only if A generates a variety not containing a finite number of ⁎-algebras: the group algebra of Z 2 and a 4-dimensional subalgebra of the 4 × 4 upper triangular matrices with suitable graded involutions or superinvolutions. In this paper we focus our attention on such algebras since they are the only finite dimensional ⁎-algebras, up to T 2 ⁎ -equivalence, generating varieties of almost polynomial gr…

Discrete mathematicsPure mathematicsAlgebra and Number TheorySubvarietySuperinvolution010102 general mathematicsSubalgebraGraded involution; Growth; Polynomial identity; SuperinvolutionTriangular matrix010103 numerical & computational mathematicsGroup algebraCodimensionPolynomial identity Graded involution Superinvolution GrowthGrowthPolynomial identity01 natural sciencesGraded involutionSettore MAT/02 - AlgebraBounded functionAssociative algebra0101 mathematicsFinite setMathematics
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Non-self-adjoint resolutions of the identity and associated operators

2013

Closed operators in Hilbert space defined by a non-self-adjoint resolution of the identity $$\{X(\lambda )\}_{\lambda \in {\mathbb R}}$$ , whose adjoints constitute also a resolution of the identity, are studied. In particular, it is shown that a closed operator $$B$$ has a spectral representation analogous to the familiar one for self-adjoint operators if and only if $$B=\textit{TAT}^{-1}$$ where $$A$$ is self-adjoint and $$T$$ is a bounded inverse.

Discrete mathematicsPure mathematicsApplied MathematicsHilbert spaceInverseOperator theoryMathematics::Spectral TheoryNon-self-adjoint resolution of identityFunctional Analysis (math.FA)Mathematics - Functional AnalysisComputational Mathematicssymbols.namesakeIdentity (mathematics)Operator (computer programming)Computational Theory and MathematicsSettore MAT/05 - Analisi MatematicaBounded functionsymbolsFOS: MathematicsSimilarity of operatorsSelf-adjoint operatorMathematicsResolution (algebra)
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