Search results for "model [interaction]"

showing 10 items of 1495 documents

Qualification conditions for multivalued functions in Banach spaces with applications to nonsmooth vector optimization problems

1994

In this paper we introduce qualification conditions for multivalued functions in Banach spaces involving the A-approximate subdifferential, and we show that these conditions guarantee metric regularity of multivalued functions. The results are then applied for deriving Lagrange multipliers of Fritz—John type and Kuhn—Tucker type for infinite non-smooth vector optimization problems.

Mathematics::Functional AnalysisMathematical optimizationMultivalued functionGeneral MathematicsNumerical analysisMathematics::Optimization and ControlBanach spaceSubderivativeType (model theory)Physics::History of Physicssymbols.namesakeVector optimizationLagrange multiplierMetric (mathematics)symbolsApplied mathematicsSoftwareMathematicsMathematical Programming
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Noncommutative Davis type decompositions and applications

2018

We prove the noncommutative Davis decomposition for the column Hardy space $\H_p^c$ for all $0<p\leq 1$. A new feature of our Davis decomposition is a simultaneous control of $\H_1^c$ and $\H_q^c$ norms for any noncommutative martingale in $\H_1^c \cap \H_q^c$ when $q\geq 2$. As applications, we show that the Burkholder/Rosenthal inequality holds for bounded martingales in a noncommutative symmetric space associated with a function space $E$ that is either an interpolation of the couple $(L_p, L_2)$ for some $1<p<2$ or is an interpolation of the couple $(L_2, L_q)$ for some $2<q<\infty$. We also obtain the corresponding $\Phi$-moment Burkholder/Rosenthal inequality for Orlicz functions that…

Mathematics::Functional AnalysisMathematics::Operator AlgebrasFunction spaceGeneral Mathematics010102 general mathematicsType (model theory)Hardy space01 natural sciencesNoncommutative geometryCombinatorics010104 statistics & probabilitysymbols.namesakeSymmetric spaceBounded functionsymbols0101 mathematicsMartingale (probability theory)MathematicsJournal of the London Mathematical Society
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Weyl-Type Theorems on Banach Spaces Under Compact Perturbations

2018

In this paper, we study Browder-type and Weyl-type theorems for operators $$T+K$$ defined on a Banach space X, where K is (a non necessarily commuting) compact operator on X. In the last part, the theory is exemplified in the case of isometries, analytic Toeplitz operators, semi-shift operators, and weighted right shifts.

Mathematics::Functional AnalysisPure mathematicsGeneral Mathematics010102 general mathematicsBrowder-type theorems and Weyl-type theoremBanach spaceType (model theory)Compact operator01 natural sciencesToeplitz matrix010101 applied mathematicslocalized SVEPSettore MAT/05 - Analisi MatematicaMathematics (all)0101 mathematicsMathematics
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Fractional Hardy-Sobolev type inequalities for half spaces and John domains

2018

As our main result we prove a variant of the fractional Hardy-Sobolev-Maz'ya inequality for half spaces. This result contains a complete answer to a recent open question by Musina and Nazarov. In the proof we apply a new version of the fractional Hardy-Sobolev inequality that we establish also for more general unbounded John domains than half spaces.

Mathematics::Functional AnalysisPure mathematicsInequalityApplied MathematicsGeneral Mathematicsmedia_common.quotation_subjectta111Mathematics::Classical Analysis and ODEsMathematics::Analysis of PDEsMathematics::Spectral TheoryType (model theory)Sobolev spacefractional Hardy-Sobolev inequalityHardy-Sobolev-Maz'ya inequalityfunktionaalianalyysiepäyhtälötJohn domainsMathematicsmedia_commonProceedings of the American Mathematical Society
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New results concerning Chebyshev–Grüss-type inequalities via discrete oscillations

2014

The classical form of Gruss' inequality was first published by G. Gruss and gives an estimate of the difference between the integral of the product and the product of the integrals of two functions. In the subsequent years, many variants of this inequality appeared in the literature. The aim of this paper is to consider some new bivariate Chebyshev-Gruss-type inequalities via discrete oscillations and to apply them to different tensor products of linear (not necessarily) positive, well-known operators. We also compare the new inequalities with some older results. In the end we give a Chebyshev-Gruss-type inequality with discrete oscillations for more than two functions.

Mathematics::Functional AnalysisPure mathematicsInequalityApplied Mathematicsmedia_common.quotation_subjectMathematical analysisMathematics::Classical Analysis and ODEsBivariate analysisType (model theory)Chebyshev filterComputational MathematicsTensor productProduct (mathematics)MathematikMathematicsmedia_commonApplied Mathematics and Computation
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Some kind of Bishop-Phelps-Bollobás property

2016

In this paper we introduce two Bishop–Phelps–Bollobas type properties for bounded linear operators between two Banach spaces X and Y: property 1 and property 2. These properties are motivated by a Kim–Lee result which states, under our notation, that a Banach space X is uniformly convex if and only if the pair (X,K) satisfies property 2. Positive results of pairs of Banach spaces (X,Y) satisfying property 1 are given and concrete pairs of Banach spaces (X,Y) failing both properties are exhibited. A complete characterization of property 1 for the pairs (lp,lq) is also provided.

Mathematics::Functional AnalysisPure mathematicsProperty (philosophy)Approximation propertyGeneral Mathematics010102 general mathematicsRegular polygonBanach space010103 numerical & computational mathematicsType (model theory)Characterization (mathematics)01 natural sciencesCombinatoricsBounded function0101 mathematicsBishop–Phelps theoremMathematicsMathematische Nachrichten
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Browder-Type Theorems

2018

This chapter may be viewed as the part of the book in which the interaction between local spectral theory and Fredholm theory comes into focus. The greater part of the chapter addresses some classes of operators on Banach spaces that have a very special spectral structure. We have seen that the Weyl spectrum σw(T) is a subset of the Browder spectrum σb(T) and this inclusion may be proper. In this chapter we investigate the class of operators on complex infinite-dimensional Banach spaces for which the Weyl spectrum and the Browder spectrum coincide. These operators are said to satisfy Browder’s theorem. The operators which satisfy Browder’s theorem have a very special spectral structure, ind…

Mathematics::Functional AnalysisPure mathematicssymbols.namesakeClass (set theory)Spectral theorySpectrum (functional analysis)Spectral structuresymbolsBanach spaceType (model theory)Fredholm theoryMathematics
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Weyl-Type Theorems

2018

In the previous chapters we introduced several classes of operators which have their origin in Fredholm theory. We also know that the spectrum of a bounded linear operator T on a Banach space X can be split into subsets in many different ways.

Mathematics::Functional AnalysisPure mathematicssymbols.namesakeSpectrum (functional analysis)Banach spacesymbolsType (model theory)Fredholm theoryMathematicsBounded operator
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Decompositions and asymptotic limit for bicontractions

2012

The asymptotic limit of a bicontraction T (that is, a pair of commuting contractions) on a Hilbert space H is used to describe a Nagy–Foias–Langer type decomposition of T. This decomposition is refined in the case when the asymptotic limit of T is an orthogonal projection. The case of a bicontraction T consisting of hyponormal (even quasinormal) contractions is also considered, where we have ST∗=S2T∗.

Mathematics::Functional Analysissymbols.namesakeMathematics::Operator AlgebrasGeneral MathematicsMathematical analysisOrthographic projectionHilbert spacesymbolsLimit (mathematics)Mathematics::Spectral TheoryType (model theory)Mathematics
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NoteAbout the Concept of “Net Multipliers”

2002

Net multipliers, as introduced by Oosterhaven and Stelder (2002) accept outputs as entries instead of final demand. They are found by multiplying ordinary multipliers by the final demand ratio over the sector’s output. This pragmatic solution suffers from ratio instability over time. The alternative net multipliers proposed here are based on the interpretation of the Leontief inverse matrix for the effects generated at each round. The new solution is not sensitive to the size of impacts. Now net multiplier is equal to the corresponding ordinary multiplier minus one, and the ordering of multipliers is unchanged.

Matrix (mathematics)Input–output modelInverseFinal demandApplied mathematicsMultiplier (economics)Hardware_ARITHMETICANDLOGICSTRUCTURESEnvironmental Science (miscellaneous)DevelopmentNet (mathematics)Interpretation (model theory)MathematicsJournal of Regional Science
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