Search results for "Names"

showing 10 items of 6843 documents

A mathematical model of the self-averaging Pitot tube

2005

Abstract Flowmeters with self-averaging Pitot tubes are more and more often applied in practice. Their advantages are practically no additional flow losses, usability in the case of high temperature of fluids and simplicity of fitting. A mathematical model of a self-averaging Pitot tube including the influence of the probe shape, selected constructional features and flow conditions on the quantity of differential pressure gained has been given in this paper. The values and ranges of variations of the coefficients established for the model have been assessed on the basis of the numerically computed velocity and pressure fields around and inside the probe. Velocity and pressure fields were ca…

TurbulenceNumerical analysisReynolds numberPitot tubeMechanicsComputer Science ApplicationsMetrologylaw.inventionPhysics::Fluid Dynamicssymbols.namesakeFlow conditionsFlow (mathematics)lawModeling and SimulationsymbolsFlow coefficientStatistical physicsElectrical and Electronic EngineeringInstrumentationMathematicsFlow Measurement and Instrumentation
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Logic, Computing and Biology

2015

Logic and Computing are appropriate formal languages for Biology, and we may well be surprised by the strong analogy between software and DNA, and between hardware and the protein machinery of the cell. This chapter examines to what extent any biological entity can be described by an algorithm and, therefore, whether the Turing machine and the halting problem concepts apply. Last of all, I introduce the concepts of recursion and algorithmic complexity, both from the field of computer science, which can help us understand and conceptualise biological complexity.

Turing machinesymbols.namesakeRecursionTheoretical computer scienceComputer scienceComputational logicFormal languagesymbolsAnalogyComputerApplications_COMPUTERSINOTHERSYSTEMSGödel's incompleteness theoremsUnconventional computingHalting problem
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Inductive inference of recursive functions: Qualitative theory

2005

This survey contains both old and very recent results in non-quantitative aspects of inductive inference of total recursive functions. The survey is not complete. The paper was written to stress some of the main results in selected directions of research performed at the University of Latvia rather than to exhaust all of the obtained results. We concentrated on the more explored areas such as the inference of indices in non-Goedel computable numberings, the inference of minimal Goedel numbers, and the specifics of inference of minimal indices in Kolmogorov numberings.

Turing machinesymbols.namesakeTheoretical computer scienceInductive biasInductive probabilitysymbolsRecursive functionsInferenceInductive reasoningGödel's incompleteness theoremsQualitative theoryMathematics
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Beurling ultradistributions of Lp-growth

2003

We study the convolutors and the surjective convolution operators acting on spaces of ultradistributions of Lp-growth. In the case p = 2 we obtain complete characterizations. Some results on hypoellipticity are also included.  2003 Elsevier Science (USA). All rights reserved.

UltradistributionsPure mathematicsFunctional analysisApplied MathematicsConvolution operatorsMathematical analysisConvolutionSurjective functionsymbols.namesakeFourier transformConvolutorssymbolsConvolution equationAnalysisMathematicsJournal of Mathematical Analysis and Applications
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Quasi-periodic dipping in the ultraluminous X-ray source, NGC 247 ULX-1

2021

Most ultraluminous X-ray sources (ULXs) are believed to be stellar mass black holes or neutron stars accreting beyond the Eddington limit. Determining the nature of the compact object and the accretion mode from broadband spectroscopy is currently a challenge, but the observed timing properties provide insight into the compact object and details of the geometry and accretion processes. Here we report a timing analysis for an 800 ks XMM-Newton campaign on the supersoft ultraluminous X-ray source, NGC 247 ULX-1. Deep and frequent dips occur in the X-ray light curve, with the amplitude increasing with increasing energy band. Power spectra and coherence analysis reveals the dipping preferential…

Ultraluminous X-ray sourceStellar massAstrophysics::High Energy Astrophysical PhenomenaFOS: Physical sciencesAstrophysicsAstrophysics::Cosmology and Extragalactic AstrophysicsCompact star01 natural sciencesSpectral linesymbols.namesakeX-rays: binariesaccretion0103 physical sciencesAstrophysics::Solar and Stellar Astrophysics010303 astronomy & astrophysicsAstrophysics::Galaxy AstrophysicsHigh Energy Astrophysical Phenomena (astro-ph.HE)PhysicsAccretion (meteorology)010308 nuclear & particles physicsAstronomy and AstrophysicsLight curveaccretion discsX-rays: individual: NGC 247 ULX-1Neutron starSpace and Planetary ScienceEddington luminositysymbolsAstrophysics::Earth and Planetary AstrophysicsAstrophysics - High Energy Astrophysical Phenomena[PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph]
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Continuous frames for unbounded operators

2021

Few years ago G\u{a}vru\c{t}a gave the notions of $K$-frame and atomic system for a linear bounded operator $K$ in a Hilbert space $\mathcal{H}$ in order to decompose $\mathcal{R}(K)$, the range of $K$, with a frame-like expansion. These notions are here generalized to the case of a densely defined and possibly unbounded operator on a Hilbert space $A$ in a continuous setting, thus extending what have been done in a previous paper in a discrete framework.

Unbounded operator42C15 47A05 47A63 41A65Pure mathematicsContinuous A-frames Continuous weak A-frames Continuous atomic systems Unbounded operatorsAlgebra and Number TheoryAtomic system010102 general mathematicsHilbert spaceOrder (ring theory)01 natural sciencesBounded operatorFunctional Analysis (math.FA)Mathematics - Functional AnalysisRange (mathematics)symbols.namesakeSettore MAT/05 - Analisi Matematica0103 physical sciencessymbolsFOS: Mathematics0101 mathematics010306 general physicsAnalysisMathematics
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Factorization of strongly (p,sigma)-continuous multilinear operators

2013

We introduce the new ideal of strongly-continuous linear operators in order to study the adjoints of the -absolutely continuous linear operators. Starting from this ideal we build a new multi-ideal by using the composition method. We prove the corresponding Pietsch domination theorem and we present a representation of this multi-ideal by a tensor norm. A factorization theorem characterizing the corresponding multi-ideal - which is also new for the linear case - is given. When applied to the case of the Cohen strongly -summing operators, this result gives also a new factorization theorem.

Unbounded operatorDiscrete mathematicsMultilinear mapPrimary 46A32Algebra and Number TheoryMathematics::Commutative AlgebraTensor normSpectral theoremOperator theoryPietsch domination theoremMultilinear operatorsymbols.namesakeFactorizationNorm (mathematics)Weierstrass factorization theoremsymbolsSecondary 47B10FactorizationMATEMATICA APLICADAOperator normAbsolutely continuous operatorsMathematics
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Riesz-like bases in rigged Hilbert spaces

2015

The notions of Bessel sequence, Riesz-Fischer sequence and Riesz basis are generalized to a rigged Hilbert space $\D[t] \subset \H \subset \D^\times[t^\times]$. A Riesz-like basis, in particular, is obtained by considering a sequence $\{\xi_n\}\subset \D$ which is mapped by a one-to-one continuous operator $T:\D[t]\to\H[\|\cdot\|]$ into an orthonormal basis of the central Hilbert space $\H$ of the triplet. The operator $T$ is, in general, an unbounded operator in $\H$. If $T$ has a bounded inverse then the rigged Hilbert space is shown to be equivalent to a triplet of Hilbert spaces.

Unbounded operatorMathematics::Classical Analysis and ODEsInverse01 natural sciencesCombinatoricssymbols.namesakeSettore MAT/05 - Analisi Matematica0103 physical sciencesFOS: MathematicsOrthonormal basisRigged Hilbert spaces0101 mathematicsMathematicsBasis (linear algebra)Applied MathematicsOperator (physics)010102 general mathematicsHilbert spaceRigged Hilbert spaceFunctional Analysis (math.FA)Mathematics - Functional AnalysisBounded functionsymbols010307 mathematical physicsAnalysisRiesz basi
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Weyl's theorem for perturbations of paranormal operators

2007

A bounded linear operator T ∈ L(X) on a Banach space X is said to satisfy "Weyl's theorem" if the complement in the spectrum of the Weyl spectrum is the set of all isolated points of the spectrum which are eigenvalues of finite multiplicity. In this paper we show that if T is a paranormal operator on a Hilbert space, then T + K satisfies Weyl's theorem for every algebraic operator K which commutes with T.

Unbounded operatorPure mathematicsApplied MathematicsGeneral MathematicsHilbert spaceBanach spaceMathematics::Spectral TheoryCompact operatorOperator spaceBounded operatorsymbols.namesakesymbolsWeyl transformationContraction (operator theory)MathematicsProceedings of the American Mathematical Society
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Refinements of PIP-Spaces

2009

We have seen in Section 1.5, that the compatibility relation underlying a pip-space may always be coarsened, but not refined in general. There is an exception, however, namely the case of a scale of Hilbert spaces and analogous structures. We shall describe it in this section.

Unbounded operatorPure mathematicssymbols.namesakeScale (ratio)Section (archaeology)Compatibility relationHilbert spacesymbolsSpectral theoremMathematics
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