Search results for "Applied Mathematic"

showing 10 items of 4398 documents

Tame dynamics and robust transitivity chain-recurrence classes versus homoclinic classes

2014

Transitive relationPure mathematicsChain (algebraic topology)Applied MathematicsGeneral MathematicsDynamics (mechanics)Homoclinic orbitAlgorithmMathematicsTransactions of the American Mathematical Society
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Non-wandering sets with non-empty interiors

2003

We study diffeomorphisms of a closed connected manifold whose non-wandering set has a non-empty interior and conjecture that C1-generic diffeomorphisms whose non-wandering set has a non-empty interior are transitive. We prove this conjecture in three cases: hyperbolic diffeomorphisms, partially hyperbolic diffeomorphisms with two hyperbolic bundles, and tame diffeomorphisms (in the first case, the conjecture is folklore; in the second one, it follows by adapting the proof in Brin (1975 Topological transitivity of a certain class of dynamical systems, and flows of frames on manifolds of negative curvature Funct. Anal. Appl. 9 9–19)).We study this conjecture without global assumptions and pro…

Transitive relationPure mathematicsClass (set theory)Mathematics::Dynamical SystemsConjectureDynamical systems theoryApplied MathematicsMathematical analysisGeneral Physics and AstronomyHyperbolic manifoldStatistical and Nonlinear PhysicsManifoldSet (abstract data type)Homoclinic orbitMathematics::Symplectic GeometryMathematical PhysicsMathematicsNonlinearity
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A new rotational integral formula for intrinsic volumes in space forms

2010

A new rotational version of Crofton's formula is derived for the intrinsic volumes of a domain Y in a space form. More precisely, a functional is defined on the intersection between Y and a totally geodesic submanifold (plane) through a fixed point, such that the rotational average of this functional is equal to the intrinsic volumes of Y. Particular cases of interest in stereology are considered for the Euclidean case. © 2009 Elsevier Inc. All rights reserved.

TransversalityPlane (geometry)Space formApplied MathematicsStereologyMathematical analysisTransversalitySpace formFixed pointSubmanifoldSpace (mathematics)Integral geometryIntersectionMathematics::Metric GeometrySupport setIntegral geometryIntrinsic volumeRotational integralMathematics
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Transverse instability of periodic and generalized solitary waves for a fifth-order KP model

2017

We consider a fifth-order Kadomtsev-Petviashvili equation which arises as a two-dimensional model in the classical water-wave problem. This equation possesses a family of generalized line solitary waves which decay exponentially to periodic waves at infinity. We prove that these solitary waves are transversely spectrally unstable and that this instability is induced by the transverse instability of the periodic tails. We rely upon a detailed spectral analysis of some suitably chosen linear operators.

Transverse instabilitymedia_common.quotation_subjectFOS: Physical sciences35Q53 (Primary) 76B15 76B25 35B35 35P15 (Secondary)Pattern Formation and Solitons (nlin.PS)01 natural sciencesInstabilityMathematics - Analysis of PDEsgeneralized solitary wavesdispersive equationsFOS: Mathematics[MATH.MATH-AP]Mathematics [math]/Analysis of PDEs [math.AP]Spectral analysistransverse stability0101 mathematicsperiodic wavesNonlinear Sciences::Pattern Formation and SolitonsMathematical Physicsmedia_commonPhysicsApplied Mathematics010102 general mathematicsMathematical analysisOrder (ring theory)Mathematical Physics (math-ph)InfinityNonlinear Sciences - Pattern Formation and Solitons010101 applied mathematicsClassical mechanicsNonlinear Sciences::Exactly Solvable and Integrable SystemsLine (geometry)Mechanical waveAnalysisLongitudinal waveAnalysis of PDEs (math.AP)
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A branch-price-and-cut algorithm for the capacitated multiple vehicle traveling purchaser problem with unitary demand

2021

Abstract The multiple vehicle traveling purchaser problem (MVTPP) consists of simultaneously selecting suppliers and routing a fleet of homogeneous vehicles to purchase different products at the selected suppliers so that all product demands are fulfilled and traveling and purchasing costs are minimized. We consider variants of the MVTPP in which the capacity of the vehicles can become binding and the demand for each product is one unit. Corresponding solution algorithms from the literature are either branch-and-cut or branch-and-price algorithms, where in the latter case the route-generation subproblem is solved on an expanded graph by applying standard dynamic-programming techniques. Our …

Traveling purchaser problemApplied Mathematics0211 other engineering and technologies021107 urban & regional planning0102 computer and information sciences02 engineering and technology01 natural sciencesUnitary statePurchasing010201 computation theory & mathematicsHomogeneousDiscrete Mathematics and CombinatoricsAlgorithmMathematicsDiscrete Applied Mathematics
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Corrigendum to “Smooth and non-smooth traveling wave solutions of some generalized Camassa–Holm equations” [19 (6) (2014) 1746–1769]

2015

Corrigendum Corrigendum to ‘‘Smooth and non-smooth traveling wave solutions of some generalized Camassa–Holm equations’’ [19 (6) (2014) 1746–1769] M. Russo , S. Roy Choudhury , T. Rehman , G. Gambino b University of Central Florida, Department of Mathematics, 4000 Central Florida Blvd., Orlando, USA University of Palermo, Department of Mathematics and Computer Science, Via Archirafi 34, 90123 Palermo, Italy

Traveling waveNumerical AnalysisCamassa–Holm equationHomoclinic and heteroclinic orbitsApplied MathematicsModeling and SimulationMathematical analysisTraveling waveNon smoothGeneralized Camassa–Holm equationCommunications in Nonlinear Science and Numerical Simulation
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Corrigendum to “Regular and singular pulse and front solutions and possible isochronous behavior in the short-pulse equation: Phase-plane, multi-infi…

2022

Section 7 of the original paper contained several errors which are corrected here. Equations (54) and (55) are incorrect. In the following, the corrected versions of these equations are given and the subsequent results of Section 7 are also revised.

Traveling waveNumerical AnalysisHomoclinic and heteroclinic orbitSPE and generalized SPE equationApplied MathematicsModeling and SimulationSingular solutionVariational solitary wavesSettore MAT/07 - Fisica MatematicaCommunications in Nonlinear Science and Numerical Simulation
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On solving separable block tridiagonal linear systems using a GPU implementation of radix-4 PSCR method

2018

Partial solution variant of the cyclic reduction (PSCR) method is a direct solver that can be applied to certain types of separable block tridiagonal linear systems. Such linear systems arise, e.g., from the Poisson and the Helmholtz equations discretized with bilinear finite-elements. Furthermore, the separability of the linear system entails that the discretization domain has to be rectangular and the discretization mesh orthogonal. A generalized graphics processing unit (GPU) implementation of the PSCR method is presented. The numerical results indicate up to 24-fold speedups when compared to an equivalent CPU implementation that utilizes a single CPU core. Attained floating point perfor…

Tridiagonal linear systemsProgramvaruteknikComputer Networks and CommunicationsComputer sciencePartial solution techniquereduction010103 numerical & computational mathematicsParallel computingtietotekniikka01 natural scienceslineaariset mallitTheoretical Computer ScienceSeparable spaceinformation technologyArtificial IntelligenceSeparable block tridiagonal linear systemBlock (telecommunications)Fast direct solverRadix0101 mathematicsta113Computer Sciencesta111Linear systemSoftware EngineeringGPU computingSolverComputer Science::Numerical Analysis010101 applied mathematicsPSCR methodDatavetenskap (datalogi)partial solution techniqueHardware and ArchitectureComputer Science::Mathematical Softwarepienennyslinear modelsSoftwareRoofline modelCyclic reductionJournal of Parallel and Distributed Computing
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High-accuracy approximation of piecewise smooth functions using the Truncation and Encode approach

2017

Abstract In the present work, we analyze a technique designed by Geraci et al. in [1,11] named the Truncate and Encode (TE) strategy. It was presented as a non-intrusive method for steady and non-steady Partial Differential Equations (PDEs) in Uncertainty Quantification (UQ), and as a weakly intrusive method in the unsteady case. We analyze the TE algorithm applied to the approximation of functions, and in particular its performance for piecewise smooth functions. We carry out some numerical experiments, comparing the performance of the algorithm when using different linear and non-linear interpolation techniques and provide some recommendations that we find useful in order to achieve a hig…

Truncation errorPartial differential equationGeneral Computer ScienceTruncationApplied MathematicsMathematical analysisOrder (ring theory)010103 numerical & computational mathematicsENCODE01 natural sciences010101 applied mathematicsModeling and SimulationPiecewiseApplied mathematics0101 mathematicsUncertainty quantificationEngineering (miscellaneous)InterpolationApplied Mathematics and Nonlinear Sciences
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Singular Neumann (p, q)-equations

2019

We consider a nonlinear parametric Neumann problem driven by the sum of a p-Laplacian and of a q-Laplacian and exhibiting in the reaction the competing effects of a singular term and of a resonant term. Using variational methods together with suitable truncation and comparison techniques, we show that for small values of the parameter the problem has at least two positive smooth solutions.

TruncationGeneral MathematicsResonant nonlinearity0211 other engineering and technologies02 engineering and technology01 natural sciencesPotential theoryTruncation and comparisonTheoretical Computer ScienceSettore MAT/05 - Analisi MatematicaNeumann boundary conditionApplied mathematics0101 mathematics(p q)-equationNonlinear regularityMathematicsParametric statistics021103 operations research010102 general mathematicsSingular termSingular termMathematics::Spectral TheoryOperator theoryTerm (time)Nonlinear systemNonlinear strong maximum principleAnalysisPositivity
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