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Theory, Numerics and Applications of Hyperbolic Problems II

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Cover of 'Theory, Numerics and Applications of Hyperbolic Problems II'

Table of Contents

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    Book Overview
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    Chapter 1 A Stochastic Galerkin Method for the Fokker–Planck–Landau Equation with Random Uncertainties
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    Chapter 2 On Robust and Adaptive Finite Volume Methods for Steady Euler Equations
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    Chapter 3 The Burgers–Hilbert Equation
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    Chapter 4 General Linear Methods for Time-Dependent PDEs
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    Chapter 5 An Invariant-Region-Preserving (IRP) Limiter to DG Methods for Compressible Euler Equations
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    Chapter 6 $$\beta $$ -Schemes with Source Terms and the Convergence Analysis
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    Chapter 7 Existence of Undercompressive Shock Wave Solutions to the Euler Equations
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    Chapter 8 Some Numerical Results of Regional Boundary Controllability with Output Constraints
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    Chapter 9 Water Hammer Modeling for Water Networks via Hyperbolic PDEs and Switched DAEs
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    Chapter 10 Stability Criteria for Some System of Delay Differential Equations
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    Chapter 11 Bound-Preserving Reconstruction of Tensor Quantities for Remap in ALE Fluid Dynamics
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    Chapter 12 On Computing Compressible Euler Equations with Gravity
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    Chapter 13 On Well-Posedness for a Multi-particle Fluid Model
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    Chapter 14 On quantifying uncertainties for the linearized BGK kinetic equation
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    Chapter 15 Kinetic ES-BGK models for a multi-component gas mixture
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    Chapter 16 An Arbitrary Lagrangian–Eulerian Discontinuous Galerkin Method for Conservation Laws: Entropy Stability
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    Chapter 17 Simplified Hyperbolic Moment Equations
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    Chapter 18 Weakly Coupled Systems of Conservation Laws on Moving Surfaces
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    Chapter 19 A Phase-Field Model for Flows with Phase Transition
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    Chapter 20 Mathematical Theory of Two-Phase Geochemical Flow with Chemical Species
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    Chapter 21 Localization of Adiabatic Deformations in Thermoviscoplastic Materials
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    Chapter 22 The Global Nonlinear Stability of Minkowski Spacetime for Self-gravitating Massive Fields
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    Chapter 23 A Particle-Based Multiscale Solver for Compressible Liquid–Vapor Flow
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    Chapter 24 $$L^p$$ L p - $$L^q$$ L q Decay Estimates for Dissipative Linear Hyperbolic Systems in 1D
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    Chapter 25 A Numerical Approach of Friedrichs’ Systems Under Constraints in Bounded Domains
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    Chapter 26 Lagrangian Representation for Systems of Conservation Laws: An Overview
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    Chapter 27 Kinematical Conservation Laws in Inhomogeneous Media
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    Chapter 28 Artificial Viscosity for Correction Procedure via Reconstruction Using Summation-by-Parts Operators
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    Chapter 29 On a Relation Between Shock Profiles and Stabilization Mechanisms in a Radiating Gas Model
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    Chapter 30 On the Longtime Behavior of Almost Periodic Entropy Solutions to Scalar Conservation Laws
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    Chapter 31 Structure Preserving Schemes for Mean-Field Equations of Collective Behavior
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    Chapter 32 A Numerical Model for Three-Phase Liquid–Vapor–Gas Flows with Relaxation Processes
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    Chapter 33 Feedback Stabilization of a Linear Fluid–Membrane System with Time Delay
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    Chapter 34 A Unified Hyperbolic Formulation for Viscous Fluids and Elastoplastic Solids
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    Chapter 35 On the Transverse Diffusion of Beams of Photons in Radiation Therapy
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    Chapter 36 Numerical Viscosity in Large Time Step HLL-Type Schemes
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    Chapter 37 Correction Procedure via Reconstruction Using Summation-by-Parts Operators
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    Chapter 38 A Third-Order Entropy Stable Scheme for the Compressible Euler Equations
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    Chapter 39 Did Numerical Methods for Hyperbolic Problems Take a Wrong Turning?
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    Chapter 40 Astrophysical Fluid Dynamics and Applications to Stellar Modeling
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    Chapter 41 Nonlinear Stability of Localized and Non-localized Vortices in Rotating Compressible Media
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    Chapter 42 Coupled Scheme for Hamilton–Jacobi Equations
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    Chapter 43 Compressible Heterogeneous Two-Phase Flows
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    Chapter 44 Bound-Preserving High-Order Schemes for Hyperbolic Equations: Survey and Recent Developments
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    Chapter 45 Comparison of Shallow Water Models for Rapid Channel Flows
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    Chapter 46 On Stability and Conservation Properties of (s)EPIRK Integrators in the Context of Discretized PDEs
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    Chapter 47 Compactness on Multidimensional Steady Euler Equations
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    Chapter 48 A Constraint-Preserving Finite Difference Method for the Damped Wave Map Equation to the Sphere
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    Chapter 49 Integral Transform Approach to Solving Klein–Gordon Equation with Variable Coefficients
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    Chapter 50 Asymptotic Consistency of the RS-IMEX Scheme for the Low-Froude Shallow Water Equations: Analysis and Numerics
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    Chapter 51 Class of Space-Time Entropy Stable DG Schemes for Systems of Convection–Diffusion
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    Chapter 52 Invariant Manifolds for a Class of Degenerate Evolution Equations and Structure of Kinetic Shock Layers
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Title
Theory, Numerics and Applications of Hyperbolic Problems II
Published by
Springer International Publishing, August 2018
DOI 10.1007/978-3-319-91548-7
ISBNs
978-3-31-991547-0, 978-3-31-991548-7
Editors

Klingenberg, Christian, Westdickenberg, Michael

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Mendeley readers

The data shown below were compiled from readership statistics for 9 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 9 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 7 78%
Researcher 1 11%
Unknown 1 11%
Readers by discipline Count As %
Mathematics 3 33%
Computer Science 2 22%
Engineering 2 22%
Unknown 2 22%