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Numerical Methods for Diffusion Phenomena in Building Physics

This book is the second edition of Numerical methods for diffusion phenomena in building physics: a practical introduction originally;

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Numerical Methods for Diffusion Phenomena in Building Physics

This book is the second edition of Numerical methods for diffusion phenomena in building physics: a practical introduction originally;

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Effective Computational Methods for Wave Propagation

. The final part supplies an overview of high-order, low diffusion numerical methods for complex, compressible flows of aerodynamics;

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Effective Computational Methods for Wave Propagation

. The final part supplies an overview of high-order, low diffusion numerical methods for complex, compressible flows of aerodynamics;

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Numerical Bifurcation Analysis for Reaction-Diffusion Equations

thorough understanding of numerical bifurcation analysis and the necessary tools for investigating nonlinear phenomena in reaction-diffusion;

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A Closer Look of Nonlinear Reaction-Diffusion Equations

-diffusion equations and corresponding analytical solutions in various fields of chemical sciences are discussed in chapter6. Numerical methods are;

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Diffusion in Solids: Fundamentals, Methods, Materials, Diffusion-Controlled Processes

in metals, alloys, semiconductors, ion-conducting materials, glasses and nanomaterials. Coverage includes diffusion-controlled phenomena;

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Series Expansion Methods for Strongly Interacting Lattice Models

/9780521842426, contains programs for implementing these powerful numerical techniques. A valuable resource for graduate students and postdoctoral;

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Series Expansion Methods for Strongly Interacting Lattice Models

/9780521842426, contains programs for implementing these powerful numerical techniques. A valuable resource for graduate students and postdoctoral;

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Numerical Methods in Physics with Python

textbook for courses on computational physics. All the frequently used numerical methods in physics are explained, including foundational;

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Numerical Methods in Physics with Python

textbook for courses on computational physics. All the frequently used numerical methods in physics are explained, including foundational;

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Convection-Diffusion Problems

Many physical problems involve diffusive and convective (transport) processes. When diffusion dominates convection, standard numerical;

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Numerical Methods and Applications

; problem-driven numerical method: motivation and application, numerical methods for fractional diffusion problems; orthogonal polynomials and;

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A Closer Look at the Diffusion Equation

book of seventh chapters encompassing local and no-local diffusion phenomena modelled with integer-order (local) and non-local operators. This;

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Renormalization Methods

critical phenomena aeo dynamical systems and chaos aeo developed turbulence aeo fractal structures and complex systems aeo percolation aeo polymer;

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Analysis and Modelling of Physical Transport Phenomena

problems inidealized situations. Part III introduces numerical methods forcomputer-aided solutions of complex problems that are not;

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Transport by Advection and Diffusion

Bennett's Transport by Advection and Diffusion provides analytical and numerical tools to aid problem solving in every topic area of the;

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NMR Studies of Translational Motion

Resonance (NMR) provides a powerful non-invasive technique for studying the phenomena using magnetic field gradient methods. Describing the physical;

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Computational statistical physics

simulation methodology, along with a variety of applications. These include the study of coarsening phenomena and diffusion in zeolites. In addition;

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Advanced Mathematical Methods in Science and Engineering

extensive treatment of numerical methods for solving non-linear equations, finite difference differentiation and integration, initial value and;

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Acoustics

Devoted to the basis of acoustics and vibro-acoustics, this book presents the physics of the phenomena, the analytical methods and the;

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Foundations In Applied Nuclear Engineering Analysis

student for optimum performance in any nuclear engineering or medical physics curriculum. The book opens with fundamentals in probability and;

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Foundations In Applied Nuclear Engineering Analysis

student for optimum performance in any nuclear engineering or medical physics curriculum. The book opens with fundamentals in probability and;

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Lattice Boltzmann Method

Lattice Boltzmann Method introduces the lattice Boltzmann method (LBM) for solving transport phenomena - flow, heat and mass transfer;

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The Hybrid High-Order Method for Polytopal Meshes

of applications to advanced models in computational mechanics. Hybrid High-Order methods are new-generation numerical methods for partial differential;

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The Hybrid High-Order Method for Polytopal Meshes: Design, Analysis, and Applications

of applications to advanced models in computational mechanics. Hybrid High-Order methods are new-generation numerical methods for partial differential;

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A First Course in Computational Fluid Dynamics

methods for solving flow physics problems, including the point-vortex method, numerical methods for hydrodynamic stability analysis, spectral;

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