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  • Vibrations of Structural Systems

    Series series Synthesis Collection of Technology (R0)
    The aim is at providing the reader with knowledge on both basic and advanced topics in the vibrations of structural systems categorized as either discrete or continuous. The emphasis is on numerical methods of solution with a Java programming framework that accompanies the book. Reference will be made to numerical solutions based on the contemporary discretization techniques ranging from the ... Read more

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    Series series The Finite Element Method
    The Finite Element Method for Solid and Structural Mechanics is the key text and reference for engineers, researchers and senior students dealing with the analysis and modeling of structures, from large civil engineering projects such as dams to aircraft structures and small engineered components. This edition brings a thorough update and rearrangement of the book's content, including new chapters ... Read more

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  • Computational Problems for Physics

    With Guided Solutions Using Python

    Series series Series in Computational Physics
    Our future scientists and professionals must be conversant in computational techniques. In order to facilitate integration of computer methods into existing physics courses, this textbook offers a large number of worked examples and problems with fully guided solutions in Python as well as other languages (Mathematica, Java, C, Fortran, and Maple). It’s also intended as a self-study guide for ... Read more

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  • Nonlinear Finite Element Analysis of Solids and Structures

    Series series Wiley Series in Computational Mechanics
    Built upon the two original books by Mike Crisfield and their own lecture notes, renowned scientist René de Borst and his team offer a thoroughly updated yet condensed edition that retains and builds upon the excellent reputation and appeal amongst students and engineers alike for which Crisfield's first edition is acclaimed.Together with numerous additions and updates, the new authors have ... Read more

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  • The Finite Volume Method in Computational Fluid Dynamics

    An Advanced Introduction with OpenFOAM® and Matlab

    Series series Engineering (R0)
    This textbook explores both the theoretical foundation of the Finite Volume Method (FVM) and its applications in Computational Fluid Dynamics (CFD). Readers will discover a thorough explanation of the FVM numerics and algorithms used for the simulation of incompressible and compressible fluid flows, along with a detailed examination of the components needed for the development of a collocated ... Read more

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  • The Finite Element Method

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    Written for practicing engineers and students alike, this book emphasizes the role of finite element modeling and simulation in the engineering design process. It provides the necessary theories and techniques of the FEM in a concise and easy-to-understand format and applies the techniques to civil, mechanical, and aerospace problems. Updated throughout for current developments in FEM and FEM ... Read more

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  • Introduction to Nonlinear Finite Element Analysis

    by Nam-Ho Kim ...
    Series series Engineering (R0)
    This book introduces the key concepts of nonlinear finite element analysis procedures. The book explains the fundamental theories of the field and provides instructions on how to apply the concepts to solving practical engineering problems. Instead of covering many nonlinear problems, the book focuses on three representative problems: nonlinear elasticity, elastoplasticity, and contact problems. ... Read more

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  • Fundamentals of Quantum Computing

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    Series series Computer Science (R0)
    This introductory book on quantum computing includes an emphasis on the development of algorithms. Appropriate for both university students as well as software developers interested in programming a quantum computer, this practical approach to modern quantum computing takes the reader through the required background and up to the latest developments.Beginning with introductory chapters on the ... Read more

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  • Finite Elements

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    by A. J. Baker ...
    Approaches computational engineering sciences from the perspective of engineering applicationsUniting theory with hands-on computer practice, this book gives readers a firm appreciation of the error mechanisms and control that underlie discrete approximation implementations in the engineering sciences.Key features:Illustrative examples include heat conduction, structural mechanics, mechanical ... Read more

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  • Renormalized Perturbation Theory and its Optimization by the Principle of Minimal Sensitivity

    by P M Stevenson ...
    The results of renormalized perturbation theory, in QCD and other quantum field theories, are ambiguous at any finite order, due to renormalization-scheme dependence. The perturbative results depend upon extraneous scheme variables, including the renormalization scale, that the exact result cannot depend on. Such 'non-invariant approximations' occur in many other areas of physics, too. The ... Read more

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  • Practical Multiscaling

    by Jacob Fish ...
    Practical Multiscaling covers fundamental modelling techniques aimed at bridging diverse temporal and spatial scales ranging from the atomic level to a full-scale product level. It focuses on practical multiscale methods that account for fine-scale (material) details but do not require their precise resolution. The text material evolved from over 20 years of teaching experience at Rensselaer and ... Read more

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  • Problems And Solutions In Differential Geometry, Lie Series, Differential Forms, Relativity And Applications

    This volume presents a collection of problems and solutions in differential geometry with applications. Both introductory and advanced topics are introduced in an easy-to-digest manner, with the materials of the volume being self-contained. In particular, curves, surfaces, Riemannian and pseudo-Riemannian manifolds, Hodge duality operator, vector fields and Lie series, differential forms, matrix ... Read more

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