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Integral Methods in Science and Engineering

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Cover of 'Integral Methods in Science and Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Use of Elastodynamic Reciprocity Theorems for Field Calculations
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    Chapter 2 Linear Solvers for the Galerkin Boundary Element Method
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    Chapter 3 Reciprocity of Hopf’s and Feautrier’s Operators in Radiation Transport Theory
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    Chapter 4 Spectral Approximation of Weakly Singular Integrable Kernels Using Projections
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    Chapter 5 Effect of Imperfect Interface on a Thermal Inclusion with an Interior Radial Crack
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    Chapter 6 An Integrodifferential Equation of Atomic Diffusion
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    Chapter 7 Nonradiating Dislocations in Uniform Supersonic Motion in Anisotropic Linear Elastic Solids
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    Chapter 8 On the Use of the Conjugate Gradient Method for the Numerical Solution of First-Kind Integral Equations in Two Variables
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    Chapter 9 On the Stopping Criteria for Conjugate Gradient Solutions of First-Kind Integral Equations in Two Variables
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    Chapter 10 An Initial-Boundary Value Problem for Thermoelastic Plates
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    Chapter 11 A Global Existence Result for Functional Differential Equations with Causal Operators
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    Chapter 12 Direct Stiffness-Modification Route to Linear Consistency Between Incompatible Finite Element Meshes
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    Chapter 13 Nonlinear Dynamic Analysis of a Curved Beam Structure Using a Finite Element Method
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    Chapter 14 Seminal Ideas in Integral Methods
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    Chapter 15 Mixed Boundary Value Problem with Two Displacement Boundaries for Thin Plate Bending
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    Chapter 16 Use of Cross-Referencing for Solving the Parameter Choice Problem in Generalized CLS
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    Chapter 17 Numerical Technique for Solving an Ordinary Differential Equation by Picard’s Method
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    Chapter 18 On a Class of Boundary Conditions Splitting Coupled Thermoelasticity Problems
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    Chapter 19 Recent Mathematical Developments for Functionally Graded Linearly Elastic Materials
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    Chapter 20 Ground Vibration Dynamics During Pile Hammering
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    Chapter 21 Connection Between Liquid Crystal Theory and Plate Theory
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    Chapter 22 Product Integration Quadratures for the Radiative Transfer Problem with Hopf’s Kernel
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    Chapter 23 A Numerical Scheme for Determining Diffraction Coefficients in Anisotropic Materials
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    Chapter 24 Effect of Imperfect Inclusion/Matrix Interaction Between a Circular Inclusion and a Radial Matrix Crack
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    Chapter 25 Neutral Equations with Causal Operators
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    Chapter 26 Computation of Free-Surface Flows Under the Influence of Pressure Distribution
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    Chapter 27 Solution of Eigenvalue Problems for Rectangular Plates by Differential Transformation
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    Chapter 28 Free Vibrations of Structural Hyperbolic Paraboloid Networks
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    Chapter 29 Sharp Invertibility Results for Layer Potentials in 2D
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    Chapter 30 An Enhanced Theory of Bending of Plates
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    Chapter 31 Comparison of Zonal, Spectral Solutions for Compressible Boundary Layer and Navier—Stokes Equations
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    Chapter 32 Hybrid Laplace and Poisson Solvers I: Dirichlet Boundary Conditions
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    Chapter 33 Estimation of Boundary Conditions from Different Experimental Data Using the LTS N Method and Tikhonov Regularization
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    Chapter 34 Analytical-Numerical Treatment of the One-Phase Stefan Problem with Constant Applied Heat Flux
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    Chapter 35 Integral Equations Arising in Boundary Value Problems at Resonance
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    Chapter 36 Thermal Stress Analysis of an Elliptic Inclusion with Imperfect Interface Embedded in an Infinite Elastic Medium
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    Chapter 37 Three-Dimensional Elasticity Solutions for Anisotropic and Inhomogeneous Plates and Shells
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    Chapter 38 A Circular Inclusion with Inhomogeneous Interface
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    Chapter 39 Multiwavelets for Geometrically Complicated Domains and Their Application to Boundary Element Methods
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    Chapter 40 Mathematical Investigation of Contact Problems with Friction in Fracture Dynamics
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2 institutions with syllabi

Citations

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16 Mendeley
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Title
Integral Methods in Science and Engineering
Published by
Birkhäuser Boston, December 2012
DOI 10.1007/978-1-4612-0111-3
ISBNs
978-1-4612-0111-3, 978-1-4612-6617-4
Editors

Constanda, Christian, Mioduchowski, Andrew, Schiavone, Peter

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 16 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 16 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 31%
Student > Ph. D. Student 3 19%
Other 2 13%
Professor > Associate Professor 2 13%
Lecturer 1 6%
Other 1 6%
Unknown 2 13%
Readers by discipline Count As %
Engineering 7 44%
Mathematics 4 25%
Physics and Astronomy 1 6%
Materials Science 1 6%
Chemistry 1 6%
Other 0 0%
Unknown 2 13%