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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 Multiphase Flow Splitting in Looped Pipelines
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    Chapter 2 Green’s Function Decomposition Method for Transport Equation
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    Chapter 3 Integral Neutron Transport and New Computational Methods: A Review
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    Chapter 4 Scale Invariance and Some Limits in Transport Phenomenology: Existence of a Spontaneous Scale
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    Chapter 5 On Coherent Structures from a Diffusion-Type Model
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    Chapter 6 Numerical Simulation of the Dynamics of Molecular Markers Involved in Cell Polarization
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    Chapter 7 Analytical Study of Computational Radiative Fluxes in a Heterogeneous Medium
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    Chapter 8 A Novel Approach to the Hankel Transform Inversion of the Neutron Diffusion Problem Using the Parseval Identity
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    Chapter 9 What Is Convergence Acceleration Anyway?
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    Chapter 10 On the Fractal Pattern Phenomenology of Geological Fracture Signatures from a Scaling Law
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    Chapter 11 Spectral Boundary Homogenization Problems in Perforated Domains with Robin Boundary Conditions and Large Parameters
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    Chapter 12 A Finite Element Formulation of the Total Variation Method for Denoising a Set of Data
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    Chapter 13 On the Convergence of the Multi-group Isotropic Neutron LTS N Nodal Solution in Cartesian Geometry
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    Chapter 14 Numerical Integration with Singularity by Taylor Series
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    Chapter 15 Numerical Solutions of the 1D Convection–Diffusion–Reaction and the Burgers Equation Using Implicit Multi-stage and Finite Element Methods
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    Chapter 16 Analytical Reconstruction of Monoenergetic Neutron Angular Flux in Non-multiplying Slabs Using Diffusion Synthetic Approximation
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    Chapter 17 On the Fractional Neutron Point Kinetics Equations
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    Chapter 18 On a Closed Form Solution of the Point Kinetics Equations with a Modified Temperature Feedback
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    Chapter 19 Eulerian Modeling of Radionuclides in Surficial Waters: The Case of Ilha Grande Bay (RJ, Brazil)
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    Chapter 20 Fractional Calculus: Application in Modeling and Control
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    Chapter 21 Modified Integral Equation Method for Stationary Plate Oscillations
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    Chapter 22 Nonstandard Integral Equations for the Harmonic Oscillations of Thin Plates
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    Chapter 23 A Genuine Analytical Solution for the SN Multi-group Neutron Equation in Planar Geometry
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    Chapter 24 Single-Phase Flow Instabilities: Effect of Pressure Waves in a Pump–Pipe–Plenum–Choke System
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    Chapter 25 Two-Phase Flow Instabilities in Oil Wells: ESP Oscillatory Behavior and Casing-Heading
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    Chapter 26 Validating a Closed Form Advection–Diffusion Solution by Experiments: Tritium Dispersion after Emission from the Brazilian Angra Dos Reis Nuclear Power Plant
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Title
Integral Methods in Science and Engineering
Published by
Birkhäuser Basel, January 2013
DOI 10.1007/978-1-4614-7828-7
ISBNs
978-1-4614-7827-0, 978-1-4614-7828-7
Editors

Christian Constanda, Bardo E.J. Bodmann, Haroldo F. de Campos Velho

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X Demographics

The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 14 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 14 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 36%
Student > Master 3 21%
Student > Bachelor 1 7%
Student > Postgraduate 1 7%
Unspecified 1 7%
Other 0 0%
Unknown 3 21%
Readers by discipline Count As %
Engineering 6 43%
Earth and Planetary Sciences 2 14%
Mathematics 1 7%
Environmental Science 1 7%
Computer Science 1 7%
Other 0 0%
Unknown 3 21%