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Theoretical Analyses, Computations, and Experiments of Multiscale Materials

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Cover of 'Theoretical Analyses, Computations, and Experiments of Multiscale Materials'

Table of Contents

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    Book Overview
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    Chapter 1 A Different Catch for Poisson
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    Chapter 2 Nonlinear Deformation of a Clamped-Edge Strip-Like Nano-Film
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    Chapter 3 Closed-form Analytic Solutions of the Problem of a Hollow Sphere Made of Second Gradient Plastic Porous Material and Subjected to Hydrostatic Loading
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    Chapter 4 Quantum Dynamics Effects on Amplitude-Frequency Response of Superharmonic Resonance of Second-Order of Electrostatically Actuated NEMS Circular Plates
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    Chapter 5 Propagation of Chaos for a Stochastic Particle System Modelling Epidemics
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    Chapter 6 On the Constitutive Assumptions for a Continuum Model of Scintillating Crystals
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    Chapter 7 Strong Ellipticity Within the Strain Gradient Elasticity: Elastic Bar Case
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    Chapter 8 Two Thermodynamic Laws in Phenomenological Mechanics of Continuum: Postulates or Definitions?
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    Chapter 9 On an Extended Family of Quasi-equivalent Models of the Gradient Elasticity Theory
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    Chapter 10 Continuum Models via Granular Micromechanics
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    Chapter 11 Some Variational Principles in the Three-Dimensional Micropolar Theories of Solids and Thin Solids
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    Chapter 12 Asymptotic Comparison of the Strain-Gradient and Micromorphic Models when Loading Forces Are Widely Spread
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    Chapter 13 Quasiconvexity and Rank-One Convexity in Cosserat Elasticity Theory
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    Chapter 14 Models of Viscoelastic Materials: A Review on Historical Development and Formulation
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    Chapter 15 Invariance Aspects of F  =  F e F i Representations in Coupled-Field Problems
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    Chapter 16 Strain-Gradient Modeling and Computation of 3-D Printed Metamaterials for Verifying Constitutive Parameters Determined by Asymptotic Homogenization
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    Chapter 17 On Boundary Layers Observed in Some 1D Second-Gradient Theories
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    Chapter 18 Design and Parametric Enhancement of a Flexible Planar TEG—Numerical Study
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    Chapter 19 Implementation and Comparison of Non-Newtonian Viscosity Models in Hemodynamic Simulations of Patient Coronary Arteries
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    Chapter 20 Bending/Tension of Plate Reinforced by a System of Parallel Fiber
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    Chapter 21 Semi-automatic Method of Stent Development for Hemodynamic Simulations in Patient Coronary Arteries with Disease
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    Chapter 22 The Efficient Trabecular Bone Remodeling Numerical Tool Enabling Multiple Load Case Simulation
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    Chapter 23 Modeling the Magnetic Relaxation Behavior of Micropolar Ferrofluids by Means of Homogenization
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    Chapter 24 Numerical Homogenisation of Gradient Materials
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    Chapter 25 Modeling the Slow Crack Growth of an Edge Crack Within the Cohesive Zone Model Approach
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    Chapter 26 An Insight into Computational Challenges in Damage Mechanics: Analysis of a Softening Hooke’s Spring
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    Chapter 27 Thermodynamic Compatibility of the HystereticPoly Uniaxial Material Implemented in OpenSees
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    Chapter 28 Studying the Higher-Order Inertia in the Second-Order Theory of Elasticity for Modeling Metamaterials
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    Chapter 29 Structural Analysis of Doubly-Curved Shells with General Boundary Conditions
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    Chapter 30 Characterisation of Mechanical Properties of Wood: Size Effect
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    Chapter 31 Covering a Surface with Pre-stressed Ribbons: From Theory to Nano-Structures Fabrication
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    Chapter 32 Experimental and Theoretical Investigations of Auxetic Sheet Metal
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    Chapter 33 Correction to: Theoretical Analyses, Computations, and Experiments of Multiscale Materials
Attention for Chapter 14: Models of Viscoelastic Materials: A Review on Historical Development and Formulation
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Chapter title
Models of Viscoelastic Materials: A Review on Historical Development and Formulation
Chapter number 14
Book title
Theoretical Analyses, Computations, and Experiments of Multiscale Materials
Published by
Springer, Cham, January 2022
DOI 10.1007/978-3-031-04548-6_14
Book ISBNs
978-3-03-104547-9, 978-3-03-104548-6
Authors

Shitikova, Marina V., Krusser, Anastasiya I.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 8 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 8 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 2 25%
Student > Doctoral Student 2 25%
Lecturer 1 13%
Student > Master 1 13%
Student > Postgraduate 1 13%
Other 0 0%
Unknown 1 13%
Readers by discipline Count As %
Engineering 3 38%
Chemical Engineering 1 13%
Arts and Humanities 1 13%
Materials Science 1 13%
Mathematics 1 13%
Other 0 0%
Unknown 1 13%