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Mechanics, Models and Methods in Civil Engineering

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Cover of 'Mechanics, Models and Methods in Civil Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Adjustable Measures for the Safeguard of Monuments
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    Chapter 2 Statics of Bodies Made of a Compressionally Rigid No Tension Material
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    Chapter 3 Stress State for Heavy Masonry Panels with Openings
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    Chapter 4 Homogenization of Flat and Thin Linearly Elastic Masonries
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    Chapter 5 Engineering the Ruins of Constructions
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    Chapter 6 Finite Element Analysis of the Initiation of Landslides with a Non-isothermal Multiphase Model
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    Chapter 7 Dissipation and Thermoelastic Coupling Associated with Fatigue of Materials
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    Chapter 8 Thermal Strain of Green Hinoki Wood: Separating the Hygrothermal Recovery and the Reversible Deformation
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    Chapter 9 Modelling Shape Memory Alloy Behaviour under Proportional Loading and Anisothermal Conditions
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    Chapter 10 Towards Optimal Bounds on the Recoverable Strains in Polycrystalline Shape Memory Alloys
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    Chapter 11 From Size-Effect Evaluation to Continuum Models with Strain Softening
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    Chapter 12 Numerical Modelling of Cracking in Concrete
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    Chapter 13 Mechanical Behaviour of Corroded Rebars in Reinforced Concrete Elements
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    Chapter 14 A Generalization of the Endochronic Theory of Plasticity Based on the Introduction of Several Intrinsic Times
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    Chapter 15 A New Integration Algorithm for the von-Mises Elasto-Plastic Model
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    Chapter 16 A Numerical Evaluation of Damage in Fast Dynamics
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    Chapter 17 Capillary Cohesive Local Force: Modelling and Experiment
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    Chapter 18 Wear Modelling in Biomechanics
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    Chapter 19 Curvature–Driven Motion of Domain Walls in Hard Ferromagnets
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    Chapter 20 Numerical Analysis of Two Non-linear Soft Thin Layers
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    Chapter 21 Equivalent Stiffness and Compliance of Curvilinear Elastic Fibers
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    Chapter 22 Some Problems of Stability and Bifurcation in the Propagation of Plane Cracks
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    Chapter 23 Influence of the Incremental Constitutive Law on Tensile Instability Phenomena
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    Chapter 24 Stability and Mechanism’s Order of Minimal Area Surfaces and Tensile Structures
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    Chapter 25 Modular Tensegrity Structures: The ”Tor Vergata” Footbridge
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    Chapter 26 Thin Shells Form-Finding
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    Chapter 27 An Event-Driven Algorithm in Dynamics of Multi-contact Systems
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    Chapter 28 Discrete Models Including Non-smooth Non-linearities of Friction Type
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    Chapter 29 Sthenic Incompatibilities in Rigid Bodies Motion: The Painlevé Incompatibility
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    Chapter 30 Collisions and Fractures: A Predictive Theory
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    Chapter 31 Asymptotic Modelling of Linearly Piezoelectric Plates
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    Chapter 32 Control of Bridge Structures with Semi-active Tuned Mass Damper
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    Chapter 33 Some Applications of Passive and Semi-active Control Devices for Harmonic Vibrations Damping in Cable-Stayed Bridges
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    Chapter 34 Mechanical Modelling of Stays under Thermal Loads
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Title
Mechanics, Models and Methods in Civil Engineering
Published by
Springer Berlin Heidelberg, November 2011
DOI 10.1007/978-3-642-24638-8
ISBNs
978-3-64-224637-1, 978-3-64-224638-8
Editors

Frémond, Michel, Maceri, Franco

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The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 2 100%

Demographic breakdown

Readers by professional status Count As %
Librarian 1 50%
Student > Bachelor 1 50%
Readers by discipline Count As %
Computer Science 1 50%
Engineering 1 50%