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Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials
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Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials : Theoretical and Experimental Methods

2019 ed.

Book Details

Format Paperback / Softback
ISBN-10 3030174727
ISBN-13 9783030174729
Edition 2019 ed.
Publisher Springer Nature Switzerland AG
Imprint Springer Nature Switzerland AG
Country of Manufacture GB
Country of Publication GB
Publication Date Aug 14th, 2020
Print length 254 Pages
Ksh 16,200.00
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This book addresses theoretical and experimental methods for exploring microstructured metamaterials, with a special focus on wave dynamics, mechanics, and related physical properties. The authors use various mathematical and physical approaches to examine the mechanical properties inherent to particular types of metamaterials. These include: • Boundary value problems in reduced strain gradient elasticity for composite fiber-reinforced metamaterials • Self-organization of molecules in ferroelectric thin films • Combined models for surface layers of nanostructures • Computer simulation at the micro- and nanoscale • Surface effects with anisotropic properties and imperfect temperature contacts • Inhomogeneous anisotropic metamaterials with uncoupled and coupled surfaces or interfaces • Special interface finite elements and other numerical and analytical methods for composite structures 
This book addresses theoretical and experimental methods for exploring microstructured metamaterials, with a special focus on wave dynamics, mechanics, and related physical properties. The authors use various mathematical and physical approaches to examine the mechanical properties inherent to particular types of metamaterials. These include: 
•Boundary value problems in reduced strain gradient elasticity for composite fiber-reinforced metamaterials 
•Self-organization of molecules in ferroelectric thin films 
•Combined models for surface layers of nanostructures 
•Computer simulation at the micro- and nanoscale 
•Surface effects with anisotropic properties and imperfect temperature contacts 
•Inhomogeneous anisotropic metamaterials with uncoupled and coupled surfaces or interfaces 
•Special interface finite elements and other numerical and analytical methods for composite structures 


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