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Applications and metrology at nanometer scale. 1, Smart materials, electromagnetic waves and uncertainties /

To develop innovations in quantum engineering and nanosystems, designers need to adopt the expertise that has been developed in research laboratories. This requires a thorough understanding of the experimental measurement techniques and theoretical models, based on the principles of quantum mechanic...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Dahoo, Pierre Richard
Otros Autores: Pougnet, Philippe, El Hami, Abdelkhalak
Formato: Electrónico eBook
Idioma:Inglés
Publicado: London : Hoboken : ISTE Ltd. ; Wiley, 2021.
Colección:Mechanical engineering and solid mechanics series.
Reliability of multiphysical systems set ; v. 9.
Temas:
Acceso en línea:Texto completo (Requiere registro previo con correo institucional)

MARC

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245 1 0 |a Applications and metrology at nanometer scale.  |n 1,  |p Smart materials, electromagnetic waves and uncertainties /  |c Pierre Richard Dahoo, Philippe Pougnet, Abdelkhalak El Hami. 
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505 0 |a Nanometer Scale -- Statistical Tools to Reduce the Effect of Design Uncertainties -- Electromagnetic Waves and Their Applications -- Smart Materials -- Propagation of a Light Ray -- References -- Index -- Other titles from iSTE in Mechanical Engineering and Solid Mechanics. 
504 |a Includes bibliographical references and index. 
520 |a To develop innovations in quantum engineering and nanosystems, designers need to adopt the expertise that has been developed in research laboratories. This requires a thorough understanding of the experimental measurement techniques and theoretical models, based on the principles of quantum mechanics. This book presents experimental methods enabling the development and characterization of materials at the nanometer scale, based on practical engineering cases, such as 5G and the interference of polarized light when applied for electromagnetic waves. Using the example of electromechanical, multi-physical coupling in piezoelectric systems, smart materials technology is discussed, with an emphasis on scale reduction and mechanical engineering applications. Statistical analysis methods are presented in terms of their usefulness in systems engineering for experimentation, characterization or design, since safety factors and the most advanced reliability calculation techniques are included from the outset. This book provides valuable support for teachers and researchers but is also intended for engineering students, working engineers and Master's students. 
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