Composite Materials Engineering
Modeling and Technology
Herausgeber: Vakhrushev, Alexander V; Haghi, A K
Composite Materials Engineering
Modeling and Technology
Herausgeber: Vakhrushev, Alexander V; Haghi, A K
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This book provides a compilation of innovative fabrication strategies and utilization methodologies that are frequently adopted in the advanced composite materials community. It addresses developing appropriate composites to efficiently utilize macro- and nanoscale features.
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This book provides a compilation of innovative fabrication strategies and utilization methodologies that are frequently adopted in the advanced composite materials community. It addresses developing appropriate composites to efficiently utilize macro- and nanoscale features.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Apple Academic Press
- Seitenzahl: 236
- Erscheinungstermin: 13. Dezember 2021
- Englisch
- Abmessung: 229mm x 152mm x 13mm
- Gewicht: 322g
- ISBN-13: 9781774634721
- ISBN-10: 1774634724
- Artikelnr.: 62951628
- Verlag: Apple Academic Press
- Seitenzahl: 236
- Erscheinungstermin: 13. Dezember 2021
- Englisch
- Abmessung: 229mm x 152mm x 13mm
- Gewicht: 322g
- ISBN-13: 9781774634721
- ISBN-10: 1774634724
- Artikelnr.: 62951628
Alexander V. Vakhrushev, DSc, is a professor at the M.T. Kalashnikov Izhevsk State Technical University in Russia, where he teaches theory, calculating, and design of nano- and microsystems. He is also the Chief Researcher of the Department of Information-Measuring Systems of the Institute of Mechanics of the Ural Branch of the Russian Academy of Sciences and Head of the Department of Nanotechnology and Microsystems of Kalashnikov Izhevsk State Technical University. He has over 400 publications to his name, including monographs, articles, reports, reviews, and patents. He has received several awards, including an Academician A. F. Sidorov Prize from the Ural Division of the Russian Academy of Sciences and Honorable Scientist of the Udmurt Republic. A. K. Haghi, PhD, is the author and editor of 165 books as well as of 1000 published papers in various journals and conference proceedings. Dr. Haghi has received several grants, consulted for a number of major corporations, and is a frequent speaker to national and international audiences. Since 1983, he served as professor at several universities. He is currently Editor-in-Chief of the International Journal of Chemoinformatics and Chemical Engineering and the Polymers Research Journal and is on the editorial boards of many international journals. He is also a member of the Canadian Research and Development Center of Sciences and Cultures (CRDCSC), Montreal, Quebec, Canada.
1. Conformational Analysis of Ag-Au Nanoalloy Clusters: A CDFT Approach 2.
Methods for Nanostructures' Mechanical Properties Determination 3.
Multilevel Computer Simulation: Basic Tool of Nanotechnology Simulations
for "Production 4.0" Revolution 4. On Strengthening of Epoxy-Composites by
Filling with Microdispersions of SiC, TiN, and Cement 5. Some Innovative,
Results-Oriented Scientific Research That Lead to Development in the Field
of Inorganic Polymer Science 6. Nanocomposites for Enviromental Protection:
Technological Vision and the Next-Generation Environmental Engineering
Technique 7. Transport Coefficients in Multicomponent Systems: Mutual
Diffusion, Self-Diffusion, and Tracer Diffusion 8. Condensed Phosphates as
Inorganic Polymers and Various Domains of Their Applications 9. Quantum
Molecular Spintronics, Nanoscience, and Graphenes 10. Characterization
Techniques for Polymers and Polymer Nanocomposites 11. Mechanisms of Action
of Multifunctional Media Submitted by Nano- and Ultrafine Iodine Compounds
on Pathogens of Bacterial and Fungium Etiology 12. Methods of Obtaining and
Application of Graphene
Methods for Nanostructures' Mechanical Properties Determination 3.
Multilevel Computer Simulation: Basic Tool of Nanotechnology Simulations
for "Production 4.0" Revolution 4. On Strengthening of Epoxy-Composites by
Filling with Microdispersions of SiC, TiN, and Cement 5. Some Innovative,
Results-Oriented Scientific Research That Lead to Development in the Field
of Inorganic Polymer Science 6. Nanocomposites for Enviromental Protection:
Technological Vision and the Next-Generation Environmental Engineering
Technique 7. Transport Coefficients in Multicomponent Systems: Mutual
Diffusion, Self-Diffusion, and Tracer Diffusion 8. Condensed Phosphates as
Inorganic Polymers and Various Domains of Their Applications 9. Quantum
Molecular Spintronics, Nanoscience, and Graphenes 10. Characterization
Techniques for Polymers and Polymer Nanocomposites 11. Mechanisms of Action
of Multifunctional Media Submitted by Nano- and Ultrafine Iodine Compounds
on Pathogens of Bacterial and Fungium Etiology 12. Methods of Obtaining and
Application of Graphene
1. Conformational Analysis of Ag-Au Nanoalloy Clusters: A CDFT Approach 2.
Methods for Nanostructures' Mechanical Properties Determination 3.
Multilevel Computer Simulation: Basic Tool of Nanotechnology Simulations
for "Production 4.0" Revolution 4. On Strengthening of Epoxy-Composites by
Filling with Microdispersions of SiC, TiN, and Cement 5. Some Innovative,
Results-Oriented Scientific Research That Lead to Development in the Field
of Inorganic Polymer Science 6. Nanocomposites for Enviromental Protection:
Technological Vision and the Next-Generation Environmental Engineering
Technique 7. Transport Coefficients in Multicomponent Systems: Mutual
Diffusion, Self-Diffusion, and Tracer Diffusion 8. Condensed Phosphates as
Inorganic Polymers and Various Domains of Their Applications 9. Quantum
Molecular Spintronics, Nanoscience, and Graphenes 10. Characterization
Techniques for Polymers and Polymer Nanocomposites 11. Mechanisms of Action
of Multifunctional Media Submitted by Nano- and Ultrafine Iodine Compounds
on Pathogens of Bacterial and Fungium Etiology 12. Methods of Obtaining and
Application of Graphene
Methods for Nanostructures' Mechanical Properties Determination 3.
Multilevel Computer Simulation: Basic Tool of Nanotechnology Simulations
for "Production 4.0" Revolution 4. On Strengthening of Epoxy-Composites by
Filling with Microdispersions of SiC, TiN, and Cement 5. Some Innovative,
Results-Oriented Scientific Research That Lead to Development in the Field
of Inorganic Polymer Science 6. Nanocomposites for Enviromental Protection:
Technological Vision and the Next-Generation Environmental Engineering
Technique 7. Transport Coefficients in Multicomponent Systems: Mutual
Diffusion, Self-Diffusion, and Tracer Diffusion 8. Condensed Phosphates as
Inorganic Polymers and Various Domains of Their Applications 9. Quantum
Molecular Spintronics, Nanoscience, and Graphenes 10. Characterization
Techniques for Polymers and Polymer Nanocomposites 11. Mechanisms of Action
of Multifunctional Media Submitted by Nano- and Ultrafine Iodine Compounds
on Pathogens of Bacterial and Fungium Etiology 12. Methods of Obtaining and
Application of Graphene