CHF 189.00

Multiscale Dissipative Mechanisms and Hierarchical Surfaces
Friction, Superhydrophobicity, and Biomimetics

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

Multiscale Dissipative Mechanisms and Hierarchical Surfaces covers the rapidly developing topics of hierarchical surfaces, roughness-induced superhydrophobicity and biomimetic surfaces. The research in these topics has been progressing rapidly in the recent years due to the advances in the nanosciences and surfaces science and due to potential applications in nanotechnology. The first in its field, this monograph provides a comprehensive review of these subjects and presents the background introduction as well as recent and new results in the area.

Info autore

Dr. Bharat Bhushan received an M.S. in mechanical engineering from the Massachusetts Institute of Technology in 1971, an M.S. in mechanics and a Ph.D. in mechanical engineering from the University of Colorado at Boulder in 1973 and 1976, respectively, an MBA from Rensselaer Polytechnic Institute at Troy, NY in 1980, Doctor Technicae from the University of Trondheim at Trondheim, Norway in 1990, a Doctor of Technical Sciences from the Warsaw University of Technology at Warsaw, Poland in 1996, and Doctor Honoris Causa from the Metal-Polymer Research Institute of National Academy of Sciences at Gomel, Belarus in 2000. He is a registered professional engineer (mechanical) and presently an Ohio Eminent Scholar and The Howard D. Winbigler Professor in the Department of Mechanical Engineering, Graduate Research Faculty Advisor in the Department of Materials Science and Engineering, and the Director of the Nanotribology Laboratory for Information Storage & MEMS/NEMS (NLIM) at the Ohio State University, Columbus, Ohio. He is an internationally recognized expert of tribology on the macro- to nanoscales, and is one of the most prolific authors in the field. He is considered by some a pioneer of the tribology and mechanics of magnetic storage devices and a leading researcher in the fields of nanotribology and nanomechanics using scanning probe microscopy and applications to micro/nanotechnology.

Riassunto

Multiscale Dissipative Mechanisms and Hierarchical Surfaces covers the rapidly developing topics of hierarchical surfaces, roughness-induced superhydrophobicity and biomimetic surfaces. The research in these topics has been progressing rapidly in the recent years due to the advances in the nanosciences and surfaces science and due to potential applications in nanotechnology. The first in its field, this monograph provides a comprehensive review of these subjects and presents the background introduction as well as recent and new results in the area.

Dettagli sul prodotto

Autori Michael Nosonovsky, Bharat Bhushan, Michae Nosonovsky
Editore Springer, Berlin
 
Lingue Inglese
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 14.07.2008
Categoria Scienze naturali, medicina, informatica, tecnica > Tecnica > Tematiche generali, enciclopedie
 
EAN 9783540784241
ISBN 978-3-540-78424-1
Numero di pagine 278
Illustrazioni XVIII, 278 p. 112 illus.
Dimensioni (della confezione) 15.5 x 1.9 x 23.5 cm
Peso (della confezione) 538 g
 
Serie NanoScience and Technology
NanoScience and Technology
Categorie B, biotechnology, Chemistry and Materials Science, Nanotechnology, Materials science, Materials—Surfaces, Surface chemistry & adsorption, Thin films, Surfaces and Interfaces, Thin Films, Surfaces, Interfaces and Thin Film, Biomaterials, Microsystems and MEMS, Nanotechnology and Microengineering, Coatings, Corrosion and anti-corrosives, Tribology, Corrosion and Coatings, Tribology, Tribology (friction & lubrication)
 

Recensioni dei clienti

Per questo articolo non c'è ancora nessuna recensione. Scrivi la prima recensione e aiuta gli altri utenti a scegliere.

Scrivi una recensione

Top o flop? Scrivi la tua recensione.

Per i messaggi a CeDe.ch si prega di utilizzare il modulo di contatto.

I campi contrassegnati da * sono obbligatori.

Inviando questo modulo si accetta la nostra dichiarazione protezione dati.