Handbook of Micromechanics and Nanomechanics / edited by S. Li , X-L. Gao

Вторичный автор-лицо: Li, S., Shaofan, 340;Gao, X-L., Xin-Lin, 340Язык: английский.Страна: .Публикация: : Pan Stanford Publishing, 2013Описание: 1238 p. : il.ISBN: 9789814411233; 978-981-4411-24-0.Резюме или реферат: This book presents the latest developments in micromechanics and nanomechanics and their applications. Particularly, it focuses on some recent applications and impact areas of micromechanics and nanomechanics that have not been discussed in traditional books on this subject. The text covers analytical, experimental, and computational and numerical approaches in depth. It presents some latest research developments systematically disseminated in the form of a review volume. The book explores the connection between micromechanics and nanomechanics and does not treat them as separate scientific subjects. Readers can therefore see and understand the underlying physics from a far broader perspective than the traditional engineering mechanics approach can provide..Примечания о наличии в документе библиографии/указателя: Index: p. 1197-1206..Наименование темы как предмет: Микромеханика | Микромеханические приборы Тематика: наномеханика | наномеханизмы | наномеханические свойства | инженерная механика | справочники | английский язык
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Index: p. 1197-1206.

This book presents the latest developments in micromechanics and nanomechanics and their applications. Particularly, it focuses on some recent applications and impact areas of micromechanics and nanomechanics that have not been discussed in traditional books on this subject. The text covers analytical, experimental, and computational and numerical approaches in depth. It presents some latest research developments systematically disseminated in the form of a review volume. The book explores the connection between micromechanics and nanomechanics and does not treat them as separate scientific subjects. Readers can therefore see and understand the underlying physics from a far broader perspective than the traditional engineering mechanics approach can provide.

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