Nanocantilever Beams: Modeling, Fabrication, and Applications

Author:   Ioana Voiculescu (City College of New York, New York, USA) ,  Mona Zaghloul (George Washington University, Washington, DC, USA)
Publisher:   Pan Stanford Publishing Pte Ltd
ISBN:  

9789814613231


Pages:   544
Publication Date:   12 January 2016
Format:   Hardback
Availability:   In Print   Availability explained
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Nanocantilever Beams: Modeling, Fabrication, and Applications


Overview

This book focuses on the fabrication and applications of cantilever beams with nanoscale dimensions. Nanometer-size mechanical structures show exceptional properties generated by their reduced dimensions. These properties enable new sensing concepts and transduction mechanisms that will allow the enhancement of the performance of devices to their fundamental limits. A number of scientists are conducting research in the area of nanocantilever beams. The book will particularly benefit researchers and help them consolidate their background in the field. The book aims to be an excellent scientific reference for an audience with diverse backgrounds and interests, including students, academic researchers, industry specialists, policymakers, and enthusiasts.

Full Product Details

Author:   Ioana Voiculescu (City College of New York, New York, USA) ,  Mona Zaghloul (George Washington University, Washington, DC, USA)
Publisher:   Pan Stanford Publishing Pte Ltd
Imprint:   Pan Stanford Publishing Pte Ltd
Dimensions:   Width: 15.20cm , Height: 3.30cm , Length: 22.90cm
Weight:   0.896kg
ISBN:  

9789814613231


ISBN 10:   9814613231
Pages:   544
Publication Date:   12 January 2016
Audience:   College/higher education ,  Professional and scholarly ,  Tertiary & Higher Education ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Reviews

"""Nanocantilever Beams: Modeling, Fabrication, and Applications presents a review of the state of the art in the nanocantilever beam technology. Owing to their high sensitivity and versatility in transduction methods, nanocantilever beams have been widely studied and applied for the detection of physical, chemical, and biological events. This book is an excellent scientific reference for practicing engineers, students, and researchers in mechanical, electrical, civil, and aerospace engineering as well as materials science. It contains 16 chapters that offer a broad range of information, including theory, design, fabrication, and applications, on diverse nanostructures such as nanocantilever beam, nanobridge, and nanomembane structures. The text also provides an important discussion and perspective on sensing applications in air, liquid, and vacuum. It is important in the field, particularly because there is currently no other book with similar topics focused on nanocantilever beams."" —Prof. Jie (Jayne) Wu, University of Tennessee, USA"


Nanocantilever Beams: Modeling, Fabrication, and Applications presents a review of the state of the art in the nanocantilever beam technology. Owing to their high sensitivity and versatility in transduction methods, nanocantilever beams have been widely studied and applied for the detection of physical, chemical, and biological events. This book is an excellent scientific reference for practicing engineers, students, and researchers in mechanical, electrical, civil, and aerospace engineering as well as materials science. It contains 16 chapters that offer a broad range of information, including theory, design, fabrication, and applications, on diverse nanostructures such as nanocantilever beam, nanobridge, and nanomembane structures. The text also provides an important discussion and perspective on sensing applications in air, liquid, and vacuum. It is important in the field, particularly because there is currently no other book with similar topics focused on nanocantilever beams. -Prof. Jie (Jayne) Wu, University of Tennessee, USA


Author Information

Mona E. Zaghloul is professor of electrical and computer engineering at the George Washington University, Washington, DC, where she is also director of the Institute of MEMS and VLSI Technologies. She received her PhD in electrical engineering from the University of Waterloo, Waterloo, Canada, in 1975. Prof. Zaghloul received the 50th Gold Jubilee Medal from the IEEE Circuits and Systems Society in recognition for her outstanding contribution to society. She was vice president of the IEEE-CAS Technical Activities (1999–2001) and president of the IEEE Sensors Council for 2008 and 2009. She is a Fellow of the IEEE. Ioana Voiculescu is associate professor in the Mechanical Engineering Department, City College of New York, New York. She received her PhD in mechanical engineering from the Technical University ""Politehnica,"" Timisoara, Romania, and her ScD in mechanical engineering from the George Washington University, Washington, DC, in 2005. Since 2002, Dr. Voiculescu is a member of the American Society of Mechanical Engineers and the Institute of Electrical and Electronics Engineers. She also has two patents in her name.

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