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Springer Handbook of Nanotechnology

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Cover of 'Springer Handbook of Nanotechnology'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction to Nanotechnology
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    Chapter 2 Nanomaterials Synthesis and Applications: Molecule-Based Devices
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    Chapter 3 Introduction to Carbon Nanotubes
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    Chapter 4 Nanowires
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    Chapter 5 Template-Based Synthesis of Nanorod or Nanowire Arrays
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    Chapter 6 Templated Self-Assembly of Particles
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    Chapter 7 Three-Dimensional Nanostructure Fabrication by Focused Ion Beam Chemical Vapor Deposition
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    Chapter 8 Introduction to Micro-/Nanofabrication
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    Chapter 9 Nanoimprint Lithography – Patterning of Resists Using Molding
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    Chapter 10 Stamping Techniques for Micro- and Nanofabrication
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    Chapter 11 Material Aspects of Micro- and Nanoelectromechanical Systems
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    Chapter 12 MEMS/NEMS Devices and Applications
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    Chapter 13 Next-Generation DNA Hybridization and Self-Assembly Nanofabrication Devices
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    Chapter 14 Single-Walled Carbon Nanotube Sensor Concepts
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    Chapter 15 Nanomechanical Cantilever Array Sensors
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    Chapter 16 Biological Molecules in Therapeutic Nanodevices
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    Chapter 17 G-Protein Coupled Receptors: Progress in Surface Display and Biosensor Technology
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    Chapter 18 Microfluidic Devices and Their Applications to Lab-on-a-Chip
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    Chapter 19 Centrifuge-Based Fluidic Platforms
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    Chapter 20 Micro-/Nanodroplets in Microfluidic Devices
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    Chapter 21 Scanning Probe Microscopy – Principle of Operation, Instrumentation, and Probes
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    Chapter 22 General and Special Probes in Scanning Microscopies
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    Chapter 23 Noncontact Atomic Force Microscopy and Related Topics
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    Chapter 24 Low-Temperature Scanning Probe Microscopy
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    Chapter 25 Higher Harmonics and Time-Varying Forces in Dynamic Force Microscopy
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    Chapter 26 Dynamic Modes of Atomic Force Microscopy
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    Chapter 27 Molecular Recognition Force Microscopy: From Molecular Bonds to Complex Energy Landscapes
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    Chapter 28 Nanotribology, Nanomechanics, and Materials Characterization
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    Chapter 29 Surface Forces and Nanorheology of Molecularly Thin Films
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    Chapter 30 Friction and Wear on the Atomic Scale
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    Chapter 31 Computer Simulations of Nanometer-Scale Indentation and Friction
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    Chapter 32 Force Measurements with Optical Tweezers
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    Chapter 33 Scale Effect in Mechanical Properties and Tribology
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    Chapter 34 Structural, Nanomechanical, and Nanotribological Characterization of Human Hair Using Atomic Force Microscopy and Nanoindentation
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    Chapter 35 Cellular Nanomechanics
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    Chapter 36 Optical Cell Manipulation
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    Chapter 37 Mechanical Properties of Nanostructures
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    Chapter 38 Nanotribology of Ultrathin and Hard Amorphous Carbon Films
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    Chapter 39 Self-Assembled Monolayers for Nanotribology and Surface Protection
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    Chapter 40 Nanoscale Boundary Lubrication Studies
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    Chapter 41 Multifunctional Plant Surfaces and Smart Materials
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    Chapter 42 Lotus Effect: Surfaces with Roughness-Induced Superhydrophobicity, Self-Cleaning, and Low Adhesion
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    Chapter 43 Biological and Biologically Inspired Attachment Systems
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    Chapter 44 Gecko Feet: Natural Hairy Attachment Systems for Smart Adhesion
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    Chapter 45 Springer Handbook of Nanotechnology
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    Chapter 46 Nanorobotics
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    Chapter 47 MEMS/NEMS and BioMEMS/BioNEMS: Materials, Devices, and Biomimetics
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    Chapter 48 Friction and Wear in Micro- and Nanomachines
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    Chapter 49 Failure Mechanisms in MEMS/NEMS Devices
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    Chapter 50 Mechanical Properties of Micromachined Structures
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    Chapter 51 High-Volume Manufacturing and Field Stability of MEMS Products
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    Chapter 52 Packaging and Reliability Issues in Micro-/Nanosystems
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    Chapter 53 Governing Nanotechnology: Social, Ethical and Human Issues
Overall attention for this book and its chapters
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Mentioned by

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2 news outlets
blogs
1 blog
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2 tweeters
wikipedia
1 Wikipedia page

Citations

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379 Dimensions

Readers on

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712 Mendeley
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1 CiteULike
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Title
Springer Handbook of Nanotechnology
Published by
Springer-Verlag Berlin Heidelberg, January 2010
DOI 10.1007/978-3-642-02525-9
ISBNs
978-3-64-202524-2, 978-3-64-202525-9
Editors

Bharat Bhushan

Twitter Demographics

The data shown below were collected from the profiles of 2 tweeters who shared this research output. Click here to find out more about how the information was compiled.

Mendeley readers

The data shown below were compiled from readership statistics for 712 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
India 3 <1%
Spain 2 <1%
Mexico 1 <1%
Malaysia 1 <1%
Iran, Islamic Republic of 1 <1%
Vietnam 1 <1%
Argentina 1 <1%
Belgium 1 <1%
Korea, Republic of 1 <1%
Other 2 <1%
Unknown 698 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 56 8%
Researcher 37 5%
Student > Master 19 3%
Professor > Associate Professor 11 2%
Student > Doctoral Student 11 2%
Other 27 4%
Unknown 551 77%
Readers by discipline Count As %
Engineering 50 7%
Materials Science 32 4%
Physics and Astronomy 29 4%
Chemistry 17 2%
Agricultural and Biological Sciences 10 1%
Other 19 3%
Unknown 555 78%