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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 Introduction to Micro/Nanofabrication
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    Chapter 6 Stamping Techniques for Micro and Nanofabrication: Methods and Applications
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    Chapter 7 Materials Aspects of Micro- and Nanoelectromechanical Systems
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    Chapter 8 MEMS/NEMS Devices and Applications
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    Chapter 9 Microfluidics and Their Applications to Lab-on-a-Chip
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    Chapter 10 Therapeutic Nanodevices
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    Chapter 11 Scanning Probe Microscopy – Principle of Operation, Instrumentation, and Probes
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    Chapter 12 Probes in Scanning Microscopies
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    Chapter 13 Noncontact Atomic Force Microscopy and Its Related Topics
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    Chapter 14 Low Temperature Scanning Probe Microscopy
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    Chapter 15 Dynamic Force Microscopy
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    Chapter 16 Molecular Recognition Force Microscopy
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    Chapter 17 Micro/Nanotribology and Materials Characterization Studies Using Scanning Probe Microscopy
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    Chapter 18 Surface Forces and Nanorheology of Molecularly Thin Films
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    Chapter 19 Scanning Probe Studies of Nanoscale Adhesion Between Solids in the Presence of Liquids and Monolayer Films
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    Chapter 20 Friction and Wear on the Atomic Scale
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    Chapter 21 Nanoscale Mechanical Properties – Measuring Techniques and Applications
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    Chapter 22 Nanomechanical Properties of Solid Surfaces and Thin Films
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    Chapter 23 Atomistic Computer Simulations of Nanotribology
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    Chapter 24 Mechanics of Biological Nanotechnology
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    Chapter 25 Mechanical Properties of Nanostructures
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    Chapter 26 Nanotribology of Ultrathin and Hard Amorphous Carbon Films
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    Chapter 27 Self-Assembled Monolayers for Controlling Adhesion, Friction and Wear
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    Chapter 28 Nanoscale Boundary Lubrication Studies
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    Chapter 29 Kinetics and Energetics in Nanolubrication
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    Chapter 30 Nanotechnology for Data Storage Applications
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    Chapter 31 The “Millipede” – A Nanotechnology-Based AFM Data-Storage System
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    Chapter 32 Microactuators for Dual-Stage Servo Systems in Magnetic Disk Files
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    Chapter 33 Micro/Nanotribology of MEMS/NEMS Materials and Devices
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    Chapter 34 Mechanical Properties of Micromachined Structures
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    Chapter 35 Thermo- and Electromechanics of Thin-Film Microstructures
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    Chapter 36 High Volume Manufacturing and Field Stability of MEMS Products
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    Chapter 37 MEMS Packaging and Thermal Issues in Reliability
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    Chapter 38 Social and Ethical Implications of Nanotechnology
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