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4 produkter
4 produkter
108 kr
Skickas inom 5-8 vardagar
What is Nanotechnology and how will it affect us? Nanobots, nanoprobes, nanoswarms, nanogenes the list goes on. Nanotechnology is a staple of science fiction and has a rather chequered history when it comes to public perception: will swarms of sentient nanomachines ultimately take over the world or will nanotech give us nothing more than improved sun creams? As this Very Short Introduction shows, the science underpinning nanotechnology is equally as fascinating as the best nano-inspired sci-fi.In this book, Philip Moriarty introduces the key scientific themes and concepts underpinning the field, including interatomic and intermolecular forces, single atom imaging, quantum confinement, self-assembly, molecular machinery, and nanomagnetism. Moriarty includes results from ground-breaking scientific studies, such as scanning probe microscope images of atomic and molecular “landscapes”, providing visceral and intuitive insights into the nanoscopic world.ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
When the Uncertainty Principle Goes to 11
Or How to Explain Quantum Physics with Heavy Metal
Häftad, Engelska, 2018
175 kr
Skickas inom 7-10 vardagar
Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy
Proceedings from the AtMol Conference Series, Nottingham, UK, April 16-17, 2013
Inbunden, Engelska, 2015
1 585 kr
Skickas inom 10-15 vardagar
Imaging and Manipulation of Adsorbates using Dynamic Force Microscopy provides an overview of the latest developments in dynamic force microscopy (DFM) of atoms, molecules, and nanoparticles adsorbed on solid surfaces. Significant advances in the capabilities of this technique have been made in the last decade and this book represents a timely snapshot of the major research themes in the field, with a particular focus on the manipulation of matter at the atomic and (sub)molecular levels. This edited volume will be of keen interest to researchers active in nanoscience and its various sub-fields including, in particular, scanning probe microscopy. This book expands on the previous volumes in the series Advances in Atom and Single Molecule Machines. DFM is an exceptionally powerful tool for the imaging and probing of adsorbates on insulators and is now a component of the type of multiprobe interconnection systems described in Vol. 1 of the series. DFM can also be used to translate atoms and molecules in the context of the fabrication of the type of logic gates described in Vol. 2. When used in conjunction with STM, DFM also enables a detailed comparison of the chemical ‘architecture’ of a molecule with the spatial distribution of its orbital density, as described in Vol. 3. In this book readers will gain key insights into the current capabilities, and future potential, of dynamic force microscopy.
Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy
Proceedings from the AtMol Conference Series, Nottingham, UK, April 16-17, 2013
Häftad, Engelska, 2016
1 585 kr
Skickas inom 10-15 vardagar
Imaging and Manipulation of Adsorbates using Dynamic Force Microscopy provides an overview of the latest developments in dynamic force microscopy (DFM) of atoms, molecules, and nanoparticles adsorbed on solid surfaces. Significant advances in the capabilities of this technique have been made in the last decade and this book represents a timely snapshot of the major research themes in the field, with a particular focus on the manipulation of matter at the atomic and (sub)molecular levels. This edited volume will be of keen interest to researchers active in nanoscience and its various sub-fields including, in particular, scanning probe microscopy. This book expands on the previous volumes in the series Advances in Atom and Single Molecule Machines. DFM is an exceptionally powerful tool for the imaging and probing of adsorbates on insulators and is now a component of the type of multiprobe interconnection systems described in Vol. 1 of the series. DFM can also be used to translate atoms and molecules in the context of the fabrication of the type of logic gates described in Vol. 2. When used in conjunction with STM, DFM also enables a detailed comparison of the chemical ‘architecture’ of a molecule with the spatial distribution of its orbital density, as described in Vol. 3. In this book readers will gain key insights into the current capabilities, and future potential, of dynamic force microscopy.