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Titlebook: Nanoscience; The Science of the S Hans-Eckhardt Schaefer Textbook 2010 Springer-Verlag Berlin Heidelberg 2010 Fulleren.Fullerene.Nanomateri

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Nanotechnology for Computers , Memories , and Hard Disks, as transistors, or of data bits in storage media are governed by the principles of physics, chemistry, and materials science on the nanoscale. On the other hand, the nanotechnical semiconductor industry with its current revenues of ∼200 billion US $ annually [9.1] is presumably the largest economic factor where nanotechnology plays a central role.
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,Microscopy – Nanoscopy,agnetic imaging [2.10] (see also Sect. 8.1). In electron microscopy, which has been invented nearly 80 years ago [2.11], substantial progress toward subatomic resolution and accuracy has been achieved by aberration correction designs [2.12–2.14]. The rapid development of x-ray microscopy [2.15] was
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Nanocrystalline Materials,s in the field of nanocrystalline solids will be reviewed, including aspects such as atomic simulation, structure of interfaces, plasticity, strength, superplasticity, fatigue, composites, ceramics, diffusion, and surface-induced manipulation of the properties of nanomaterials.
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Nanomedicine,chnology and cognitive science, leading to completely new science and technology platforms such as those for genome pharmaceutics, biosystems on a chip, regenerative medicine, and neuroscience [12.5].
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s and medicine.Presents safety issues as an outgrowth of res.In spite of the potential use of nanomaterials as tissue engineering devices, implants, biosensors, drug delivery devices, etc., there has yet to be a compilation of the risks associated with the .in vivo. use of nanomaterials. There are n
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