Nanoelectronics
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Home > Art, Film & Photography > Nanoelectronics: Ballistic Conduction, Ballistic Conduction in Single-Walled Carbon Nanotubes, Bloch-Gruneisen Temperature, Break Junct
Nanoelectronics: Ballistic Conduction, Ballistic Conduction in Single-Walled Carbon Nanotubes, Bloch-Gruneisen Temperature, Break Junct

Nanoelectronics: Ballistic Conduction, Ballistic Conduction in Single-Walled Carbon Nanotubes, Bloch-Gruneisen Temperature, Break Junct


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About the Book

Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 44. Chapters: Ballistic conduction, Ballistic Conduction in Single-Walled Carbon Nanotubes, Bloch-Gruneisen temperature, Break junction, Deep-sub-voltage nanoelectronics, Fermi point, Functional Engineered Nano Architectonics, Hydrogen sensor, Ignition Park, Landauer formula, MEMS thermal actuator, Molecular electronics, Molecular logic gate, Molecular memory, Molecular processors, Nanobatteries, Nanocircuitry, Nanocomputer, Nanoelectrode, Nanoelectromechanical system, Nanofluidic circuitry, Nanoionics, Nanoionic device, Nanoionic supercapacitor, Nanomotor, Nanophotonics, Nanoradio, Nanotube nanomotor, Nanowire, Nanowire battery, Niemeyer-Dolan technique, Patterning by etching at the nanoscale, Quantum point contact, Quantum wire, Rotaxane, Spark Suit, Spinmechatronics, Supramolecular electronics, Trojan wave packet, Ultraperformance Nanophotonic Intrachip Communications, Western Institute of Nanoelectronics, Zinc oxide nanorod sensor. Excerpt: A device generating linear or rotational motion using carbon nanotube(s) as the primary component, is termed a nanotube nanomotor. Nature already has some of the most efficient and powerful kinds of nanomotors. Some of these natural biological nanomotors have been re-engineered to serve desired purposes. However, such biological nanomotors are designed to work in specific environmental conditions (pH, liquid medium, sources of energy, etc.). Laboratory-made nanotube nanomotors on the other hand are significantly more robust and can operate in diverse environments including varied frequency, temperature, mediums and chemical environments. The vast differences in the dominant forces and criteria between macroscale and micro/nanoscale offer new avenues to construct tailor-made nanomotors. The various beneficial properties of carbon nanotubes makes them the most attractive material to base...


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Product Details
  • ISBN-13: 9781230603261
  • Publisher: University-Press.Org
  • Publisher Imprint: University-Press.Org
  • Height: 246 mm
  • No of Pages: 92
  • Spine Width: 5 mm
  • Weight: 181 gr
  • ISBN-10: 1230603263
  • Publisher Date: 22 May 2014
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Sub Title: Ballistic Conduction, Ballistic Conduction in Single-Walled Carbon Nanotubes, Bloch-Gruneisen Temperature, Break Junct
  • Width: 189 mm


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