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- [[Category:Nanoelectronics]] ...4 KB (451 words) - 16:40, 12 February 2025
- ...gle-walled carbon nanotubes]] in the fields of [[quantum mechanics]] and [[nanoelectronics]], have the ability to conduct electricity. This conduction can be [[Ballis [[Category:Nanoelectronics]] ...11 KB (1,735 words) - 15:35, 20 February 2024
- [[Category:Nanoelectronics]] ...6 KB (972 words) - 10:07, 29 January 2025
- ...theoretical physicist. He is the director of the Institute of Theoretical Nanoelectronics at the Peter Grünberg Institute at the [[Forschungszentrum Jülich]] and pro ...6 KB (771 words) - 04:24, 31 July 2024
- [[Category:Nanoelectronics]] ...7 KB (993 words) - 11:46, 3 April 2024
- [[Category:Nanoelectronics]] ...8 KB (1,192 words) - 23:56, 2 January 2023
- ...ast8=Trifonov|first8=A. S.|title=Molecular clusters as building blocks for nanoelectronics: the first demonstration of a cluster single-electron tunnelling transistor [[Category:Nanoelectronics]] ...21 KB (3,476 words) - 03:12, 14 September 2024
- * Iniewski, Krzysztof, ''CMOS Nanoelectronics: Analog and RF VLSI Circuits'', McGraw Hill Professional, 2011 {{ISBN|00717 ...14 KB (2,120 words) - 02:00, 19 March 2024
- ...ed materials can also be classed according to their functions, for example nanoelectronics and information technology (IT). Lateral dimensions used in information sto ...hey may, therefore, find application as a means to novel nanomaterials and nanoelectronics device structures.<ref name="ReferenceB"/> ...49 KB (6,713 words) - 09:04, 6 June 2024
- ...ial Graphite: 2D Electron Gas Properties and a Route toward Graphene-based Nanoelectronics|year=2004|journal=The Journal of Physical Chemistry B|volume=108|pages=1991 ...25 KB (3,644 words) - 19:41, 18 February 2025
- ...Proceedings'', Vol. 931 ("Frontiers of Characterization and Metrology for Nanoelectronics: 2007"), edited by D.G. Seiler et al., pp. 64-68 (AIP, Melville, NY, 2007). ...27 KB (3,567 words) - 13:45, 22 August 2024
- [[Category:Nanoelectronics]] ...29 KB (4,089 words) - 22:13, 23 July 2024
- [[Thin films]] are prevalent in the micro and nanoelectronics industry for the fabrication of sensors, actuators and transistors; thus, t ...30 KB (4,455 words) - 18:57, 7 September 2024
- [[Category:Nanoelectronics]] ...31 KB (4,635 words) - 10:15, 26 February 2025
- [[Category:Nanoelectronics]] ...31 KB (4,629 words) - 19:49, 26 April 2024
- ...of sub-nanometer probe tips exist in the fields of [[nanolithography]], [[nanoelectronics]], [[biosensor]], [[electrochemistry]], [[semiconductor]], [[Surface microm |Nanoelectronics, bond strength in biomolecules ...72 KB (10,204 words) - 14:26, 17 August 2024
- * [[Nanoelectronics]] ...39 KB (5,317 words) - 06:48, 16 April 2024
- [[Category:Nanoelectronics]] ...51 KB (7,040 words) - 07:57, 3 January 2025
- ...ocessor-memory+performance+gap&pg=PA790 |access-date=March 31, 2014 |title=Nanoelectronics and Information Technology |author=Rainer Waser |publisher=John Wiley & Son ...58 KB (8,028 words) - 07:06, 15 February 2025
- ...AM memories via CAFM.|323x323px]]CAFM was initially used in the field of [[nanoelectronics]] to monitor the electrical properties of thin dielectrics with very high l ...49 KB (7,183 words) - 16:18, 28 February 2025