Zobrazeno 1 - 10
of 36
pro vyhledávání: '"Deep Kamal Kaur, Randhawa"'
Publikováno v:
Silicon. 14:2127-2134
Almost 50% of random logic power is consumed in System-on-chip (SOC) by the memory latch circuits. VLSI designers of high performance SOC are struggling to realise a performance rich and energy efficient design method. A number of power optimisation
Publikováno v:
Journal of Computational Electronics. 20:735-744
Advancements in adiabatic quantum computing have enabled a rapid development in thermodynamically reversible logic circuits, which can reduce energy wastage to almost negligible levels. Various reversible logic gates using silicene-based multiplexer
Publikováno v:
Journal of Molecular Modeling. 27
Reviewing a subject is done to provide an insight into theoretical and conceptual background of the study. Looking back into the history of an emerging field and summarizing it in a few pages is a herculean task. Anyway, it was imperative to write a
Autor:
Gurleen Kaur Walia, B. C. Choudhary, Tarun Tarun, Harmandar Kaur, Paramjot Singh, Deep Kamal Kaur Randhawa
Publikováno v:
Journal of Molecular Modeling. 27
Density functional theory-based first-principles investigation is performed on pristine and mono vacancy induced GaAs nanoribbons to detect the presence of three volatile organic compounds (VOCs), aniline, isoprene and o-toluidine, which will aid in
Autor:
Parulpreet Singh, Gurleen Kaur Walia, Kanwalpreet Singh, Deep Kamal Kaur Randhawa, Harmandar Kaur
Publikováno v:
Intelligent Circuits and Systems ISBN: 9781003129103
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::6fb2ffbe3598bafbfc5e8f71b5517894
https://doi.org/10.1201/9781003129103-25
https://doi.org/10.1201/9781003129103-25
Publikováno v:
Materials Today: Proceedings. 28:1985-1989
Nerve gases are dangerous agents of chemical warfare and mass destruction which can cause irreversible damage to the nervous system within seconds and are fatal if exposure occurs for even a few minutes. The nerve gases or agents were developed durin
Publikováno v:
Journal of Materials Research. 34:3946-3953
In this article, the strain-dependent thermoelectric performance of circular porous armchair silicene nanoribbons (ASiNRs) under uniaxial tension and compression is computed by means of a semiempirical approach in combination with nonequilibrium Gree
Publikováno v:
Asian Journal of Engineering and Applied Technology. 8:25-31
In this paper, thermoelectric properties of porous armchair silicene nanoribbons (ASiNRs) have been investigated as a function of pore shape, position and passivation using the Non-equilibrium Green’s function (NEGF) method and Extended Huckel Tech
Publikováno v:
Journal of Computational Electronics. 19:387-395
One-atom-thick silicene sheets exhibit excellent electronic characteristics that can enable next-generation intelligent and miniaturized integrated circuits. Recent developments in electrostatic doping processes have shown that it is possible to desi
Publikováno v:
Asian Journal of Electrical Sciences. 8:42-49
Since the limits of conventional sources of energy are rapidly approaching, the thermoelectric devices have attracted attention for their potential of power generation directly from waste heat. In this paper, thermoelectric properties of porous armch