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Thermal Energy at the Nanoscale
Papers | 31 Jan 2022 | Contributor(s):: Timothy S Fisher
These lecture notes provide a detailed treatment of the thermal energy storage and transport by conduction in natural and fabricated structures.
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In which program i should do a simulation of signal attenuation in optical fiber
Q&A|Closed | Responses: 0
I need to choose specific fiber and make simulation of attenuation causes by different causes such as Rayleigh scattering,waveguide imperfections, material apsorption etc. If anyone has an...
https://nanohub.org/answers/question/1575
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[Illinois] MCB 493 Lecture 8: Information Transmission and Unsupervised Learning
Online Presentations | 29 Oct 2013 | Contributor(s):: Thomas J. Anastasio
Unsupervised learning algorithms can train neural networks to increase the amount of information they contain about their inputs and simulate the properties of sensory neurons.
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ECE 656 Lecture 12: Scattering and Transmission
Online Presentations | 30 Sep 2011 | Contributor(s):: Mark Lundstrom
Outline:IntroductionPhysics of carrier scatteringTransmission and mfpMFP and scatteringDiscussionSummary
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ECE 656 Lecture 5: Modes and Transmission
Online Presentations | 16 Sep 2011 | Contributor(s):: Mark Lundstrom
Outline:ModesTransmissionDiscussionSummary
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Piece-Wise Constant Potential Barriers Tool Learning Materials
Wiki
By completing the Piece-Wise Constant Potential Barriers Tool Lab (PCPBT Lab) in ABACUS - Assembly of Basic Applications for Coordinated Understanding of Semiconductors, users will be able to...
https://nanohub.org/wiki/PCPBTPage
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Nanoelectronic Modeling Lecture 35: Alloy Disorder in Nanowires
Online Presentations | 05 Aug 2010 | Contributor(s):: Gerhard Klimeck, Timothy Boykin, Neerav Kharche, Mathieu Luisier, Neophytos Neophytou
This presentation discusses the consequences of Alloy Disorder in unstrained strained AlGaAs nanowiresRelationship between dispersion relationship and transmission in perfectly ordered wiresBand folding in Si nanowiresTranmisison in disordered wires – relationship to an approximate...