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Homework 1 - PN Junction Modeling
Teaching Materials | 10 Sep 2024 | Contributor(s):: Dragica Vasileska
The objective of this assignment is, thus, to provide: (1) understanding of the benefits and the limitations of the depletion-charge approximation via numerical equilibrium simulations (no applied bias) and solving only the 1D Poisson equation from the DD model....
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How Catalysts Work - A Nanoscale Phenomenon
Teaching Materials | 13 Jan 2020 | Contributor(s):: Manueal Casillas, NNCI Nano
This activity helps students understand how catalysts work on the nanoscale. Catalyst are more efficient when on the nanoscale because of the large amount of surface area in comparison to volume. This is a great way to introduce or review reactants, catalysts, and adsorption, desorption, and...
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Illinois ECE 440 Solid State Electronic Devices, Lecture 13: Diffusion
Online Presentations | 02 Oct 2009 | Contributor(s):: Eric Pop
ECE 440: Lecture 13Diffusion Current
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Illinois ECE 440 Solid State Electronic Devices, Lecture 14-15: Diffusion with Recombination
Online Presentations | 08 Oct 2009 | Contributor(s):: Eric Pop
•Diffusion with recombination•The diffusion length (distance until they recombine)
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Illinois ECE 440 Solid State Electronic Devices, Lecture 16-17: Diffusion
Online Presentations | 22 Oct 2009 | Contributor(s):: Eric Pop
So far:•Energy bands, Doping, Fermi levels•Drift (~n*v), diffusion (~dn/dx)•Einstein relationship (D/μ = kT/q)•“Boring” semiconductor resistors (either n- or p-type)•Majority/minority carriers with illuminationToday, our first “useful” device:•The P-N junction diode in equilibrium (external...
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Illinois ECE 440: Diffusion and Energy Band Diagram Homework
Teaching Materials | 28 Jan 2010 | Contributor(s):: Mohamed Mohamed
This homework covers Diffusion of Carriers, Built-in Fields and Metal semiconductor junctions.
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Illinois MATSE 280 Introduction to Engineering Materials, Lecture 3 Part 4: Structures via Diffusion
Online Presentations | 28 Sep 2008 | Contributor(s):: Duane Douglas Johnson, Omar N Sobh
Structures via DiffractionGoals Define basic ideas of diffraction (using x-ray, electrons, or neutrons, which, although they are particles, they can behave as waves) and show how to determine: Crystal Structure Miller Index Planes and Determine the Structure Identify cell symmetry Learning...
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Illinois MATSE 280 Introduction to Engineering Materials, Lecture 6: Diffusion in Solids
Online Presentations | 19 Nov 2008 | Contributor(s):: Duane Douglas Johnson, Omar N Sobh
Diffusion in SolidsISSUES TO ADDRESS... How does diffusion occur? How can the rate of diffusion be predicted forsome simple cases? How does diffusion depend on structure and temperatureContent Diffusion- Steady and Non-Steady State Simple Diffusion Inter-diffusion Self-diffusion...
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Iron Oxidation
Teaching Materials | 18 Aug 2019 | Contributor(s):: Adam Powell
During iron oxidation, calculate the oxide layer thickness over time, and compare to the case with 1% titanium added.
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Jeff Salzmann
https://nanohub.org/members/157916
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Lecture 17: Diffusion - Part 1
Online Presentations | 15 Apr 2008 | Contributor(s):: Paul R Selvin
Diffusion, Directed motors, Thermal motion, nerve synapse, Efficiency of Diffusion
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Lecture 20: Diffusion - Part2
Online Presentations | 23 Apr 2008 | Contributor(s):: Paul R Selvin
Diffusion and bacteria moving, power consumed by bacteria, Introduction to Reynolds number, Where Bacteria Live, How E. Coli move and swim,
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Lecture 2: Quantum of Conductance: Resistance and uncertainty
Online Presentations | 08 Sep 2010
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Lecture 3: Resistance-Ballistic to Diffusive
Online Presentations | 28 Jul 2011 | Contributor(s):: Mark Lundstrom
The resistance of a ballistic conductor and concepts, such as the quantumcontact resistance, are introduced and discussed. The results are then generalized to treat transport all the way from the ballistic to diffusive regimes.
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Lecture 9: Dynamic Properties
Presentation Materials | 05 Jan 2010 | Contributor(s):: Ashlie Martini
Topics:Time correlation functionsEinstein relationsGreen-Kubo relations
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Linear Diffusion and Cell Signaling
Teaching Materials | 17 Apr 2020 | Contributor(s):: NNCI Nano
In this activity, students explore the concept of diffusion as a component of cell communication. Specifically, students will explore how the rate of diffusion varies with distance and concentration gradient. They will use a pipet with water and dye to observe a macro-model of diffusion....
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mage:ic:kinetics1 - Diffusion in 1D and 3D
Teaching Materials | 10 Mar 2014 | Contributor(s):: Michael L. Falk
This module guides students through two analyses of diffusion problems using the COMSOL finite element software. Students are then asked to use what they have learned to guide the design of a drug delivery device.Disciplinary Goals: Understand mass transport in 1D and 3D, effects of boundary...
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Make a Microfluidic Device to Investigate Properties of Solutions
Teaching Materials | 07 Apr 2020 | Contributor(s):: Greg Hair, NNCI Nano
This lesson focuses on having students design and test a microfluidic device to investigate the properties of solutions. The lesson activities combine concepts learned in the previous semester (energy, frequency, wavelength, and bonding) together with the aforementioned concepts of solutions to...
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MATE 370 Virtual Lab: Exploring Diffusion through nanoHUB Defect- coupled and Concentration-dependent Diffusion Tools
Teaching Materials | 24 Sep 2020 | Contributor(s):: Mohsen B Kivy, Crystal Ipong
This lab explores the kinetics of solid-state diffusion using nanoHUB tools.
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Mixed Gas Diffusion Calculator
Tools | 28 Jun 2019 | Contributor(s):: Julian C Umeh, Thomas A Manz
Simulates the diffusion of a gas mixture onto a metal organic framework