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2010 Nano-Biophotonics Summer School @ UIUC Lecture 4 - Gaussian beam propagation - Elastic light scattering - Dynamic light scattering
25 Sep 2010 | | Contributor(s):: Gabriel Popescu
Often, experiments involve light beams. A light beam can be defined as a distribution of field that fulfills the approximation in Eq. 20,i.e. is characterized by a dominant wave vector component, k(z) >> k(x) , k(y) . A beam is, therefore, the spatial equivalent of quasimonochromaticlight,...
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Gibbs
29 Aug 2009 | | Contributor(s):: Thomas Cool, R. Edwin Garcia, Alex Bartol, Jarrod Lund
Python-based libraries for the calculation of phase diagrams and thermodynamic properties
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How to make Phase Diagrams using ThermoCalc
08 Mar 2024 | | Contributor(s):: Alejandro Strachan, Congying Wang, Carol Handwerker
This tutorial shows how to create phase diagrams using Thermo-Calc in nanoHUB. This tutorial is part of a module that enables students to use the Thermo-Calc Educational Package in nanoHUB to work with concepts and skills for interpreting and using phase diagrams to design low...
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Integrating Microelectronics Contexts into Engineering Classrooms: Thermo-Calc Online Tool for the Design of Solder Materials
20 May 2022 | | Contributor(s):: Congying Wang
This presentation will first present how industrial soldering practices can be contextualized into current engineering classrooms, especially in materials science, to provide students with situated learning experiences. Then we will demonstrate how Thermo-Calc can be utilized as an effective...
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Marius Stan
https://nanohub.org/members/156713
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MSE 498 Lesson 18: CALPHAD
17 Mar 2015 | | Contributor(s):: Andrew Ferguson
This new course will give students hands-on experience with popular computational materials science and engineering software through a series of projects in: electronic structure calculation (e.g., VASP), molecular simulation (e.g., GROMACS), phase diagram modeling (e.g., Thermo-Calc), finite...
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MSE 498 Lesson 19: CALPHAD
17 Mar 2015 | | Contributor(s):: Andrew Ferguson
This new course will give students hands-on experience with popular computational materials science and engineering software through a series of projects in: electronic structure calculation (e.g., VASP), molecular simulation (e.g., GROMACS), phase diagram modeling (e.g., Thermo-Calc), finite...
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MSEN 201 Lecture 7.1: Phase Diagrams - Intro to Phase Diagrams
13 Feb 2019 | | Contributor(s):: Patrick J Shamberger
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MSEN 201 Lecture 7.2: Phase Diagrams - Lever Rule
13 Feb 2019 | | Contributor(s):: Patrick J Shamberger
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Phase Diagrams & Pb-free Low-temperature Solder Materials in Microelectronics
24 May 2023 | | Contributor(s):: Carol Handwerker, Congying Wang, Alejandro Strachan
This module enables students to use the Thermo-Calc Educational Package in nanoHUB to work with concepts and skills for interpreting and using phase diagrams to design low temperature solders for microelectronics applications. You can directly run the Thermo-Calc Educational Package in...
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Stéphane Gorsse
https://nanohub.org/members/141885
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The Virtual Kinetics of Materials Laboratory
09 Sep 2009 | | Contributor(s):: Alex Bartol, Edwin Garcia, David R. Ely, Jon Guyer, Jarrod Lund, Surya Mitra Ayalasomayajula
web interface to develop, modify, and execute FiPy, Gibbs, and other python-based applications
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Thermo-Calc Educational Package
19 Feb 2021 | | Contributor(s):: Paul Mason, Alejandro Strachan
Thermo-Calc Educational Package