Tags: NanoBio Node at Illinois

Description

Nanobio Node at Illinois

The nanoBIO Node at Illinois is a resource for understanding and designing nanoBIO devices and systems. This NSF funded activity is a collaboration between the University of Illinois at Urbana-Champaign and the University of California at Merced. The node provides simulation building blocks and educational resources for use in nanoBIO device engineering.

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  1. [Illinois] New Insights into Some Principles of Self-Assembly

    Online Presentations | 18 Aug 2015 | Contributor(s):: Erik Luijten

  2. [Illinois] Quantitative Elastic Measurements of High Modulus Materials with Tapping/AM-FM Mode

    Online Presentations | 18 Aug 2015 | Contributor(s):: Ted Limpoco

  3. [Illinois] Rutherford Backscattering Spectroscopy

    Online Presentations | 18 Aug 2015 | Contributor(s):: Timothy P. Spila

  4. [Illinois] Secondary Ion Mass Spectroscopy

    Online Presentations | 18 Aug 2015 | Contributor(s):: Timothy P. Spila

  5. [Illinois] Stiff Polymer Assemblies

    Online Presentations | 18 Aug 2015 | Contributor(s):: Alan Rowan

  6. [Illinois] X-ray Photoelectron Spectroscopy (XPS) and Auger Electron Spectroscopy (AES) Part 1

    Online Presentations | 18 Aug 2015 | Contributor(s):: Rick Haasch

  7. [Illinois] X-ray Photoelectron Spectroscopy (XPS) and Auger Electron Spectroscopy (AES) Part 2

    Online Presentations | 18 Aug 2015 | Contributor(s):: Rick Haasch

  8. Apr 01 2015

    Workshop on Nanoindentation and Its Applications in Mechanotransduction and Characterization of Soft Materials

    Characterizing the mechanical properties of materials using indentation has been around for centuries. It was only recently that it emerged as a technique of choice for characterizing soft and...

    https://nanohub.org/events/details/1125

  9. MSE 498: Computational Materials Science and Engineering

    Courses | 30 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.,...

  10. MSE 498 Lesson 10: MD

    Online Presentations | 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...

  11. MSE 498 Lesson 11: MD

    Online Presentations | 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...

  12. MSE 498 Lesson 12: MD

    Online Presentations | 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...

  13. MSE 498 Lesson 13: MD

    Online Presentations | 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...

  14. MSE 498 Lesson 14: MD

    Online Presentations | 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...

  15. MSE 498 Lesson 15: MD

    Online Presentations | 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...

  16. MSE 498 Lesson 16: FEM

    Online Presentations | 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...

  17. MSE 498 Lesson 17: FEM

    Online Presentations | 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...

  18. MSE 498 Lesson 18: CALPHAD

    Online Presentations | 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...

  19. MSE 498 Lesson 19: CALPHAD

    Online Presentations | 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...

  20. MSE 498 Lesson 4: bash and MATLAB

    Online Presentations | 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...