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List of results
- UppASD Autumn School (October 2022) + (UppASD Autumn School)
- XC-40 Architecture (PDC February 2015) + (Using Cray XC-40 Machines)
- Using Matlab in an HPC environment (Lunarc, 2017) + (Using Matlab in an HPC environment)
- Using Matlab in an HPC environment (Lunarc, November 2018) + (Using Matlab in an HPC environment)
- Using Matlab in an HPC environment (Lunarc, April 2018) + (Using Matlab in an HPC environment)
- Using Matlab in an HPC environment (Lunarc, October 2017) + (Using Matlab in an HPC environment)
- Using Python in an HPC environment, May 2023, UPPMAX/HPC2N + (Using Python in an HPC environment)
- Using Python in an HPC environment, September 2022, UPPMAX/HPC2N + (Using Python in an HPC environment)
- Using R in an HPC environment, HPC2N, 2021-02-(25-26) + (Using R in an HPC environment)
- Commercial engineering software (Lund, Nov 2017) + (Using commercial engineering software in an HPC environment)
- Intel Compiler (Lunarc November 2016) + (Using the Intel® compiler and performance tools)
- Utilising a modern HPC environment (Lunarc, May 2016) + (Utilising a modern HPC environment)
- Vasp best practices (Stockholm, May 2019) + (VASP best practices)
- Vasp best practices (Linköping, June 2019) + (VASP best practices)
- Vasp best practices (Uppsala, June 2019) + (VASP best practices)
- VASP best practices workshop (NSC, Feb 2022) + (VASP best practices workshop)
- VASP best practices workshop (NSC, Oct 2020) + (VASP best practices workshop)
- Vasp - Basic Theory and Best Practices, HPC2N, October 2019 + (Vasp - Basic Theory and Best Practices)
- Version Control Workshop, HPC2N + (Version Control Workshop)
- Visualisation and interactivity in HPC (LUNARC, March 2019) + (Visualisation and interactivity in HPC - The LUNARC HPC Desktop)
- Vapor + (Visualization and Analysis Platform for Ocean, Atmosphere, and Solar Researchers)
- Grace + (WYSIWYG tool to make two-dimensional plots of scientific data)
- PconsC for Fido + (Web hosting for PconsC)
- Working effectively with HPC systems (NSC, April 2021) + (Working effectively with HPC systems)
- Schrödinger materials science suite workshop (Linköping, November 2017) + (Workshop on using the Schrödinger materials science suite with Quantum Espresso)
- Writing Parallel Applications Using MPI (Stockholm, December 2019) + (Writing Parallel Applications Using MPI)
- MPI (PDC December 2015) + (Writing parallel applications using MPI)
- MPI (PDC December 2017) + (Writing parallel applications using MPI)
- MPI (PDC November 2014) + (Writing parallel applications using MPI)
- Xds + (X-ray Detector Software for processing single-crystal monochromatic diffraction data recorded by the rotation method.)
- FEFF + (a real-space full multiple scattering (RSFMS) Green's function method)
- GAMESS + (ab initio quantum chemistry)
- MPQC + (ab initio quantum chemistry)
- Jaguar + (ab initio quantum mechanics)
- Elk + (all-electron full-potential linearised augmented-plane wave (FP-LAPW) code with many advanced features)
- RSPt + (all-electron full-potential linearised muffin-tin orbital (FP-LMTO) code with many features. Dynamic mean field capabilities is included in the code.)
- BLAT + (an alignment tool like BLAST, but it is structured differently.)
- NCL + (analysis and visualization)
- Category:Computational electromagnetics + (application of computer science methods to solve and model electromagnetic fields)
- Category:Solid mechanics + (application of computer science methods to solve continuum solid mechanics problems)
- Category:Computational chemistry + (application of computer science methods to solve chemical problems)
- Category:Climate research + (application of computer science methods to study the Earth's climate)
- Category:Computational materials science + (applying the properties of matter to various areas of science and engineering)
- Charmm + (atomistic and molecular simulations code)
- CP2K + (atomistic and molecular simulations code)
- Cyana + (biological macromolecule structure calculation based on NMR conformational constraints)
- Akka + (capability cluster resource of 54 TFLOPS with infiniband interconnect)
- Neolith + (capability cluster resource of 60 TFLOPS with full bisection infiniband interconnect)
- Abisko + (capability resource of 153 TFLOPS with full bisectional infiniband interconnect)
- LAMMPS + (classical molecular dynamics code)
- NCAR diagnostic packages + (climate model diagnostics)
- Matter + (cluster resource of 37 TFLOPS dedicated to materials science)
- Kalkyl + (cluster resource of about 21 TFLOPS)