
Projects
Hessian scientists of various disciplines are using High Performance Computers for their research.
Hessian scientists of various disciplines are using High Performance Computers for their research.
Displaying 1 - 30 of 30
The computational resources of the Lichtenberg HPC were used in this project to train physics informed machine learning ...
The project seeks to create a comprehensive model linking nanoscale phenomena to larger-scale behaviors to better ...
The previous investigation of SnN clusters with N = 6−40 showed that below a clusters size of about 30 atoms, a prolate ...
During development and adult homeostasis, cells in our bodies need to constantly integrate internal and external ...
We survey the landscape of MAB and Mbene superconductors out of our previous high-throughput predictions using first ...
Vibroacoustic vehicle behavior specifies among others the quality of vehicles and contributes to customer satisfaction ...
The project aims to develop a bridging model that connects the nanoscale to the upscaled levels for understanding the ...
Detailed multi-scale modelling provides in-depth insights into the complex phenomena of catalytic systems that typically ...
In the framework of the Collaborative Research Center (CRC 1487), iron is studied as a substitute for rare-earth metals ...
During development and adult homeostasis, cells in our bodies need to constantly integrate internal and external ...
This project was a follow-up project for our initial project intended at setting up Lichtenberg Cluster for the use ...
The prediction accuracy of models is affected using deterministic parameters. That is because the uncertainty of these ...
Overall objective of this project is to develop an elementary physical/chemical bridging model for the chemical reaction ...
The previous investigation of neutral SnN clusters with N = 6 - 20 showed that for clusters with N ≤ 15 prolate ...
This project was a follow-up project for our initial project intended at setting up Lichtenberg Cluster for the use ...
Since semiconductors are fundamental for modern technologies, the research is focused on such materials and their ...
In 2018, Gottschall et al. proposed a multi-stimulit concept for magnetocaloric cooling. [1] The energy consumption ...
Semiconductors are the fundament of modern technology and still in the focus of current research. With decreasing size ...
Semiconductor materials are of great importance in the development of technological devices. In particular, the trend ...
To model future energy systems and their markets, it is important to understand the underlying dynamics of their ...
Understanding the behavior of different materials not only furthers general knowledge, but can also often be used for ...
The demand of minimization and feasibility of integration makes two-dimensional (2D) materials remarkable in promising ...
Lighting, both natural and artificial, has become a part of our daily lives that have been taken for granted in modern ...
In need for alternatives to conventional cooling devices, the magnetocaloric effect (MCE) is one of the most promising ...
The electromechanical coupling properties of ferroelectric materials are widely studied and used to design macro and ...
Future wireless communication systems are envisioned to meet stringent latency requirements to support control ...
Colloid suspension droplets are widely encountered in industrial processes, for instance fuels with dispersed, metallic ...
Brake discs are put to high thermomechanical stresses during operation. These loads might induce the so called heat ...
Semiconductors are the fundament of modern technology and as such still a topic of current research. With decrease in ...
Multichannel LED systems are a powerful tool to generate custom spectra, adaptable to the psychological and ...