
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 - 13 of 13
The application of metallic glasses (MGs) is limited by their brittle behavior at room temperature [1]. In order to ...
To understand and study complex materials at the atomic level, it is essential to be able to calculate forces and ...
The low-density polyethylene polymerization process takes place at high pressure and temperatures. Knowledge of the ...
The simulation of materials on the atomistic scale requires a description of interatomic interactions. Quantum ...
The project was majorly dedicated to build cell mechanistic models and study cell mechanics and cell migration. Both ...
The project aims to develop a bridging model that connects the nanoscale to the upscaled levels for understanding the ...
Active matter consisting of motile agents such as bacteria, algae, or synthetic microswimmers on the microscale and ...
Coarse-grained molecular dynamics (MD) simulation provides a faster alternative to all-atom MD simulation, essential for ...
For the understanding of materials it is often necessary to analyse them on the atomic scale. Molecular dynamics is a ...
Holding unique characteristics, such as a high strength and large elastic limit, metallic glasses are advanced materials ...
Entanglements between polymer chains are demonstrated as one of the key factors to modulate the macroscopic physical ...
Understanding the behavior of different materials not only furthers general knowledge, but can also often be used for ...
The current limits of metallic glasses are tied to their brittle behavior at room temperature [1]. To overcome brittle ...