
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 91 - 120 of 253
The interactions of ultrashort-light pulses with solids and nanostructures is a continuously growing area due to the ...
The computational modeling of molecular transformations in organic chemistry, e.g. photo-inducible isomerizations of ...
Recent numerical stabilization approaches provide new opportunities for viscoelastic flow simulations. The numerical ...
The modification of intrinsic properties of graphene via defects, such as grain boundaries, has been an intense field of ...
The demand of minimization and feasibility of integration makes two-dimensional (2D) materials remarkable in promising ...
Like perovskite materials, antiperovskites (APVs) display many intriguing physical properties. Particularly, the ...
In this work, we performed first-principles calculations to evaluate the anomalous Hall conductivity as well as the ...
Entanglements between polymer chains are demonstrated as one of the key factors to modulate the macroscopic physical ...
The goal of ab initio nuclear structure theory is the description of correlated systems of many nucleons based on the ...
The mechanisms of laser-matter interaction are of great importance for many applications including the development of ...
Millions of European and American workers are increasingly asked to accumulate pension assets. In order to augment ...
Understanding the behavior of different materials not only furthers general knowledge, but can also often be used for ...
After the matrix isolation of aminomethylene (H-C̈-NH2)[1] we study further the formation of amino acids and sugars in ...
The theory of the strong interaction, Quantum Chromodynamics, is known to have complicated topological structures called ...
Alkali metal-oxygen batteries have a particularly high energy density and therefore concepts for rechargeable batteries ...
The understanding of the interaction of ultrashort light pulses with solids and nanostructures is important for both ...
Many real-world phenomena are modelled by partial differential equations. Even in relatively low dimensions, the ...
Novel methods to access complex molecular structures open new avenues for applications in medicalas well as material ...
Atmospheric gravity waves (GWs) are rather short in wavelength (1km – 100km in the horizontal, 100m – 10km in the ...
Novel methods to access complex molecular structures open new avenues for applications in medical as well as material ...
We planned to test a method for ranking nodes in a network (for example web pages in the internet) that is an ...
The computational modeling of molecular transformations in organic chemistry, e.g. photo-inducible isomerizations of ...
Smart polymers respond to environmental factors such as change in temperature, pH, or solvent. An example is the ...
The accurate many-particle description of systems exhibiting strong electronic correlations is one of the most ...
It is well-known that the irradiation of aromatic azides, including phenyl azide, in solution and at cryogenic ...
Colloid suspension droplets are widely encountered in industrial processes, for instance fuels with dispersed, metallic ...
Solid electrolytes (SE) in all-solid-state batteries due to their high safety and flexibility in design have attracted ...
Calculating transport properties such as the electrical conductivity of a strongly interacting hadron gas is a difficult ...
Circular Rydberg states refer to the valence electron of a highly excited atom in a circular orbit. Due to their very ...
The asymptotic suction boundary layer (ASBL) is a flow that develops over a flat bottom plate in the presence of suction ...