Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Delft University of Technology (TU Delft)
- University of Copenhagen
- AALTO UNIVERSITY
- CNRS
- Eindhoven University of Technology (TU/e)
- Umeå University
- University of Warwick;
- The University of Manchester
- University of Oslo
- VIB
- DIFFER
- ETH Zürich
- European Synchrotron Radiation Facility
- Forschungszentrum Jülich
- German Cancer Research Center in the Helmholtz Association (DKFZ)
- Heidelberg University
- IOCB Prague (Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences)
- Institut Agro Rennes-Angers
- International PhD Programme (IPP) Mainz
- KNAW
- Leiden University
- Linköping University
- Monash University
- NTNU - Norwegian University of Science and Technology
- Paul Scherrer Institut Villigen
- Queensland University of Technology
- UiT The Arctic University of Norway
- University Muenster
- University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC)
- University of Münster •
- University of South Carolina
- Utrecht University
- 22 more »
- « less
-
Field
-
materials. This project aims to change this and advance our understanding of the static and dynamic behavior of spins on surfaces and surface spin arrays. These systems, which represent real molecular quantum
-
the transport and interaction of radiolytic species. To address this issue, the second approach will rely on molecular dynamics simulations using the LAMMPS code and ReaxFF empirical potentials, following
-
integration, especially in molecular medicine; mathematical modelling of cancer; probabilistic modelling and Bayesian inference, stochastic algorithms and simulation-based inference; causal inference and time
-
. The key focus areas include: Displacement cascade evolution. Tracking microstructural evolution and defect dynamics. Investigating phase transitions under irradiation. Simulations of displacement-cascade
-
). Our overall aim is to understand the molecular mechanisms of haematological cancers, and based on this; to design, develop and implement novel, scientifically based, clinical trials, with a strong focus
-
-based nanoparticle formulations and/or coarse-grained molecular dynamic simulations is a plus TU Delft (Delft University of Technology) Working at TU Delft means contributing to solutions that really make
-
integration, especially in molecular medicine; mathematical modelling of cancer; probabilistic modelling and Bayesian inference, stochastic algorithms and simulation-based inference; causal inference and time
-
and organ levels and cellular and molecular levels. The project will further develop a two-dimensional open source package for modeling plant tissues, called Virtual Leaf, which coupled a Hamiltonian
-
(IAS-2), we employ theory, modeling, and simulation to study and understand the structure, self-assembly, and dynamics of complex fluids, active soft matter, and living matter - on the basis of physical
-
an advantage: Deep learning or machine learning Structural bioinformatics Protein structure prediction and modelling Molecular simulations Membrane proteins or membrane biophysics Scientific software development