-
network architectures for AI compute clusters utilising optical switching and numerically assess the performance via software simulation tools. Define the system specifications which will be then translated
-
mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room
-
have: MSc in engineering or similar discipline by the start date of the position Experience with mechanical modeling and simulation Experience in computer programming/scripting (e.g., C++, Python, Matlab
-
scientific knowledge, such as physical laws, differential equations, and domain-specific constraints, to model, simulate, and understand complex systems. The project will explore modern SciML methods
-
applications, architecture, building blocks, integration, requirements, limitations and state of the art in optical transceivers Understanding modeling of the optical modulators and simulation platform
-
and as transcripts. Pdf copy of your final BSc thesis. Pdf copy of your final MSc thesis (if available). Only complete applications will be considered. We look forward to receiving your application and
-
vitae, including the contact information of three references. Lists of courses and grades of your BSc and MSc degrees, as originals and as transcripts. Pdf copy of your final BSc thesis. Pdf copy of your
-
numerically assess the performance via software simulation tools. Define the system specifications which will be then translated into requirements for the design and implementation of the photonic WDM switch
-
of course includes AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after
-
using PISCES (Planetary Ices Simulation Chamber for Enceladus and MoonS), currently the first facility in the world to simulate the plumes of Enceladus. This project will also investigate the structure