22 modelling-and-simulation-of-combustion-postdoc PhD positions at Chalmers University of Technology in Sweden
Sort by
Refine Your Search
-
from satellite, aircraft or ground sensors to understand, model and retrieve parameters relevant to the processes driving our atmosphere, biosphere, hydrosphere and cryosphere. About the research project
-
utilized to mitigate flooding risks through hydrological modelling and stakeholder engagement.Focusing on the Gothenburg region, the project will: Identify roads suitable for climate adaptation in three
-
, modelling and safety” group conducts research and teaching activities along the following lines: reactor physics, reactor dynamics, reactor modelling, nuclear power safety, core diagnostics, and safeguards
-
include fine-grained and bounded space cryptography, realization of idealized models, relationship between cryptographic notions, and similar topics in foundational cryptography. Exploring connections
-
work will build on and extend an advanced in-house time-domain simulation tool for wheel–rail interaction and noise. The project is carried out in close collaboration with DB InfraGO, the German railway
-
well as cell- based model studies and apply advanced data-driven approaches and state of the art biochemical and OMICs technologies to understand and predict the role of foods, dietary components and dietary
-
oscillation experiments provide key insights into the Standard Model. The success of these experiments rely on accurate theoretical models of neutrino interactions with nuclei—the building blocks
-
between nucleons. In this PhD position, you will: Develop models & methods: create and models using effective field theory to analyze and predict the quantum properties of atomic nuclei. Quantify
-
superconducting circuits. This project focuses on modeling the quantum dynamics of these circuits at the Hamiltonian level and optimizing their control. You will develop theoretical models and optimization
-
role in scientific advances, from quantum simulation to datacenter interconnects. Our group has pioneered ultralow-loss silicon nitride waveguides, enabling advanced nanophotonic components. This project