166 programming-"https:"-"https:"-"https:"-"https:"-"https:"-"UCL" positions in Switzerland
Sort by
Refine Your Search
-
Listed
-
Category
-
Program
-
Employer
-
Field
-
attosecond pulses, tuneable 1-2 fs deep-ultraviolet and near-infrared pulses, and electron-ion coincidence detection in a reaction microscope. The scientific programme addresses chiral electronic wave packets
-
technologies, with applications in 6G, satellite communication (SATCOM), and AI data-center connectivity. Our research is funded by multiple EU, ESA, and Swiss programs and projects, and contributes directly to
-
work closely with Research Program Support teams (plus the external partners mentioned above). You will lead cross-functional and external experts and will have the authority to prioritize, redirect, and
-
teams, its Research Program Support team, and the Geo-Intelligence team (plus the external partners mentioned above). You will lead cross-functional and external experts and will have the authority
-
solvers, FDTD/FEM, coupled-mode theory, or PDE/ODE solvers) Interest in electromagnetic wave propagation, photonics, or semiconductor physics Experience with scientific programming and data analysis (Python
-
; or Windows: batch/powershell) or in programming languages and tools (e.g. Python, git). Knowledge of ITIL or similar industry best practices (incident / change management). Your Profile: Bachelors in
-
student will contribute to a translational research program that aims to understand how daily stress and arousal states shape sleep physiology, recovery and health-relevant outcomes in real life
-
questions related to the resilience of global supply chains to climate change. The doctorate will be conducted within the doctoral program of D-MTEC (Department of Management, Technology, and Economics) and
-
agents) to significantly accelerate coding practices, automate boilerplate code generation, and test plan creation. Designing and building robust CI/CD pipelines and automation systems that integrate AI
-
multifunctionalities in the optical path. The first part of this project will center around developing light-stimulated stiffness programming methods that surpass the performance of current variable stiffness benchmarks