Sort by
Refine Your Search
-
for upcoming, speculative, and innovative positions engaging with the challenges facing the future of the built environment. Send us your teaching statement on maximum one page describing how you want to engage
-
processing, machine learning, and human-computer interaction. The goal of this PhD is to develop neuromotor interfaces for dexterous robot teleoperation using two sensing modalities: 1) surface
-
alongside researchers and technical colleagues, you will develop and improve fabrication processes, take responsibility for selected equipment, and support the safe introduction of new materials and
-
computational methods, artificial intelligence (AI), and extended reality (XR). Design++ fosters cross-departmental research, education, and industry collaboration to drive transformative change in the built
-
power electronic systems, we develop advanced multi-physics models/digital twins/virtual prototypes at the component and system level. For a new research project on Solid-State-Transformers for future PV
-
is mainly theoretical, but connected to several industrial applications in online marketplaces. Job description Develop new methods for experimental and causal evaluation that are relevant in real
-
develop socially responsible leaders who have the mindset, knowledge, and skills to integrate leadership and technology challenges to have a significant positive impact on their teams, their organisations
-
. Job description This doctoral project provides training across the complete development cycle of MIR integrated photonic devices The doctoral student will develop numerical models, design photonic
-
, geriatrics, neurology, paraplegiology or surgery. The research aims to develop biological, chemical, molecular, optical, electrical or other sensing technologies for an early diagnosis of possible pre- and
-
experimental platform for investigating time-varying electromagnetic media. Job description As a doctoral student, you will develop and implement novel ultrafast experiments to investigate time-varying