Sort by
Refine Your Search
-
Category
-
Employer
-
Field
-
Your Profile: Very good university degree (Master) in the fields of chemical engineering, process engineering, chemistry, material science or a comparable discipline with PhD Broad expertise and the
-
Bewerbungsende: 22.09.2025 The AG Weinelt studies ultrafast dynamics in quantum materials initiated by ultrashort optical laser pulses. This includes single and collective quasiparticle dynamics
-
) Positions PhD Positions Country Germany Application Deadline 11 Nov 2025 - 23:59 (Europe/Berlin) Type of Contract Temporary Job Status Not Applicable Offer Starting Date 14 Oct 2025 Is the job funded through
-
positions) / a PhD (Postdoc positions) in natural sciences (i.e. Chemistry, Physics, or Materials Science) preferably with a specialization in theoretical chemistry, or applied mathematics An appropriate
-
Fritz Haber Institute of the Max Planck Society, Berlin | Berlin, Berlin | Germany | about 1 month ago
Science, headed by Prof. Beatriz Roldán Cuenya at the Fritz Haber Institute, carries out cutting-edge research on advanced functional materials with applications in heterogeneous catalysis, energy
-
free-electron lasers. A wide variety of magnetic material systems are studied, such as magnetocaloric materials, permanent magnets, catalysts, magnetic nanoparticles, and molecular spin switches. Your
-
To strengthen our team in the division 4.2 “Material-Microbiom Interactions” in Berlin-Steglitz, starting as soon as possible (01.10.2025 at the earliest), we are looking for a Postdoctoral research
-
evaluation will focus in particular on disentangling the impact of values-based interventions integrated into each case study process. Provide methodological and academic support to PhD candidates within
-
and interest in one of the following fields: • Solid state quantum information science. • Quantum optical properties solid-state systems (e.g. semiconductor quantum dots, colour centers in wice gap
-
research focuses on the study of quantum magnetism at the atomic scale. We build artificial quantum architectures from single atoms and molecules on surfaces and on probe tips, control their spin states, and