Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
- Technical University of Munich
- Helmholtz-Zentrum Berlin für Materialien und Energie
- University of Mainz
- Friedrich Schiller University Jena •
- International PhD Programme (IPP) Mainz
- Leipzig University •
- Technische Universität Dresden (TU Dresden)
- University of Bremen
- University of Münster •
- University of Würzburg
- Universität Münster
- 1 more »
- « less
-
Field
-
Helmholtz-Zentrum Berlin für Materialien und Energie | Jena, Th ringen | Germany | about 2 months ago
staff position within a Research Infrastructure? No Offer Description Work group: HIPOLE: Helmholtz-Institute for Polymers in Energy Applications Jena (HI-POLE) Area of research: PHD Thesis Job
-
staff position within a Research Infrastructure? No Offer Description Work group: HIPOLE: Helmholtz-Institute for Polymers in Energy Applications Jena (HI-POLE) Area of research: PHD Thesis Job
-
at the Department for Functional Materials in Medicine and Dentistry (FMZ) / Center of Polymers for Life (CPL), Julius-Maximilians-Universität Würzburg (JMU). The candidate will work on advanced 3D bioprinting and
-
– Germany (www.walther-group.com ) Max Planck Graduate Center between MPI for Polymer Research and JGU Key words: Artificial Cells, Synthetic Cells, Chemo-Mechanical Feedback, pH Feedback Systems, pH Waves
-
Cells Walther Lab @ Johannes Gutenberg University Mainz, Germany Max Planck Research Fellow Group @ Max Planck Institute for Polymer Research www.walther-group.com Keywords: Artificial cells, synthetic
-
for interdisciplinary research and enjoyment of teamwork. Experience with nucleic acids, enzymes, protein purification or quantitative microscopy is a plus. This project will be part of the CRC/SFB on Polymer Concepts in
-
the structure and function of microbial communities in Antarctic marine sediments. Fermentative microorganisms play a key role in the initial anaerobic breakdown of organic polymers, supplying substrates
-
biointerfacing synthesis and Structural and physicochemical characterization of electrode materials (porous carbons, conductive polymers, porous polymers) and electrolytes: application of modern analytical methods
-
-responsive polymeric particles and emulsions stabilized by them. Establishment and further development of advanced measurement techniques based on atomic force microscopy. Development and optimization
-
excitations and excitonic effects using advanced Wannier-based methods * Quantum transport in polymer materials with electron–phonon coupling Full details and application instructions: https://www.ch.nat.tum.de