49 application-programming-android PhD positions at Forschungszentrum Jülich in Germany
Sort by
Refine Your Search
-
to characterize biodegradable Mg alloys containing a Long Periodic Stacking Ordered (LPSO) phase, developed for medical implant applications. You will be responsible for establishing a correlative
-
conduct high-quality research and successfully implement your own ideas Excellent infrastructure for transferring scientific findings into technical applications Being part of an interdisciplinary
-
well as in fuel cells. Some of your responsibilities will include: Design and set-up of new testing equipment and procedures for application-driven characterization of new materials for water electrolysis
-
, experimental physics or a comparable discipline Experience in instrumental analytical chemistry Knowledge of hydrogen and energy research is an advantage Experience in the practical application of GC-MS methods
-
out within the DFG Priority Programme “DaMic - Data-driven Alloy and Microstructure Design of Sustainable Structural Metals” (SPP 2489), in close collaboration with a research partner responsible for
-
have very good knowledge of energy technology, energy economics, and energy policy You have already gained initial experience in energy system modeling You are confident in object-oriented programming
-
science and energy technologies Basic knowledge of artificial intelligence and data analysis methods Programming skills, ideally in Python Independent and analytical way of working Reliable and thorough
-
quantum information Experience with programming, preferably with Python Fluent speaking and writing skils in English Team-oriented and highly motivated to work in an experimental laboratory A background in
-
on investigating the change in the catalysts surface under relevant process conditions using spectroscopic analysis methods. Your task will include: Application of established and novel methods for the preparation
-
of the possible influence of storage-related factors on the LOHC purity Method development and application of suitable analytics (e.g. GC(-MS), NMR, etc.) for the qualitative and quantitative determination of by