57 parallel-processing-bioinformatics-"Multiple" Postdoctoral positions at Nature Careers in Denmark
Sort by
Refine Your Search
-
methane concentrations Bioelectrochemical systems Sensitive oxygen measurement methods, including electrochemical microsensors and optodes Transcriptomic sequencing and bioinformatic analysis
-
bioinformatics A stimulating, inclusive, and international research environment with structured mentoring and career development support Competitive salary and social benefits according to the collective agreement
-
assessments and modelling of food web dynamics and disease screening. This position provides a unique opportunity to contribute to our understanding of how multiple stressors including climate change
-
, including: Participate in the design and detailed engineering phases of up-scale microbial electrochemical reactors. Support commissioning, operation and testing of the up-scale microbial electrochemical
-
emissions under farm conditions. The role combines fieldwork, laboratory assessment, operation and maintenance of gas measurement systems, and integration of results into emission models and mitigation
-
one of the following topics: extended reality (virtual reality, augmented reality) human-computer interaction computer vision The capability to successfully conduct research projects in
-
aerosol modules, and assess the importance of different processes with a comparison to available observations. Analyse large model output and observational datasets to determine the impacts and main drivers
-
electroencephalographic (EEG) recordings of frequency-tagged steady-state visual evoked potentials (SSVEPs), the project will assess processing of attended and unattended colors in healthy adults performing a feature-based
-
Are you a chemist or chemical engineer interested in biofuels and process development? The Department of Biological and Chemical Engineering invites you to apply for a two year position to
-
. Possible tasks include modelling and/or operating bioreactors for conversion of H2 and CO2 to e-methane. A background within microbial catalysis, gas-liquid mass transfer principles, process modelling