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                Employer- MASARYK UNIVERSITY
- Institute of Physics of the Czech Academy of Sciences
- Charles University, Faculty of Mathematics and Physics
- Charles University, Faculty of Science
- Czech Technical University in Prague
- Institute of Mathematics of the Czech Academy of Sciences
- Institute of Physiology CAS
- Masaryk University
 
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                and spectroscopy. What will you do Focus on the investigation of transport and optical properties of molecules and other low dimensional materials (transition-metal dichalcogenides, boron nitride 
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                on Topological methods in Discrete Mathematics and conduct research related to problems in Combinatorics, Graph theory and aspects of the Constraint Satisfaction Problem (CSP) with emphasis on topological methods 
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                of Science MU is opening 1 postdoctoral position associated to a research project. About the position The successful candidate will be based in Marek Filakovský’s group working on Topological methods in 
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                publications in relevant fields is expected. Familiarity with spatial analysis, quantitative methods, and/or qualitative fieldwork will be considered an asset. Excellent written and spoken English is required 
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                research. Ability to work independently as well as in a team. Preferred: Good knowledge of multivariate statistical methods. Advanced knowledge of data mining and other alternative data sources. Expertise 
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                by combinatorial methods. Applications are invited from candidates who have completed their PhD within the last 4 years (or will have completed it before the time of hiring) and who have strong 
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                of single dye molecules or their aggregates using ab-initio methods. This will involve describing the molecule’s vibronic structure and engineering its emission properties, e.g., by controlling the molecule’s 
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                for Biomolecular Research at the Faculty of Science MU is focused on the study of bio(macro)molecules at the atomic level using experimental and computational methods. Equipment for nuclear magnetic resonance 
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                strategies — developing systems that can respond dynamically to neural and behavioral signals in real time. Your Role: Develop and evaluate new methods for optimizing DBS therapy — from imaging and modeling 
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                . To achieve this, a broad range of molecular and behavioral techniques commonly used in circadian research will be employed. Work Environment: Our laboratory routinely employs a range of advanced methods