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- AGH University of Krakow
- Center for Theoretical Physics PAS
- Czestochowa University of Technology
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- Institute of Physics, Polish Academy of Sciences, Warsaw
- Nalecz Institute of Biocybernetics and Biomedical Engineering
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Field
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the first stage, we will thoroughly investigate the structure and quantum control capabilities of the proposed strongly polar molecules. Next, we will develop an optimal method for encoding qubit states on
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application is limited by poor control of light emission intermittency, an effect known as blinking. A new research direction in our group aims to achieve control over blinking via modifications of NC surface
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focuses on the development and optimization of polymer-based excipients for bacteriophage stabilization, addressing a critical challenge in the storage, transport, and application of phages in medicine
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with improved energetic efficiency (e.g., arXiv:2408.06418); Optimization of thermodynamic protocols: designing thermal machines that exploit collective quantum phenomena to achieve higher energy
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application and machine learning. • Author of at least 2 research papers in topics related to the project. • Knowledge on advanced control systems and optimization (please attach a description of your
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Description Scope of duties (full-time, on-site post-doctoral position): a. Synthesis of metallic nanostructures (both bare and surface-functionalized), b. Optimization of materials intended for the fabrication
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applications for the position of at the Faculty of Mechanical Engineering Research Assistant Professor (POST-DOC) under the NCN project No. UMO-2024/53/B/ST8/02908: “Optimization of hydrogen oxy-combustion and
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. The studied autoinducers include derivatives of acyl-homoserine lactones and 2-heptyl-3-hydroxy-4-quinolones. Candidates should have skills for: Optimization of molecularly imprinted polymer (MIP) synthesis