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ICFO is offering a postdoctoral position to a well-qualified, highly motivated and dynamic young scientist who wishes to enhance his/her scientific career in a friendly and stimulating environment. The successful candidate will be joining the Quantum Information Theory group led by Prof. Dr....
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)]. Main Tasks and responsibilities: The candidate will optimize the transfer of nanoporous graphene synthesized on metallic susbtrates to dielectric substrates where the FETs will be fabricated. The quality
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- and microspheres) across both classical and quantum regimes. The group designs and optimizes novel protocols for the quantum state engineering of massive objects, considering sources of decoherence and
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-commerce on freight delivery services (supply side). Impact assessment of measures to optimize the sustainability of e-commerce. Policy Measures. Where to apply E-mail carlos.roldan.hernandez@upm.es
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that these nanocrystals undergo under diverse conditions. By mastering precise structural control and tailored surface engineering, the group seeks to optimize nanoparticle performance across critical application areas
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IJC’s commitment to these values and principles strengthens our internal policies and ensures that our members have the optimal conditions and environment for their professional development.The Board
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the profile and previous experience, the candidate may participate in the following tasks, being responsible for part of them: Optimization of single-step bioassays using magnetic beads (magneto-assays
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with a focus on III-V CQDs The aim of the project is to optimize the material properties as well as the device stack on a die level followed by integration of the optimum QD stack on a full image sensor
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interactions of individual cell types. The candidate will be responsible for optimizing and implementing a tri-culture system containing iPSC-derived neurons, astrocytes and microglia cells and their
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photoelectrode fabrication, producing novel ternary chalcogenide-based semiconductors with optimized band structures for efficient light-to-fuel conversion. The candidate will integrate selected electron transport