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. The project focuses on the development of novel atomic oxygen (ATOX) resistant coatings to increase the durability and reduce drag of satellites in very low Earth orbit (VLEO). The postdoctoral research will
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years and is available from August 1st or as soon as possible hereafter. There is the possibility of extension for up to more two years. Job description We are looking for a candidate to lead our X-FEL
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years and is available from August 1st or as soon as possible hereafter. There is the possibility of extension for up to more two years. Job description We are looking for a candidate to lead our X-FEL
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. size-selected cluster sources. Catalytic testing using ultra-sensitive chip-interfaced electrochemistry–mass spectrometry (EC–MS) and ultra-high-vacuum-compatible thermal catalytic setups. 3D atomic
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? The successful candidate will use “omic” approaches to investigate immunoregulation and identify potential therapeutic targets. You will have the opportunity to lead and co-lead projects, design experiments
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with contemporary machine learning methods. We are looking for an ambitious Postdoc who will lead our efforts on the design, implementation, and training of mechanistic models of cell organization. In particular, we
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information encoding and computation in neocortical circuits. The successful candidate will lead an ambitious project on synaptic and circuit mechanisms of sensory processing in primary visual cortex (V1
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— no Polish required. Deadline: Rolling review; apply by 31 May 2026 for full consideration. THE SCIENCE Every time a photoreceptor protein absorbs a photon of light, a cascade of atomic rearrangements
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→ cell → patient Integrate multi-modal data (genomics, transcriptomics, biosensors, EHR) Perform single-cell and spatial multi-omics analyses at scale Lead high-impact publications and contribute
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, interdisciplinary environment This position offers access to state-of-the-art facilities (e.g., High Throughput Bioscience Center, link , and HPC environment with 5.3 PFLOPS of power and 150 PB of storage capacity