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liquid phases have been predicted. It can be realized using atoms with two valence electrons, such as ytterbium or strontium. To investigate such SU(N) physics, our group has developed a quantum-gas
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about interdisciplinary research at the interface of chemistry and biology. Basic experience in DNA/RNA handling, fluorescence microscopy, or photochemistry is advantageous but not required. You are
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chemisorption (e.g., CO or H2 pulsed chemisorption), and transmission electron microscopy as well as catalyst synthesis. Background Investigation Statement: Prior to hiring, the final candidate(s) must
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atomic force microscopy and cryo-electron microscopy. Our interdisciplinary group is interested in understanding the mechanisms underlying DNA organization and transcription in multicellular organisms
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approach combining cryo-electron microscopy, NMR spectroscopy, and advanced molecular modeling, the research will unravel the molecular architecture and conformational dynamics of pili and their interactions
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localization microscopy, in particular to enable dynamic observation of living cells. In particular, it has recently patented various concepts for localizing molecules under structured illumination inducing
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(stamped arrival date of the university central mail service or the time stamp on the email server of TUD applies), preferably via the TUD SecureMail Portal https://securemail.tu-dresden.de by sending it as
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of whole-brain light-sheet microscopy. Position You will work actively on the ERC Consolidator project “A data-driven approach to microstructure imaging” (ADAMI), funded by the European Union. ADAMI is a
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of synaptic protein complexes at near-atomic resolution by cutting-edge technologies cryo-electron microscopy and tomography (cryoEM/ET), and other biochemical and biophysical approaches. This role of person
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technical work that underpins the scientific research of the collaboration. Research Title: Postdoctoral Research Associate in Electron Microscopy The work will entail: NIST is actively seeking a candidate