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-mechanical testing of interfaces in multilayered films across a wide range of temperatures (cryogenic to elevated temperatures) and strain rates using in situ SEM techniques Electron microscopy-based
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Max Planck Institute for Brain Research, Frankfurt am Main | Frankfurt am Main, Hessen | Germany | about 3 hours ago
behavioral experiments, and state-of-the-art functional imaging, electrophysiology, and electron microscopy techniques. For more details, please visit our lab’s website . Your profile We are seeking a highly
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characterization, single particle electron cryo-microscopy (cryo-EM), cryogenic focused ion beam (cryo-FIB) milling and electron cryo-tomography (cryo-ET) are applied. Besides membrane protein complexes, the group
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Max Planck Institute of Biophysics, Frankfurt am Main | Frankfurt am Main, Hessen | Germany | 7 days ago
hands on experience in optics is preferred. Prior experience in development/extension of optical instrument and/or surface chemistry is desired.) Cryo-electron microscopy-based structural analysis of SMC
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communication, organizational and problem-solving skills. You have experience in cultivating mammalian cells or tissues, or in experimental research involving zebrafish embryos. You have experience in microscopy
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Max Planck Institute for Chemical Physics of Solids, Dresden | Dresden, Sachsen | Germany | about 2 months ago
Analysis of experimental results Expertise in spectroscopic measurements and/or Scanning Probe Microscopy is of advantage Qualifications and skills University degree and PhD in physics Ability to work in a
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Expertise in spectroscopic measurements and/or scanning probe microscopy is of advantage Qualifications and skills University degree and PhD in physics Ability to work in a team Background in electronic
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below 30 mK and allow the application of magnetic fields to the sample. We characterize the magnetic properties of the quantum systems using standard spectroscopic detection schemes and electron spin
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, Raman spectroscopy, Scanning electroscope microscopy). Analyze data, contribute to scientific publications, and present research findings at international conferences. Collaborate closely with our
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of porphyrins in conjunction with novel linker structures to affect a transformational advance in the molecular design and control of interfacial nanoconstructs with tunable electronic, photonic, biomedical, and