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Fritz Haber Institute of the Max Planck Society, Berlin | Berlin, Berlin | Germany | about 2 months ago
aims to uncover the microscopic mechanisms governing light-induced phase transitions, electron–lattice interactions, and energy transfer in quantum materials. Research topics The successful candidate
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manipulations of malaria parasites, live cell imaging, and cryo-electron microscopic structural studies. Other duties as assigned Required Qualifications Minimum of a PhD or Doctorate in Microbiology or a related
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matter such as unconventional superconductors, fractional quantum Hall systems, and exotic metals. The goal will be to understand both the microscopic origin of these phases in different material systems
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calculation of data. Obtain, prepare, mount and stain tissue, blood and other substances for microscopic examinations. Prepare culture media, chemicals, reagents and solutions. Assist in the development of new
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a leading role in the operation of a novel THz microscope for the investigation of two-dimensional quantum materials and devices as well as low-temperature cryogenic measurements of their eletcronic
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microglial biology, using cutting-edge methodologies including: two-photon microscopy, miniatured microscope, optogenetics, behavioral phenotyping and transcriptomics. Work duties Lead independent research
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and biosensors using microscopic techniques. Measure properties with force spectroscopy. Apply magnetic force microscopy (MFM). Use Kelvin probe force microscopy (KPFM). Execute AFM assays in liquid
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frequent one-to-one time, and be supported in writing your own fellowships and presenting your work internationally. You will have access to the St. Jude Cryo-EM/ET Center, with three Titan Krios microscopes
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reviewing standard operating procedures. The role includes processing and inventorying human tissue samples and using specialist laboratory equipment such as tissue culture hoods, PCR machines, microscopes
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their microscopic world. We study how microbes adapt to their ever-changing environment, using simple and complex survival strategies. We hope to deeply understand how bacteria react and respond to stress and use