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laboratory space. For in-situ studies, we have differential electrochemical mass-spectrometry, GC, electrochemical quartz crystal microbalance with dissipation monitoring EQCM-D, and in-situ FTIR/Raman
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laboratories, as available instruments (e.g., gas chromatography or mass spectrometry) are bulky, costly and have to be operated by trained personnel. Project background Chemo-resistive gas sensors based
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of environmental microbiomes We seek applications from individuals with a strong background in metabolomics and/or systems biology as well as mass spectrometry who are keen to explore novel avenues for assessing
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the Swiss NSF, will utilize noble gas mass spectrometry. It may also include various methods to resolve and identify carriers of the various noble gas components spatially, physically, and chemically, using
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cultures and environmental gradients in nitrogen availability, a suite of biomarker lipids will be targeted, from bacterial fatty acids to novel compounds identified using high-resolution mass spectrometry
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chemistry techniques, including liquid chromatography, gas chromatography, and/or mass spectrometry Experience with laboratory information management platforms or interest to learn Experience with laboratory
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monodispersity, with droplet volumes in the range of pico- to nanoliters. The technique is used in combination with optical methods such as fluorescence spectroscopy. In addition, we use mass spectrometry for more
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chemistry laboratory space. For in-situ studies, we have differential electrochemical mass-spectrometry, electrochemical quartz crystal microbalance with dissipation monitoring EQCM-D, and in-situ FTIR. Job