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, Raman spectroscopy and HPLC/GC-MS. Computational and Theoretical Analysis: Collaborate on DFT modeling of bond dissociation free energies (BDFE) and charge transfer energetics. Data Analysis and Reporting
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training in: Biocatalysis and enzyme screening. Natural product derivatization and purification. Analytical chemistry (NMR, LC-MS, HPLC) Mammalian cell-based pharmacology. Multidisciplinary collaboration
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characterization techniques (e.g. Raman, AFM, SEM, TGA, dynamic light scattering, spectrophotometry, electron microscopy, XPS, HPLC) Conduct biophysical studies to evaluate the diffusion, adhesion and interaction
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of enzyme libraries Setting up analytics including HPLC, LC-MS and GC-MS Protein expression, purification and characterization using biochemical and biophysical assays Variant identification using next
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droplets; use super-resolution microscopy to investigate the molecular arrangement on the surface of milk fat globules and plant lipid droplets; develop chemical analytical tools (NMR, HPLC) to track
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evaluation: Assess the activity, selectivity, and stability of electrocatalysts under relevant operating conditions Product quantification by ions chromatography, gas chromatography, and HPLC Progress
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in both wet lab work and bioinformatics analysis of Oxford Nanopore long-read sequencing data related to X-linked diseases. Skilled in proteomic methods using MALDI-TOF and HPLC-MS, including data
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nitrogen economy and addressing one of today’s most urgent environmental and energy challenges: https://www.fz-juelich.de/de/iet/iet-1. We are offering a PhD Position – Design and Integration of Efficient
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proficiency in analytical and biophysical methods, including HPLC, GC–FID/MS, spectroscopy (CD, fluorescence, nanoDSF), and interfacial tools (confocal microscopy). Have a track record of international
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(GC), Gas Chromatography-Mass Spectrometry (GC-MS), Nuclear Magnetic Resonance (NMR), 2D NMR, High-Performance Liquid Chromatography (HPLC), and metabolic profiling. Proficiency in advanced methods