Explores beam-matter interactions, focusing on emission phenomena from core electron ionization by X-Rays and electrons, and the competition between Auger and X-Rays emissions.
Explains chromatography principles for protein purification, covering peak broadening causes, band broadening components, and common stationary phases.
Explores quantitative proteome profiling for drug target identification through activity-based protein profiling and advanced mass spectrometry techniques.
Covers the principles and applications of ion chromatography, focusing on the analysis of ionic and ionizable molecules using liquid chromatography techniques.
Covers protein mass spectrometry, proteomics fundamentals, ionization sources, analyzers, detectors, mass accuracy, resolution, and various ionization methods.
Explores protein mass spectrometry, proteomics techniques, sample preparation, separation methods, quantitative workflows, bioinformatics, and applications in biology.