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Explores electron spectroscopy, graphene properties, and spin polarization effects, offering insights into optimizing material properties and potential applications.
Explores the historical development of optics, the scientific method, and the arrow of time, highlighting major paradigm shifts and the cultural differences between religion and science.
Explores chemical transformations in (photo) electrocatalytic materials, including interface engineering, CO₂ reduction, and advanced characterization techniques.
Explores applications of micron and submicron focusing, crystallography, and tomographic reconstructions in beamlines, as well as the need for secondary optics and different types of lenses.
Explores advanced catalyst characterization techniques, including CO stretching frequency shifts on Pt surfaces and reflection techniques for studying events at interfaces.
Explores light dosimetry in tissues for photomedicine applications, covering mechanisms of light therapy, laser classification, and the influence of laser parameters on treatment outcomes.