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Related lectures (32)
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X-ray Tomography: Principles and Applications
Explores x-ray tomography principles, including generation, interaction with matter, detection methods, and practical examples.
A Voyage Through Time: History of Optics and Scientific Method
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.
Fluorescence Spectroscopy: Principles and Applications
Explores fluorescence spectroscopy principles, applications in photomedicine, and biological fluorophores.
Microscopy in situ and TEM Q&A
Explores in situ electron microscopy applications, traction experiments, environmental effects, XRD, and EDS.
Advances in X-ray Energy Dispersive Spectroscopy
Explores advances in X-ray Energy Dispersive Spectroscopy in modern electron microscopy, emphasizing analytical sensitivity and detection limits.
Monochromators: General Features
Introduces monochromators and their importance in selecting specific frequencies for experiments.
Magnetic Frustration Study: Co-Zn, Mn Alloys
Delves into magnetic frustration in Co-Zn, Mn alloys, exploring chiral magnetism, nanoskyrmionics, and magnetic ordering.
Beamlines: Primary Optics
Explores the practical aspects of primary optics design in beamlines, focusing on X-ray mirrors and monochromators.
Applications of Optical Spectroscopy in Photomedicine
Explores optical spectroscopy in photomedicine, emphasizing fluorescence principles, biological fluorophores, and fluorescence lifetime measurements.
X-ray Photoelectron Spectroscopy: Fundamentals and Applications
Explores X-ray Photoelectron Spectroscopy fundamentals, applications, challenges, and sputtering techniques for surface analysis.