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Lecture
Electron Microscopy: Applications in Life Sciences
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Electron Microscopy: TEM
Explores Transmission Electron Microscopy (TEM), covering diffraction patterns, image formation, and contrast mechanisms.
Protein Fibrillar Aggregation
Explores cryo-EM techniques for studying protein aggregation in neurodegenerative diseases, focusing on a-synuclein.
Cryo-EM and Parkinson's Disease
Delves into Cryo-EM's role in studying Parkinson's Disease and protein structures at the nano-level.
Electron Microscopy: In Situ
Explores electron microscopy in situ, including time-resolved techniques and environmental TEM applications.
Electron Microscopy: In Situ
Explores electron microscopy in situ, covering time-resolved techniques and environmental TEM applications for SOFC.
Radiation-Matter Interaction: Electron Microscopy Introduction
Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
Dynamical Scattering: Bend Contours
Explains the dynamical scattering effect of bend contours in TEM images of crystalline samples.
STEM: Scanning Transmission Electron Microscopy
Explores the principles of Scanning Transmission Electron Microscopy (STEM) for analytical microscopy, covering TEM diffraction, detectors, and EDS analysis.
TEM Lenses: Condenser, Objective, and Projector
Explores the roles of condenser, objective, and projector lenses in a TEM.
Microscopy in situ and TEM Q&A
Explores in situ electron microscopy applications, traction experiments, environmental effects, XRD, and EDS.