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Advanced TEM for Materials Science
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Related lectures (32)
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Dynamical Effects: Thickness Fringes
Delves into the dynamical scattering effect of thickness fringes in TEM images, covering equations, intensity plots, and weak beam imaging.
Electron Diffraction: Crystallographic Structure Analysis
Covers the theory and applications of electron diffraction in materials science.
Zero resistance: Superconductivity basics
Introduces the basics of superconductivity, including zero resistance, magnetic field expulsion, and critical current concepts.
Radiation-Matter Interaction: Electron Microscopy Introduction
Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
Electricity: From Micro to Macro
Explores the vast spectrum of electricity, from nanoscale currents to megavolt lightning strikes.
Sample Preparation: Techniques and Methods
Discusses the importance of sample preparation in electron microscopy and various techniques involved.
Protein Fibrillar Aggregation
Explores cryo-EM techniques for studying protein aggregation in neurodegenerative diseases, focusing on a-synuclein.
Itinerant Magnetism: Kondo Effect
Explores itinerant magnetism in metals, highlighting the Kondo effect and its implications on material properties.
Electron Tomography
Explores 3D Microscopy and Tomography techniques, including Atom Probe Tomography and Field Emission Microscopy, emphasizing electron tomography principles and applications.
Introduction and Interaction with Radiation-Matter
Introduces electron microscopy, covering practical organization, sample preparation, radiation-matter interaction, and detector mechanisms.