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Practical Demo on Merlin
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Related lectures (32)
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SEM basics
Covers the basics of Scanning Electron Microscopy, including setup, signals, and challenges like beam damage and charging.
Beam-Matter Interactions
Explores beam-matter interactions, thermal effects, chemical effects, atomic displacements, and matter emission mechanisms in electron microscopy.
Advanced SEM Technologies and Examples
Explores advanced SEM technologies, low voltage imaging, high-resolution SEM, and analytical capabilities with practical examples.
SEM Basics: Introduction to Electron Microscopy
Introduces the basics of scanning electron microscopy, covering electron sources, lenses, vacuum system, and detectors.
X and Gamma-ray Detectors
Explores X and gamma-ray imaging devices, semiconductor detectors, and charge transport applications in detectors.
Radiation-Matter Interaction: Electron Microscopy Introduction
Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
Scanning Electron Microscopy: Fundamentals and Applications
Covers the fundamentals of scanning electron microscopy, including electron matter interaction, imaging techniques, and related advanced topics.
Scanning Electron Microscopy Basics
Covers the basics of Scanning Electron Microscopy, including working principles, image generation, signal production, and challenges.
Electron Microscope Components
Covers the components and technologies used in electron microscopy, including detectors, lenses, aberrations, and specimen holders.
Characterization Approaches for Solid Materials
Covers fundamental characterization approaches for solid materials, focusing on elemental analysis, thermal analysis, microscopy, and neutron-based spectroscopies.