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Scanning transmission electron microscopy
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Related lectures (32)
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STEM and EDX
Covers STEM and EDX principles, X-ray generation, quantification methods, and analytical TEM applications.
Transmission Electron Microscopy: Imaging and Diffraction
Explores the operation of a Transmission Electron Microscope, covering imaging modes and lens effects.
Beam-Matter Interactions
Explores beam-matter interactions, thermal effects, chemical effects, atomic displacements, and matter emission mechanisms in electron microscopy.
Transmission Electron Microscopy: basics
Covers the principles, applications, and components of Transmission Electron Microscopy (TEM), including imaging modes and advanced techniques.
Electron Microscopy Components
Covers electron microscope components, vacuum systems, aberrations, detectors, and specimen holders.
Electron Microscopy: EDS and ESEM
Explores EDS and ESEM principles, x-ray detection, ionization efficiency, Moseley's law, and ESEM sample environments.
STEM & EDX: Electron Microscopy Principles
Covers electron microscopy principles, detectors, and contrast mechanisms.
Transmission Electron Microscopy: Operation and Imaging
Explores the operation and imaging techniques of Transmission Electron Microscopy (TEM), including service mode setup and digital micrograph usage.
Transmission Electron Microscopy: Weak Phase Object Approximation
Explains the principles of Transmission Electron Microscopy focusing on the Weak Phase Object Approximation.
Introduction to TEM
Covers the basics of transmission electron microscopy, including components, operation, imaging modes, diffraction analysis, and the interaction of high-energy electrons with matter.
Electron Microscopy: Applications in Life Sciences
Explores Cryo-Electron Microscopy principles, workflows, resolution revolution, applications in life sciences, and microfluidics.
Electron Microscopy: Basics and Techniques
Introduces the basics of electron microscopy, covering components, interactions, imaging modes, and nanofabrication techniques.
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