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Lecture
Frontiers in Nanoscience: Introduction and Advanced Techniques
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Related lectures (32)
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Atomic Resolution Techniques
Covers synchrotrons, x-ray lasers, and atomic resolution techniques like Cryo-EM and scanning tunneling microscopy.
Beam-Matter Interactions
Explores beam-matter interactions, thermal effects, chemical effects, atomic displacements, and matter emission mechanisms in electron microscopy.
SEM Basics: Introduction to Electron Microscopy
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Surface characterization: physical aspects
Explores surface morphology, topography, and specific surface area using advanced techniques for material characterization.
Microscope Lenses: Condenser and Objective
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Explores the function of condenser and objective lenses in a transmission electron microscope.
Electron Microscopy: Instrumentation in Life Sciences
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TEM Lenses: Condenser, Objective, and Projector
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Dynamical Scattering: Bend Contours
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Explains the dynamical scattering effect of bend contours in TEM images of crystalline samples.
Nanoparticles: SEM and EDX Analysis
Explores SEM and EDX analysis of nanoparticles, colloidal crystal assembly, and agglomeration processes.
Microscopy: General Aspects and Techniques
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Covers general aspects and techniques of microscopy, emphasizing resolution importance and exploring scanning tunneling and atomic force microscopy.
Scanning Electron Microscopy
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Explores Scanning Electron Microscopy principles, signal contrasts, resolution factors, and sample interactions.
Electron Microscopy: TEM
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Explores Transmission Electron Microscopy (TEM), covering diffraction patterns, image formation, and contrast mechanisms.
Radiation-Matter Interaction: Electron Microscopy Introduction
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Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
Electron Microscopy: Basics and Techniques
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Introduces the basics of electron microscopy, covering components, interactions, imaging modes, and nanofabrication techniques.
High Resolution TEM: Imaging and Contrast
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Explores High Resolution TEM principles for atomic-level crystal imaging.
Scanning Electron Microscopy Basics
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Covers the basics of Scanning Electron Microscopy, including working principles, image generation, signal production, and challenges.
STEM: Scanning Transmission Electron Microscopy
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Explores Scanning Transmission Electron Microscopy (STEM) principles, detectors, contrast mechanisms, and applications in high-resolution imaging.
SEM basics
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Covers the basics of Scanning Electron Microscopy, including setup, signals, and challenges like beam damage and charging.
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