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Lecture
Super Resolution Microscopy: PALM and STORM
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Super Resolution Microscopy: STED Method
Explores the principles and applications of Super Resolution Microscopy using the STED method for achieving high-resolution imaging.
Confocal Microscopy: Imaging Techniques and Applications
Explores the principles and applications of confocal microscopy, emphasizing advantages in imaging techniques and quality factors.
Scanning Probe Microscopy: Fundamentals and Applications
Explores the fundamentals and applications of scanning probe microscopy, including STM setup, surface reconstruction, quantum tunneling, and scanning force microscopy.
Super-Resolution Microscopy: Localization and Resolution
Explains super-resolution microscopy principles and the importance of molecule density for resolution.
Fluorescence: High Contrast Imaging Technique
Explores fluorescence microscopy, high contrast imaging, specificity, and quantum nature of light.
Optical Microscopy: Fundamentals and Aberrations
Covers the fundamentals of optical microscopy, including its non-invasive nature and major aberrations.
Introduction and Interaction with Radiation-Matter
Introduces electron microscopy, covering practical organization, sample preparation, radiation-matter interaction, and detector mechanisms.
Radiation-Matter Interaction: Electron Microscopy Introduction
Covers the principles and techniques of electron microscopy, focusing on the interaction between radiation and matter.
Microscopic Analyses & Electron Sources
Covers microscopic analyses using optical and electron microscopy, as well as electron sources.
Introduction to Liquid Crystals
Covers the visualization, microscopy techniques, identification, and formation of liquid crystals, including phase transitions and 3D printing.