riversongs Posted November 27, 2024 Report Share Posted November 27, 2024 Free Download Advanced Materials Characterization Techniques (Analytical)Published 11/2024MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHzLanguage: English | Size: 3.47 GB | Duration: 7h 46mFrom Microscopy to Spectroscopy: A Comprehensive Approach, Electron Microscopy, Thermal analysis, X-ray DiffractionWhat you'll learnStudents will learn the fundamental principles of various advanced materials characterization techniques and describe their applications in Materials analysisstudents will learn analyzing data from advanced techniques, demonstrating the ability to interpret results and correlate them with material propertiesStudents will be able to critically assess and select appropriate characterization techniques for different types of materials based on strengths and limitatonsStudents will apply advanced characterization techniques to solve real-world materials challenges, demonstrating critical thinking and problem-solving skillsRequirementsNo Specific Pre-Requisite. A general science background knowledge is sufficientDescriptionThis course provides an in-depth exploration of cutting-edge techniques used to characterize materials at the micro and nanoscale. Designed for graduate students and professionals in materials science, engineering, and related fields, the course will cover a range of advanced characterization methods, including:Electron Microscopy: Techniques such as Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM), Auger Electron Microscopy for high-resolution imaging and analysis.X-ray Diffraction (XRD): Understanding crystal structures and phase identification in materials.Spectroscopic Methods: in depth understanding of spectroscopic techniques like Raman Spectroscopy, energy dispersive x-ray spectroscopy, and x-ray photoelectron spectroscopy.Thermal Analysis: Exploring Differential Scanning Calorimetry (DSC), differential thermal analysis (DTA) and Thermogravimetric Analysis (TGA) to study thermal properties.Atomic Force Microscopy: Microscopy at the level will be studied through Atomic force microscopy commonly known as AFM.Through a series of lectures, and case studies, students will gain practical experience in selecting and applying the appropriate characterization techniques for various materials. The course will also emphasize the importance of data interpretation and the role of advanced characterization in materials development and innovation.By the end of the course, participants will be equipped with the skills and knowledge necessary to conduct comprehensive materials characterization, enabling them to contribute to advancements in material design and application across multiple industries.OverviewSection 1: IntroductionLecture 1 IntroductionSection 2: Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM)Lecture 2 Introduction and Development of Electron MicroscopyLecture 3 Kanaya Okayama Formula and Electron Matter interactionsLecture 4 SEM Instrumentation and Working PrincipleLecture 5 SEM InstrumentationLecture 6 Transmission Electron Microscopy (TEM) Instrumentation and Working PrincipleLecture 7 Comparison of SEM and TEMSection 3: Atomic Force Microscopy (AFM)Lecture 8 Atomic force microscopy (AFM)-Atomic ForcesLecture 9 Principle of AFMLecture 10 working of AFMLecture 11 Modes of AFM and comparison with other microscopiesLecture 12 Limitations and Applications of AFMSection 4: X-ray photoelectron spectroscoy (XPS) and Auger Electron Spectroscopy (AES)Lecture 13 XPS- Photoelectric effect and X-raysLecture 14 Binding energy, kinetic energy and work functionLecture 15 XPS-InstrumentationLecture 16 Phenomenon associated with XPSLecture 17 Chemical Shifts and Spin Orbit CouplingLecture 18 Final Shake Up and Shake off EffectsLecture 19 Angle Resolved XPSSection 5: Raman SpectroscopyLecture 20 Raman Spectroscopy, Raman Effects (Stokes and anti-Stokes Shift)Lecture 21 Comparison of Raman with IRLecture 22 Raman InstrumentationSection 6: Electron Energy Loss SpectroscopyLecture 23 Electron Energy Loss SpectroscopyLecture 24 Surface Plasmons and High energy Loss regionLecture 25 White lines, Fine Edge Structure in XPS, Applications and Comparison with EDXLecture 26 EELS Spectral AnalysisSection 7: Energy Dispersive X-Ray Spectroscopy (EDS or EDX)Lecture 27 EDX, Mechanism and Production of X-rayLecture 28 EDX InstrumentationLecture 29 EDX Instrumentations II and Applications of EDXSection 8: X-ray Diffraction Analysis (XRD)Lecture 30 XRD principle and Bragg's EquationLecture 31 XRD Instrumentation and Transmission Laue MethodLecture 32 Rotating Crystal method and Powder method of XRDLecture 33 Spectral analysis of XRD and Small and Wide anlge Scattering (SAXS, WAXS)Section 9: Thermogravimetric Analysis (TGA)Lecture 34 Working Principle of TGALecture 35 Instrumentaton of TGA with NULL and DEFLECTION BalanacesLecture 36 TGA instrumentation and factors affecting TGA CurveLecture 37 How to perform sample analysis on TGASection 10: Differential Thermal AnalysisLecture 38 DTA principle, and InstrumentationLecture 39 DTA applications, factors affecting the analysisSection 11: Differential Scanning CalorimetryLecture 40 Principle of DSC, DSC Types and Power Compensaton methodLecture 41 Heat Flux Method and DSC CurvesLecture 42 Factors affecting DSC and Applications of DSCThe course aims to provide a comprehensive understanding of advanced materials characterization techniques, enabling students to leverage these methods to advance their research, enhance material performance, and contribute to technological innovations. This course is particularly helpful for: Graduate Students, Research Professionals, Materials Scientists, Materials Engineers and Interdisciplinary scientistHomepagehttps://www.udemy.com/course/advanced-materials-characterization-techniques-analytical/Download ( Rapidgator )https://rg.to/file/2d5bc8e5129f59e73fb5c73fba9bd0ea/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part3.rar.htmlhttps://rg.to/file/75b2a01501d0c2cc7bb3e7243ec9b61a/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part1.rar.htmlhttps://rg.to/file/8aa62301b5dbc8ef8fc11d4624067b7e/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part4.rar.htmlhttps://rg.to/file/f16d34cd3b4d74b1e3366e4d6f601390/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part2.rar.htmlFikperhttps://fikper.com/AqFnf34YVr/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part2.rar.htmlhttps://fikper.com/HAWFWqLq6t/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part1.rar.htmlhttps://fikper.com/l3jsY1xX1t/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part3.rar.htmlhttps://fikper.com/zaCyDXEz9y/mapgr.Advanced.Materials.Characterization.Techniques.Analytical.part4.rar.htmlNo Password - Links are Interchangeable Link to comment Share on other sites More sharing options...
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