Udemy - Advanced Materials Characterization Techniques (Analytical)

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Udemy - Advanced Materials Characterization Techniques (Analytical) (Size: 3.5 GB)
  1 - Introduction.mp4 16.1 MB
  10 - working of AFM.mp4 29.5 MB
  11 - Modes of AFM and comparison with other microscopies.mp4 31.9 MB
  12 - Limitations and Applications of AFM.mp4 22.2 MB
  13 - XPS Photoelectric effect and Xrays.mp4 56.7 MB
  14 - Binding energy kinetic energy and work function.mp4 134 MB
  15 - XPSInstrumentation.mp4 85.8 MB
  16 - Phenomenon associated with XPS.mp4 38.2 MB
  17 - Chemical Shifts and Spin Orbit Coupling.mp4 38.9 MB
  18 - Final Shake Up and Shake off Effects.mp4 21.9 MB
  19 - Angle Resolved XPS.mp4 16.2 MB
  2 - Introduction and Development of Electron Microscopy.mp4 21.2 MB
  20 - Raman Spectroscopy Raman Effects Stokes and antiStokes Shift.mp4 170 MB
  21 - Comparison of Raman with IR.mp4 28.9 MB
  22 - Raman Instrumentation.mp4 79.4 MB
  23 - Electron Energy Loss Spectroscopy.mp4 103.8 MB
  24 - Surface Plasmons and High energy Loss region.mp4 63.7 MB
  25 - White lines Fine Edge Structure in XPS Applications and Comparison with EDX.mp4 167.8 MB
  26 - EELS Spectral Analysis.mp4 66.5 MB
  27 - EDX Mechanism and Production of Xray.mp4 137.2 MB
  28 - EDX Instrumentation.mp4 186.7 MB
  29 - EDX Instrumentations II and Applications of EDX.mp4 52.7 MB
  3 - Kanaya Okayama Formula and Electron Matter interactions.mp4 86.1 MB
  30 - XRD principle and Braggs Equation.mp4 25.5 MB
  31 - XRD Instrumentation and Transmission Laue Method.mp4 187 MB
  32 - Rotating Crystal method and Powder method of XRD.mp4 74.2 MB
  33 - Spectral analysis of XRD and Small and Wide anlge Scattering SAXS WAXS.mp4 126.4 MB
  34 - Working Principle of TGA.mp4 66.5 MB
  35 - Instrumentaton of TGA with NULL and DEFLECTION Balanaces.mp4 129.6 MB
  36 - TGA instrumentation and factors affecting TGA Curve.mp4 111.7 MB
  37 - How to perform sample analysis on TGA.mp4 57.9 MB
  38 - DTA principle and Instrumentation.mp4 40.1 MB
  39 - DTA applications factors affecting the analysis.mp4 107.2 MB
  4 - SEM Instrumentation and Working Principle.mp4 95 MB
  40 - Principle of DSC DSC Types and Power Compensaton method.mp4 137.7 MB
  41 - Heat Flux Method and DSC Curves.mp4 88.9 MB
  42 - Factors affecting DSC and Applications of DSC.mp4 57.6 MB
  5 - SEM Instrumentation.mp4 271.8 MB
  6 - Transmission Electron Microscopy TEM Instrumentation and Working Principle.mp4 129.3 MB
  7 - Comparison of SEM and TEM.mp4 81.8 MB
  8 - Atomic force microscopy AFMAtomic Forces.mp4 62.2 MB
  9 - Principle of AFM.mp4 46.6 MB
  Bonus Resources.txt 409.6 B
  Get Bonus Downloads Here.url 204.8 B
  ▲ 44 total files

Description


Advanced Materials Characterization Techniques (Analytical)

https://DevCourseWeb.com

Published 11/2024
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz
Language: English | Size: 3.47 GB | Duration: 7h 46m

From Microscopy to Spectroscopy: A Comprehensive Approach, Electron Microscopy, Thermal analysis, X-ray Diffraction

What you'll learn
Students will learn the fundamental principles of various advanced materials characterization techniques and describe their applications in Materials analysis
students will learn analyzing data from advanced techniques, nstrating the ability to interpret results and correlate them with material properties
Students will be able to critically assess and select appropriate characterization techniques for different types of materials based on strengths and limitatons
Students will apply advanced characterization techniques to solve real-world materials challenges, nstrating critical thinking and problem-solving skills

Requirements
No Specific Pre-Requisite. A general science background knowledge is sufficient

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