
Fundamentals of Energy Dispersive X-Ray Analysis
Butterworths Monographs in Materials
- 314 pages
- English
- PDF
- Available on iOS & Android
Fundamentals of Energy Dispersive X-Ray Analysis
Butterworths Monographs in Materials
About this book
Fundamentals of Energy Dispersive X-ray Analysis provides an introduction to the fundamental principles of dispersive X-ray analysis. It presents descriptions, equations, and graphs to enable the users of these techniques to develop an intuitive and conceptual image of the physical processes involved in the generation and detection of X-rays. The book begins with a discussion of X-ray detection and measurement, which is accomplished by one of two types of X-ray spectrometer: energy dispersive or wavelength dispersive. The emphasis is on energy dispersive spectrometers, given their rather widespread use compared to the wavelength dispersive type. This is followed by separate chapters on techniques such as X-ray absorption; spectrum processing; and elimination of spectrum background produced by electron excitation. Subsequent chapters cover X-ray fluorescence; the use of regression models; hardware for X-ray fluorescence analysis; scattering, background, and trace element analysis; and methods for producing inner shell excitation of atoms in a sample of interest. The final chapter deals with applications of X-ray analysis.
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Table of contents
- Front Cover
- Fundamentals of Energy Dispersive X-Ray Analysis
- Copyright Page
- Table of Contents
- Chapter 1. X-Ray Emission
- Chapter 2. Wavelength Dispersive Spectrometers
- Chapter 3. Energy Dispersive Spectrometers
- Chapter 4. Electron Penetration in Solids
- Chapter 5. Monte-Carlo Modelling
- Chapter 6. X-Ray Absorption
- Chapter 7. Secondary Fluorescence
- Chapter 8. Applying the Corrections(Quantitative Analysis)
- Chapter 9. Standards:Real, Complex and Imaginary
- Chapter 10. Accuracy and Errors
- Chapter 11. Spectrum Processing
- Chapter 12. Background in Electron Excited Spectra
- Chapter 13. Thin Sections in STEM and TEM
- Chapter 14. Ultra - Low Energies
- Chapter 15. X-ray Distribution Maps
- Chapter 16. Heterogeneous Samples
- Chapter 17. Less Common Methods
- Chapter 18. X-ray Fluorescence - Fundamentals
- Chapter 19. Regression Models
- Chapter 20. Hardware for XRF
- Chapter 21. Sample Effects
- Chapter 22. Scattering, Background and Trace Element Analysis
- Chapter 23. Modifying the Excitation Function
- Chapter 24. Other Ways to Excite the Sample
- Chapter 25. Sorting, Tagging, and Matching
- Chapter 26. Conclusions
- References
- Index