Handbook of XRay Spectrometry 2nd Edition by Rene Van Grieken, Andzej Markowicz – Ebook PDF Instant Download/Delivery: 0824706005 ,9780824706005
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ISBN 10: 0824706005
ISBN 13: 9780824706005
Author: Rene Van Grieken, Andzej Markowicz
Handbook of XRay Spectrometry 2nd Edition Table of contents:
Chapter 1: Introduction to X-Ray Spectrometry
- Overview of X-Ray Spectrometry
- Historical Development and Key Milestones
- Principles of X-Ray Emission and Absorption
- Types of X-Ray Spectrometry Techniques: XRF, XRD, and Others
- Basic Theory of X-Ray Interaction with Matter
Chapter 2: Fundamental Principles of X-Ray Spectrometry
- Atomic and Molecular Structure: X-ray Transitions
- X-Ray Absorption and Emission Processes
- X-Ray Fluorescence (XRF) Theory
- X-Ray Diffraction (XRD) Basics
- The Role of X-Ray Spectroscopy in Analytical Chemistry
Chapter 3: Instrumentation for X-Ray Spectrometry
- Components of X-Ray Spectrometers
- X-Ray Sources and Their Characteristics
- Detectors Used in X-Ray Spectrometry
- Optical Systems and Filters
- Sample Handling and Preparation for X-Ray Analysis
Chapter 4: X-Ray Fluorescence (XRF) Spectrometry
- Theory and Principles of XRF
- Applications of XRF in Elemental Analysis
- Wavelength-Dispersive vs. Energy-Dispersive XRF
- Quantitative Analysis Using XRF
- Calibration and Standardization Techniques in XRF
- Limitations and Advantages of XRF
Chapter 5: X-Ray Diffraction (XRD) Spectrometry
- Principles of XRD and Crystal Structures
- Applications of XRD in Material Science
- Analyzing Diffraction Patterns
- Phase Identification and Quantitative Analysis
- Techniques for Non-Crystalline Materials Using XRD
- Recent Advances in XRD Spectrometry
Chapter 6: Other X-Ray Spectrometry Techniques
- X-Ray Absorption Spectroscopy (XAS)
- X-Ray Photoelectron Spectroscopy (XPS)
- X-Ray Computed Tomography (CT)
- X-Ray Microanalysis and Imaging Techniques
- Advancements in Synchrotron Radiation and High-Energy X-Ray Sources
Chapter 7: Applications of X-Ray Spectrometry
- Environmental and Geological Analysis
- X-Ray Spectrometry in Biochemical and Biomedical Studies
- Industrial Applications: Coatings, Metals, and Alloys
- Art Conservation and Archaeological Studies
- X-Ray Spectrometry in Pharmaceuticals and Forensic Science
- Applications in Nanotechnology and Material Science
Chapter 8: Data Analysis and Interpretation
- Data Processing Techniques for X-Ray Spectrometry
- Peak Identification and Quantification Methods
- Statistical Approaches to X-Ray Data
- Dealing with Interferences in X-Ray Spectra
- Software Tools for X-Ray Spectrometry Data Analysis
- Case Studies: Interpreting Complex Data Sets
Chapter 9: Calibration and Standardization in X-Ray Spectrometry
- Calibration Methods for XRF and XRD
- Standards and Reference Materials in X-Ray Spectrometry
- Ensuring Accuracy and Precision in Measurements
- Dealing with Matrix Effects
- Trace Element Analysis and Detection Limits
Chapter 10: Advances in X-Ray Spectrometry
- New Developments in Detector Technology
- High-Resolution and High-Energy X-Ray Systems
- Nanostructure Analysis Using X-Ray Spectrometry
- Integration with Other Analytical Techniques
- Recent Breakthroughs and Future Trends in X-Ray Spectrometry
Chapter 11: Safety and Environmental Considerations in X-Ray Spectrometry
- Radiation Safety Protocols and Guidelines
- Safety Equipment and Procedures for X-Ray Laboratories
- Environmental Impact of X-Ray Spectrometry
- Disposal and Handling of Hazardous Materials
- Regulatory Standards in X-Ray Instrumentation and Analysis
Appendices
- A: Commonly Used X-Ray Spectrometry Equipment Manufacturers
- B: Glossary of Key Terms in X-Ray Spectrometry
- C: Further Reading and References
- D: Sample Calculation and Data Analysis Exercises
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Rene Van Grieken,Andzej Markowicz,XRay Spectrometry