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Transmission electron microscopy : a textbook for materials science
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
The Transmission Electron Microscope
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Chapter 2
Scattering and Diffraction
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Chapter 3
Elastic Scattering
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Chapter 4
Inelastic Scattering and Beam Damage
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Chapter 5
Electron Sources
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Chapter 6
Lenses, Apertures, and Resolution
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Chapter 7
How to “See” Electrons
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Chapter 8
Pumps and Holders
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Chapter 9
The Instrument
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Chapter 10
Specimen Preparation
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Chapter 11
Diffraction Patterns
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Chapter 12
Thinking in Reciprocal Space
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Chapter 13
Diffracted Beams
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Chapter 14
Bloch Waves
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Chapter 15
Dispersion Surfaces
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Chapter 16
Diffraction from Crystals
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Chapter 17
Diffraction from Small Volumes
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Chapter 18
Indexing Diffraction Patterns
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Chapter 19
Kikuchi Diffraction
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Chapter 20
Obtaining CBED Patterns
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Chapter 21
Using Convergent-Beam Techniques
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Chapter 22
Imaging in the TEM
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Chapter 23
Thickness and Bending Effects
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Chapter 24
Planar Defects
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Chapter 25
Strain Fields
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Chapter 26
Weak-Beam Dark-Field Microscopy
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Chapter 27
Phase-Contrast Images
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Chapter 28
High-Resolution TEM
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Chapter 29
Image Simulation
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Chapter 30
Quantifying and Processing HRTEM Images
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Chapter 31
Other Imaging Techniques
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Chapter 32
X-ray Spectrometry
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Chapter 33
The XEDS-TEM Interface
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Chapter 34
Qualitative X-ray Analysis
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Chapter 35
Quantitative X-ray Microanalysis
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Chapter 36
Spatial Resolution and Minimum Detectability
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Chapter 37
Electron Energy-Loss Spectrometers
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Chapter 38
The Energy-Loss Spectrum
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Chapter 39
Microanalysis with Ionization-Loss Electrons
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Chapter 40
Everything Else in the Spectrum
Overall attention for this book and its chapters
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Mentioned by
blogs
1
blog
twitter
2
X users
syllabi
5
institutions with syllabi
wikipedia
16
Wikipedia pages
Citations
dimensions_citation
2839
Dimensions
Readers on
mendeley
10
Mendeley
Book overview
1. The Transmission Electron Microscope
2. Scattering and Diffraction
3. Elastic Scattering
4. Inelastic Scattering and Beam Damage
5. Electron Sources
6. Lenses, Apertures, and Resolution
7. How to “See” Electrons
8. Pumps and Holders
9. The Instrument
10. Specimen Preparation
11. Diffraction Patterns
12. Thinking in Reciprocal Space
13. Diffracted Beams
14. Bloch Waves
15. Dispersion Surfaces
16. Diffraction from Crystals
17. Diffraction from Small Volumes
18. Indexing Diffraction Patterns
19. Kikuchi Diffraction
20. Obtaining CBED Patterns
21. Using Convergent-Beam Techniques
22. Imaging in the TEM
23. Thickness and Bending Effects
24. Planar Defects
25. Strain Fields
26. Weak-Beam Dark-Field Microscopy
27. Phase-Contrast Images
28. High-Resolution TEM
29. Image Simulation
30. Quantifying and Processing HRTEM Images
31. Other Imaging Techniques
32. X-ray Spectrometry
33. The XEDS-TEM Interface
34. Qualitative X-ray Analysis
35. Quantitative X-ray Microanalysis
36. Spatial Resolution and Minimum Detectability
37. Electron Energy-Loss Spectrometers
38. The Energy-Loss Spectrum
39. Microanalysis with Ionization-Loss Electrons
40. Everything Else in the Spectrum
Summary
Blogs
X
Syllabi
Wikipedia
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
9
syllabi from
5
institutions on Open Syllabus Project.
Institution
Syllabi count
Course subject areas covered
Cornell University
1
Engineering
University of Nevada-Reno
1
Engineering
University of Florida
1
Unknown
University of Southern California
1
Unknown
Unknown
5
Earth Sciences, Chemistry, Biology