Advances in Imaging and Electron Physics
By Peter W. Hawkes, Benjamin Kazan and Tom Mulvey
"Advances in Imaging and Electron Physics" was published by Elsevier Science & Technology Books in 2011 - San Diego, it has 266 pages and the language of the book is English.
“Advances in Imaging and Electron Physics” Metadata:
- Title: ➤ Advances in Imaging and Electron Physics
- Authors: Peter W. HawkesBenjamin KazanTom Mulvey
- Language: English
- Number of Pages: 266
- Publisher: ➤ Elsevier Science & Technology Books
- Publish Date: 2011
- Publish Location: San Diego
“Advances in Imaging and Electron Physics” Subjects and Themes:
- Subjects: ➤ Traitement d'images - Infographie - Fisica geral - Electron microscopes - Electron optics - Electrons - Image processing - Imaging systems - Optoelectronic devices - Electronics - Optical data processing - Nuclear physics - Electric meters - Électrons - Électronique - Electronic engineering - TECHNOLOGY & ENGINEERING - Mechanical - SCIENCE - Life Sciences - Botany
Edition Identifiers:
- The Open Library ID: OL33397286M - OL16959776W
- ISBN-13: 9780123859822
- All ISBNs: 9780123859822
AI-generated Review of “Advances in Imaging and Electron Physics”:
"Advances in Imaging and Electron Physics" Description:
Open Data:
Front cover -- Advances in Imaging and Electron Physics -- Copyright -- Table of Contents -- Preface -- List of Contributors -- Future Contributions -- Chapter 1 Morphological Texture Description of Grey-Scale and Color Images -- 1. Introduction -- 2. Texture Description and Classification -- 3. Basics of Mathematical Morphology -- 3.1. Theoretical Foundations -- 3.2. Erosion and Dilation -- 3.3. Opening and Closing -- 3.4. Algebraic Filters -- 4. Morphological Approaches to Texture Description -- 4.1. Advantages of Morphological Texture Features -- 4.2. Principles of Morphological Series and Size-Distribution Feature -- 4.3. Distance-Orientation Distributions -- 4.4. Rotation and Illumination Invariant Distributions -- 4.5. Size-Shape Distributions -- 4.6. Distance-Orientation-Size -- 4.7. Other Approaches -- 5. Extension to Color -- 5.1. Color Mathematical Morphology -- 5.1.1. Color Space Choice -- 5.1.2. Vector Orderings -- 5.1.2.1. Partial Orderings (Marginal) -- 5.1.2.2. Total Pre-Orderings -- 5.1.2.3. Total orderings -- 5.2. Color Morphological Texture Description -- 6. Implementation Efficiency -- 7. Applications -- 7.1. General-Purpose Texture Segmentation and Classification -- 7.2. Content-Based Image Retrieval -- 7.3. Biomedical Imaging -- 7.4. Remote Sensing -- 7.5. Industrial Texture Inspection and Classification -- 7.6. Geology -- 8. Experiments -- 8.1. Outex -- 8.2. Experiment 1 -- 8.3. Experiment 2 -- 8.3.1. Feature Sets and Classification -- 8.3.2. Noise Free Classification -- 8.3.3. Noise Robustness -- 8.4. Experiment 3 -- 9. Conclusion -- References -- Chapter 2 Electron Microscopy of Ultracold Gases -- 1. Introduction -- 2. Ultracold Atomic Gases -- 2.1. Ultracold Atoms -- 2.2. Properties -- 2.3. Production -- 2.3.1. The 2D Magneto-Optical Trap (MOT) -- 2.3.2. The 3D MOT -- 2.3.3. The Optical Trap: Evaporative Cooling
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