Solid State Chemistry and its Applications 2/e (2版)
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Solid State Chemistry and its Applications 2/e
+作者:West
+年份:2022 年2 版
+ISBN:9781118447444
+書號:CE0307HC
+規格:精裝/彩色
+頁數:900
+出版商:John Wiley
目錄
1 Crystal Structures, Crystal Chemistry, Symmetry and Space Groups
2 Crystal Defects, Non-stoichiometry and Solid Solutions
3 Bonding in Solids
4 Synthesis, Processing and Fabrication Methods
5 Crystallography and Diffraction Techniques
6 Other Characterisation Techniques: Microscopy, Spectroscopy, Thermal Analysis
7 Phase Diagrams and Their Interpretation
8 Electrical Properties
9 Magnetic Properties
10 Optical Properties: Luminescence, Lasers and Transparent Conductors
11 Heterogeneous Materials, Electroceramics and Impedance Spectroscopy
12 Thermal and Thermoelectric Properties
13 Functional Materials: Some Important Examples
14 Glass
15 Structural Materials: Cement, Refractories and Structural Ceramics
16 Oxides of the Elements, Their Properties and Uses
Appendix A: Interplanar Spacings and Unit Cell Volumes
Appendix B: Model Building
Appendix C: Geometrical Considerations in Crystal Chemistry
Appendix D: The Elements and Some of Their Properties
Appendix E: The 32 Crystallographic Point Groups
Appendix F: The Arrhenius Equation for Ionic Conductivity
Appendix G: A Guide to the Use of Electrode Potentials
原價:
1760
售價:
1637
現省:
123元
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Solid State Physics (1版)
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書名: SOLID STATE PHYSICS
作者:ASHCROFT
出版社:Cengage
ISBN:9780357670811
內容簡介
1. The Drude Theory of Metals
2. The Sommerfeld Theory of Metals
3. Failures of the Free Electron Model
4. Crystal Lattices
5. The Reciprocal Lattice
6. Determination of Crystal Structures by X-Ray Diffraction
7. Classification of Bravais Lattices and Crystal Structures
8. Electron Levels in a Periodic Potential: General Properties
9. Electrons in a Weak Periodic Potential
10. The Tight-Binding Method
11. Other Methods for Calculating Band Structure
12. The Semiclassical Model of Electron Dynamics
13. The Semiclassical Theory of Conduction in Metals
14. Measuring the Fermi Surface
15. Band Structure of Selected Metals
16. Beyond the Relaxation-Time Approximation
17. Beyond the Independent Electron Approximation
18. Surface Effects
19. Classification of Solids
20. Cohesive Energy 395
21. Failures of the Static Lattice Model 415
22. Classical Theory of the Harmonic Crystal
23. Quantum Theory of the Harmonic Crystal
24. Measuring Phonon Dispersion Relations
25. Anharmonic Effects in Crystals
26. Phonons in Metals
27. Dielectric Properties of Insulators
28. Homogeneous Semiconductors
29. Inhomogeneous Semiconductors
30. Defects in Crystals
31. Diamagnetism and Paramagnetism
32. Electron Interactions and Magnetic Structure
33. Magnetic Ordering
34. Superconductivity
APPENDICES
A. Summary of Important Numerical Relations in the Free Electron Theory of Metals
B. The Chemical Potential
C. The Sommerfeld Expansion
D. Plane-Wave Expansions of Periodic Functions in More Than One Dimension
E. The Velocity and Effective Mass of Bloch Electrons
F. Some Identities Related to Fourier Analysis of Periodic Systems
G. The Variational Principle for Schrodinger's Equation
H. Hamiltonian Formulation of the Semiclassical Equations of Motion, and Liouville' s Theorem
I. Green's Theorem for Periodic Functions
J. Conditions for the Absence of Interband Transitions in Uniform Electric or Magnetic Fields
K. Optical Properties of Solids
L. Quantum Theory of the Harmonic Crystal
M. Conservation of Crystal Momentum
N. Theory of the Scattering of Neutrons by a Crystal
O. Anharmonic Terms and n-Phonon Processes
P. Evaluation of the Lande g-Factor
原價:
1980
售價:
1881
現省:
99元
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From LED to Solid State Lighting: Principles, Materials, Packaging, Characterization, and Applications
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FROM LED TO SOLID STATE LIGHTING
A comprehensive and practical reference complete with hands-on exercises and experimental data
In From LED to Solid State Lighting: Principles, Materials, Packaging, Characterization, and Applications, accomplished mechanical engineers Shi-Wei Ricky Lee, Jeffery C. C. Lo, Mian Tao, and Huaiyu Ye deliver a practical overview of the design and construction of LED lighting modules, from the fabrication of the LED chip to the LED modules incorporated in complete LED lighting fixtures. The distinguished authors discuss the major advantages of solid-state lighting, including energy savings, environmental friendliness, and lengthy operational life, as well as the contributions offered by the packaging of light-emitting diodes in the pursuit of these features.
Readers will discover presentations of the technical issues that arise in packaging LED components, like interconnection, phosphor deposition, and encapsulation. They’ll also find insightful elaborations on optical design, analysis, and characterization. Discussions of LED applications, technology roadmaps, and IP issues round out the included material.
This important book also includes:
Thorough introductions to lighting, photometry, and colorimetry, the fundamentals of light-emitting diodes, and the fabrication of LED wafers and chips
Practical discussions of the packaging of LED chips, wafer-level packaging of LED arrays, and optical and electrical characterization
Comprehensive explorations of board-level assembly and LED modules and optical and electrical characterization
In-depth examinations of thermal management, reliability engineering for LED packaging, and applications for general lighting
Perfect for post-graduate students and practicing engineers studying or working in the field of LED manufacturing for solid state lighting applications, From LED to Solid State Lighting: Principles, Materials, Packaging, Characterization, and Applications is also an indispensable resource for managers and technicians seeking a one-stop guide to the subject.
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