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Condensed matter physics
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498
Table of contents
498
1. Chemical bonding
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Condensed matter physics
145
1.1. Chemical bond properties
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Chemical bonding
9
1.1.1. Activation of cyclopropanes by transition metals
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Chemical bond properties
1.1.2. Bond-dissociation energy
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Chemical bond properties
1.1.3. Bond energy
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Chemical bond properties
1.1.4. Bond order
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Chemical bond properties
1.1.5. Cis effect
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Chemical bond properties
1.1.6. Fluxional molecule
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Chemical bond properties
1.1.7. Group 13/15 multiple bonds
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Chemical bond properties
1.1.8. Pi electron donor-acceptor
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Chemical bond properties
1.1.9. Sigma electron donor-acceptor
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Chemical bond properties
1.2. 18-electron rule
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Chemical bonding
1.3. Agostic interaction
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Chemical bonding
1.4. Anodic bonding
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Chemical bonding
1.5. Antibonding molecular orbital
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Chemical bonding
1.6. Atoms in molecules
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Chemical bonding
1.7. Aurophilicity
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Chemical bonding
1.8. Bent bond
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Chemical bonding
1.9. Binding site
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Chemical bonding
1.10. Bioconjugation
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Chemical bonding
1.11. Bond cleavage
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Chemical bonding
1.12. Bond valence method
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Chemical bonding
1.13. Bonding electron
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Chemical bonding
1.14. Bonding molecular orbital
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Chemical bonding
1.15. Carbon-carbon bond activation
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Chemical bonding
1.16. Carbon–carbon bond
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Chemical bonding
1.17. Carbon–fluorine bond
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Chemical bonding
1.18. Carbon–hydrogen bond
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Chemical bonding
1.19. Carbon–nitrogen bond
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Chemical bonding
1.20. Carbon–oxygen bond
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Chemical bonding
1.21. Cation–π interaction
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Chemical bonding
1.22. Chalcogen bond
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Chemical bonding
1.23. Charge-shift bond
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Chemical bonding
1.24. Chemical bond
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Chemical bonding
1.25. Chemical bonding model
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Chemical bonding
1.26. Chemical bonding of water
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Chemical bonding
1.27. Chemical specificity
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Chemical bonding
1.28. Compliance constants
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Chemical bonding
1.29. Cooperative binding
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Chemical bonding
1.30. Cooperativity
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Chemical bonding
1.31. Coordinate covalent bond
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Chemical bonding
1.32. Covalent bond
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Chemical bonding
1.33. Covalent bond classification method
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Chemical bonding
1.34. Covalent radius
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Chemical bonding
1.35. Criegee intermediate
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Chemical bonding
1.36. Cross-conjugation
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Chemical bonding
1.37. Cyclodipeptide synthases
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Chemical bonding
1.38. D-block contraction
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Chemical bonding
1.39. Delocalized electron
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Chemical bonding
1.40. Delta bond
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Chemical bonding
1.41. Denticity
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Chemical bonding
1.42. Dewar–Chatt–Duncanson model
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Chemical bonding
1.43. Dihydrogen bond
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Chemical bonding
1.44. Donor number
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Chemical bonding
1.45. Double bond
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Chemical bonding
1.46. Double bond rule
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Chemical bonding
1.47. Dunathan stereoelectronic hypothesis
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Chemical bonding
1.48. Effective nuclear charge
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Chemical bonding
1.49. Electron counting
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Chemical bonding
1.50. Electron deficiency
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Chemical bonding
1.51. Electron localization function
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Chemical bonding
1.52. Electronegativity
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Chemical bonding
1.53. Embedded atom model
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Chemical bonding
1.54. Formal charge
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Chemical bonding
1.55. Four-center two-electron bond
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Chemical bonding
1.56. Glycosidic bond
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Chemical bonding
1.57. Halogen bond
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Chemical bonding
1.58. Hydration number
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Chemical bonding
1.59. Hydrogen bond
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Chemical bonding
1.60. Hydrophobic effect
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Chemical bonding
1.61. Intermolecular force
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Chemical bonding
1.62. Intimate ion pair
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Chemical bonding
1.63. Intramolecular force
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Chemical bonding
1.64. Inverted ligand field theory
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Chemical bonding
1.65. Ioliomics
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Chemical bonding
1.66. Ionic bonding
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Chemical bonding
1.67. Isopeptide bond
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Chemical bonding
1.68. Isovalent hybridization
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Chemical bonding
1.69. Keating model
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Chemical bonding
1.70. Lanthanide contraction
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Chemical bonding
1.71. Lewis structure
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Chemical bonding
1.72. Ligand
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Chemical bonding
1.73. Ligand (biochemistry)
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Chemical bonding
1.74. Ligand binding assay
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Chemical bonding
1.75. Ligand bond number
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Chemical bonding
1.76. Ligand dependent pathway
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Chemical bonding
1.77. Ligand field theory
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Chemical bonding
1.78. Linkage isomerism
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Chemical bonding
1.79. Linnett double-quartet theory
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Chemical bonding
1.80. London dispersion force
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Chemical bonding
1.81. Lone pair
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Chemical bonding
1.82. Low-barrier hydrogen bond
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Chemical bonding
1.83. Mesomeric effect
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Chemical bonding
1.84. Metallic bonding
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Chemical bonding
1.85. Metallophilic interaction
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Chemical bonding
1.86. Metal–ligand multiple bond
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Chemical bonding
1.87. Molecular orbital diagram
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Chemical bonding
1.88. Molecular orbital theory
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Chemical bonding
1.89. Morse potential
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Chemical bonding
1.90. Multi-state modeling of biomolecules
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Chemical bonding
1.91. Nascent state (chemistry)
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Chemical bonding
1.92. Network covalent bonding
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Chemical bonding
1.93. Non-bonding electron
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Chemical bonding
1.94. Non-bonding orbital
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Chemical bonding
1.95. Non-covalent interaction
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Chemical bonding
1.96. Non-covalent interactions index
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Chemical bonding
1.97. Non-innocent ligand
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Chemical bonding
1.98. Octet rule
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Chemical bonding
1.99. Pauling's principle of electroneutrality
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Chemical bonding
1.100. Peptide bond
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Chemical bonding
1.101. Phi bond
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Chemical bonding
1.102. Pi backbonding
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Chemical bonding
1.103. Pi bond
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Chemical bonding
1.104. Polyvalency (chemistry)
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Chemical bonding
1.105. Pyramidal alkene
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Chemical bonding
1.106. Quadruple bond
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Chemical bonding
1.107. Quintuple bond
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Chemical bonding
1.108. Radical (chemistry)
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Chemical bonding
1.109. Salt bridge (protein and supramolecular)
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Chemical bonding
1.110. Sextuple bond
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Chemical bonding
1.111. Sigma-pi and equivalent-orbital models
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Chemical bonding
1.112. Sigma bond
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Chemical bonding
1.113. Silicon–oxygen bond
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Chemical bonding
1.114. Single bond
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Chemical bonding
1.115. Solvation shell
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Chemical bonding
1.116. Stacking (chemistry)
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Chemical bonding
1.117. Starch gelatinization
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Chemical bonding
1.118. Strain energy
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Chemical bonding
1.119. Symmetric hydrogen bond
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Chemical bonding
1.120. Three-center four-electron bond
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Chemical bonding
1.121. Three-center two-electron bond
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Chemical bonding
1.122. Tolman's rule
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Chemical bonding
1.123. Triple bond
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Chemical bonding
1.124. Valence (chemistry)
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Chemical bonding
1.125. Valence bond theory
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Chemical bonding
1.126. Valence electron
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Chemical bonding
1.127. Van Arkel–Ketelaar triangle
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Chemical bonding
1.128. Vibrational bond
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Chemical bonding
1.129. Wafer bonding
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Chemical bonding
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1.129.1. Adhesive bonding of semiconductor wafers
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Wafer bonding
1.129.2. Direct bonding
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Wafer bonding
1.129.3. Eutectic bonding
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Wafer bonding
1.129.4. Glass frit bonding
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Wafer bonding
1.129.5. Plasma-activated bonding
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Wafer bonding
1.129.6. Reactive bonding
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Wafer bonding
1.129.7. Thermocompression bonding
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Wafer bonding
2. Correlated electrons
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Condensed matter physics
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2.1. 122 iron arsenide
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Correlated electrons
2.2. CeCoIn5
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Correlated electrons
2.3. Samarium hexaboride
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Correlated electrons
2.4. UPd2Al3
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Correlated electrons
2.5. Uranium rhodium germanium
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Correlated electrons
2.6. Uranium ruthenium silicide
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Correlated electrons
2.7. YbBiPt
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Correlated electrons
3. Electronic band structures
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Condensed matter physics
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3.1. Semiconductor material types
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Electronic band structures
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3.1.1. Extrinsic semiconductor
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Semiconductor material types
3.1.2. Intrinsic semiconductor
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Semiconductor material types
3.1.3. Organic photorefractive materials
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Semiconductor material types
3.1.4. Organic semiconductor
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Semiconductor material types
3.1.5. Strained silicon
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Semiconductor material types
3.1.6. Wide-bandgap semiconductor
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Semiconductor material types
3.2. Anderson's rule
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Electronic band structures
3.3. Band bending
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Electronic band structures
3.4. Band diagram
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Electronic band structures
3.5. Band offset
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Electronic band structures
3.6. Direct and indirect band gaps
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Electronic band structures
3.7. Electronic band structure
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Electronic band structures
3.8. Empty lattice approximation
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Electronic band structures
3.9. Energy gap
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Electronic band structures
3.10. Fermi level
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Electronic band structures
3.11. Flat band potential
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Electronic band structures
3.12. Metal-induced gap states
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Electronic band structures
3.13. Moss–Burstein effect
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Electronic band structures
3.14. Nearly free electron model
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Electronic band structures
3.15. Peierls substitution
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Electronic band structures
3.16. Quasi Fermi level
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Electronic band structures
3.17. Rigid-band model
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Electronic band structures
3.18. Tight binding
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Electronic band structures
3.19. Valence and conduction bands
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Electronic band structures
3.20. Van Hove singularity
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Electronic band structures
4. Glass physics
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Condensed matter physics
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4.1. Bologna bottle
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Glass physics
4.2. Devitrification
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Glass physics
4.3. Dichroic glass
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Glass physics
4.4. Dispersion (optics)
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Glass physics
4.5. Fragility (glass physics)
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Glass physics
4.6. Glass poling
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Glass physics
4.7. Shading coefficient
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Glass physics
4.8. Strength of glass
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Glass physics
4.9. Tanada effect
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Glass physics
4.10. Tempered glass
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Glass physics
4.11. Time–temperature superposition
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Glass physics
4.12. Viscous liquid
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Glass physics
5. Laboratory techniques in condensed matter physics
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Condensed matter physics
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5.1. Angular Correlation of Electron Positron Annihilation Radiation
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Laboratory techniques in condensed matter physics
5.2. Ptychography
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Laboratory techniques in condensed matter physics
5.3. Ultrafast scanning electron microscopy
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Laboratory techniques in condensed matter physics
6. Quantum magnetism
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Condensed matter physics
5
6.1. Flux pinning
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Quantum magnetism
6.2. Gaudin model
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Quantum magnetism
6.3. J1 J2 model
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Quantum magnetism
6.4. Magnetic translation
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Quantum magnetism
6.5. Meissner effect
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Quantum magnetism
7. Semiconductor properties
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Condensed matter physics
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7.1. Donor (semiconductors)
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Semiconductor properties
7.2. Dopant
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Semiconductor properties
7.3. Dopant activation
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Semiconductor properties
7.4. Doping (semiconductor)
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Semiconductor properties
7.5. Lattice constant
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Semiconductor properties
8. Water physics
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Condensed matter physics
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8.1. Color of water
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Water physics
8.2. Eddy pumping
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Water physics
8.3. Quantum tunneling of water
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Water physics
8.4. Superheated water
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Water physics
9. Josephson effect
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Condensed matter physics
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9.1. Josephson diode
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Josephson effect
9.2. Josephson junction count
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Josephson effect
9.3. Josephson voltage standard
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Josephson effect
9.4. Long Josephson junction
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Josephson effect
9.5. Phi Josephson junction
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Josephson effect
9.6. Pi Josephson junction
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Josephson effect
9.7. Rapid single flux quantum
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Josephson effect
9.8. SQUID
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Josephson effect
9.9. Scanning SQUID microscopy
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Josephson effect
9.10. Superconducting computing
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Josephson effect
9.11. Superconducting tunnel junction
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Josephson effect
10. Mesoscopic physics
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Condensed matter physics
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10.1. Coulomb blockade
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Mesoscopic physics
10.2. Ionic Coulomb blockade
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Mesoscopic physics
10.3. Landauer formula
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Mesoscopic physics
10.4. Levitated optomechanics
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Mesoscopic physics
10.5. Meir-Wingreen Formula
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Mesoscopic physics
10.6. Nanowire
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Mesoscopic physics
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10.6.1. Bacterial nanowires
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Nanowire
10.6.2. Nanowire lasers
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Nanowire
10.7. Persistent current
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Mesoscopic physics
10.8. Quantum dot
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Mesoscopic physics
10.9. Quantum point contact
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Mesoscopic physics
10.10. Quantum wire
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Mesoscopic physics
10.11. Shot noise
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Mesoscopic physics
10.12. Two-dimensional electron gas
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Mesoscopic physics
11. Soft matter
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Condensed matter physics
169
11.1. Foams
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Soft matter
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11.1.1. Aerogels
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Foams
11.1.2. Bubbles (physics)
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Foams
11.1.3. Aluminium foam sandwich
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Foams
11.1.4. Ballistic foam
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Foams
11.1.5. Biofoam
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Foams
11.1.6. Carbon nanofoam
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Foams
11.1.7. Defoamer
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Foams
11.1.8. Expanded polyethylene
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Foams
11.1.9. Firefighting foam
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Foams
11.1.10. Foam
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Foams
11.1.11. Foaming agent
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Foams
11.1.12. Metal foam
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Foams
11.1.13. Metallic microlattice
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Foams
11.1.14. Nanofoam
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Foams
11.1.15. Phase-out of polystyrene foam
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Foams
11.1.16. Polyimide foam
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Foams
11.1.17. Polyurethane foam
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Foams
11.1.18. Porous carbon
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Foams
11.1.19. Silicone foam
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Foams
11.1.20. Styrofoam
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Foams
11.1.21. Titanium foam
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Foams
11.2. Gels
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Soft matter
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11.2.1. Edible gels
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Gels
11.2.2. Agar
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Gels
11.2.3. Aluminum chloride hexahydrate
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Gels
11.2.4. Aquamid
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Gels
11.2.5. Gelatin
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Gels
11.2.6. Gelclair
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Gels
11.2.7. Hantz reactions
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Gels
11.2.8. Low molecular-mass organic gelators
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Gels
11.2.9. Nanocomposite hydrogels
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Gels
11.2.10. Organogels
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Gels
11.2.11. Polyacrylamide
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Gels
11.2.12. Silica gel
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Gels
11.2.13. Thickening agent
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Gels
11.2.14. Vetigel
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Gels
11.2.15. Water gel (plain)
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Gels
11.3. Liquid crystals
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Soft matter
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11.3.1. Liquid crystal displays
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Liquid crystals
11.3.2. 4-Cyano-4'-pentylbiphenyl
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Liquid crystals
11.3.3. Alfred Saupe
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Liquid crystals
11.3.4. Blue phase mode LCD
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Liquid crystals
11.3.5. British Liquid Crystal Society
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Liquid crystals
11.3.6. Cholesteryl benzoate
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Liquid crystals
11.3.7. Cholesteryl chloride
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Liquid crystals
11.3.8. Cholesteryl nonanoate
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Liquid crystals
11.3.9. Cholesteryl oleyl carbonate
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Liquid crystals
11.3.10. Columnar phase
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Liquid crystals
11.3.11. Cubosome
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Liquid crystals
11.3.12. Discotic liquid crystal
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Liquid crystals
11.3.13. Distortion free energy density
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Liquid crystals
11.3.14. Fréedericksz transition
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Liquid crystals
11.3.15. George Gray (chemist)
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Liquid crystals
11.3.16. Guest Host Displays
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Liquid crystals
11.3.17. Homogeneous alignment
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Liquid crystals
11.3.18. International Liquid Crystal Society
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Liquid crystals
11.3.19. Liquid-crystal laser
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Liquid crystals
11.3.20. Liquid-crystal polymer
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Liquid crystals
11.3.21. Liquid Crystal Institute
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Liquid crystals
11.3.22. Liquid crystal thermometer
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Liquid crystals
11.3.23. Liquid crystal tunable filter
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Liquid crystals
11.3.24. Liquid ordered phase
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Liquid crystals
11.3.25. Ludwig Pohl
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Liquid crystals
11.3.26. MBBA
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Liquid crystals
11.3.27. Mesogen
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Liquid crystals
11.3.28. Nematicon
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Liquid crystals
11.3.29. Para-Azoxyanisole
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Liquid crystals
11.3.30. Paranematic susceptibility
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Liquid crystals
11.3.31. Photoalignment
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Liquid crystals
11.3.32. Tactoid
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Liquid crystals
11.3.33. Thermotropic crystal
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Liquid crystals
11.3.34. Twisted nematic field effect
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Liquid crystals
11.3.35. Vectra (plastic)
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Liquid crystals
11.4. Lubricants
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Soft matter
34
11.4.1. Dry lubricants
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Lubricants
11.4.2. Greases
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Lubricants
11.4.3. Non-petroleum based lubricants
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Lubricants
11.4.4. Oil additives
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Lubricants
11.4.5. Petroleum based lubricants
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Lubricants
11.4.6. Water
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Lubricants
11.4.7. API-TC
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Lubricants
11.4.8. Alkylated naphthalene
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Lubricants
11.4.9. Antiwear additive
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Lubricants
11.4.10. Base oil
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Lubricants
11.4.11. CRC Industries
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Lubricants
11.4.12. Cetyl alcohol
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Lubricants
11.4.13. Cork grease
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Lubricants
11.4.14. Corrosion inhibitor
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Lubricants
11.4.15. Ethylene bis(stearamide)
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Lubricants
11.4.16. Friction modifier
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Lubricants
11.4.17. Independent Lubricant Manufacturers Association
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Lubricants
11.4.18. JASO M345
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Lubricants
11.4.19. Kerosene
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Lubricants
11.4.20. LiquiGlide
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Lubricants
11.4.21. M7 Japan
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Lubricants
11.4.22. Metal deactivator
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Lubricants
11.4.23. NLGI consistency number
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Lubricants
11.4.24. National Lubricating Grease Institute
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Lubricants
11.4.25. Nye Lubricants
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Lubricants
11.4.26. Perfluoropolyether
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Lubricants
11.4.27. Pipe dope
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Lubricants
11.4.28. Rapeseed oil
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Lubricants
11.4.29. Revitalizant
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Lubricants
11.4.30. Shell Rotella
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Lubricants
11.4.31. Solid film lubricant
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Lubricants
11.4.32. Spindle oil
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Lubricants
11.4.33. X-1R
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Lubricants
11.4.34. Zinc dithiophosphate
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Lubricants
11.5. Waxes
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Soft matter
44
11.5.1. Fatty acids
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Waxes
11.5.2. Wax sculptures
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Waxes
11.5.3. Bayberry wax
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nosplit
Waxes
11.5.4. Beeswax
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Waxes
11.5.5. Beeswax wreck
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Waxes
11.5.6. Candelilla wax
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nosplit
Waxes
11.5.7. Carnauba wax
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nosplit
Waxes
11.5.8. Carromancy
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Waxes
11.5.9. Castor wax
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nosplit
Waxes
11.5.10. Ceresin
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Waxes
11.5.11. Cetyl palmitate
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Waxes
11.5.12. Chinese wax
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nosplit
Waxes
11.5.13. Cire Trudon
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Waxes
11.5.14. Earwax
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nosplit
Waxes
11.5.15. Emulsifying wax
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Waxes
11.5.16. Grafting wax
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Waxes
11.5.17. Hair wax
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nosplit
Waxes
11.5.18. Hydrogenated jojoba oil
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nosplit
Waxes
11.5.19. Idrialin
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nosplit
Waxes
11.5.20. Japan wax
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Waxes
11.5.21. Jojoba
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Waxes
11.5.22. Jojoba ester
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nosplit
Waxes
11.5.23. Jojoba oil
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nosplit
Waxes
11.5.24. Lanolin
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nosplit
Waxes
11.5.25. Lignoceric acid
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nosplit
Waxes
11.5.26. Microcrystalline wax
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Waxes
11.5.27. Montan wax
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nosplit
Waxes
11.5.28. Moustache wax
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nosplit
Waxes
11.5.29. Mr. Zog's Sex Wax
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nosplit
Waxes
11.5.30. Oiticica oil
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nosplit
Waxes
11.5.31. Ouricury wax
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nosplit
Waxes
11.5.32. Ozokerite
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nosplit
Waxes
11.5.33. Paraffin wax
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nosplit
Waxes
11.5.34. Peat wax
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nosplit
Waxes
11.5.35. Polyethylene wax
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nosplit
Waxes
11.5.36. Renaissance Wax
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nosplit
Waxes
11.5.37. Rice bran wax
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nosplit
Waxes
11.5.38. Ski wax
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nosplit
Waxes
11.5.39. Spermaceti
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nosplit
Waxes
11.5.40. Sugarcane wax
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nosplit
Waxes
11.5.41. Surfboard wax
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nosplit
Waxes
11.5.42. Turtle Wax
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Waxes
11.5.43. Wax carving
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Waxes
11.5.44. Wax fire
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Waxes
11.6. Active fluid
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Soft matter
11.7. Active matter
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Soft matter
11.8. Ammonium perfluorononanoate
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Soft matter
11.9. Dendronized polymer
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nosplit
Soft matter
11.10. Depletion force
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nosplit
Soft matter
11.11. Dimethyldioctadecylammonium bromide
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nosplit
Soft matter
11.12. Hydrogel
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nosplit
Soft matter
11.13. Metallomesogen
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nosplit
Soft matter
11.14. Microemulsion
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nosplit
Soft matter
11.15. Microrheology
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nosplit
Soft matter
11.16. Mid-Atlantic Soft Matter Workshop
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nosplit
Soft matter
11.17. Patchy particles
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Soft matter
11.18. Silly Putty
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nosplit
Soft matter
11.19. Water-in-water emulsion
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nosplit
Soft matter
11.20. Wax
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nosplit
Soft matter
12. Anderson impurity model
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Condensed matter physics
13. Anderson localization
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nosplit
Condensed matter physics
14. Annual Review of Condensed Matter Physics
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Condensed matter physics
15. Artificial lattice
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nosplit
Condensed matter physics
16. Ashcroft and Mermin
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nosplit
Condensed matter physics
17. Aubry–André model
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Condensed matter physics
18. Bethe ansatz
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Condensed matter physics
19. Bloch's theorem
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Condensed matter physics
20. Bloch oscillation
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Condensed matter physics
21. Chiral magnetic effect
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Condensed matter physics
22. Colloidal crystal
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Condensed matter physics
23. Cophonicity
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nosplit
Condensed matter physics
24. Crystal field theory
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nosplit
Condensed matter physics
25. Degenerate semiconductor
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Condensed matter physics
26. Dirac matter
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Condensed matter physics
27. Dissipative particle dynamics
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nosplit
Condensed matter physics
28. Effective mass (solid-state physics)
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Condensed matter physics
29. Electric-field screening
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nosplit
Condensed matter physics
30. Electron tomography
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Condensed matter physics
31. Fermi energy
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Condensed matter physics
32. Fermi liquid theory
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Condensed matter physics
33. Fluorescence intermittency in colloidal nanocrystals
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nosplit
Condensed matter physics
34. Free electron model
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Condensed matter physics
35. Freeze thaw resistance
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nosplit
Condensed matter physics
36. Friedel oscillations
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nosplit
Condensed matter physics
37. Förster coupling
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nosplit
Condensed matter physics
38. Giant oscillator strength
link
nosplit
Condensed matter physics
39. Grüneisen parameter
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nosplit
Condensed matter physics
40. Heavy fermion material
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Condensed matter physics
41. Heavy fermion superconductor
link
nosplit
Condensed matter physics
42. Hubbard model
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nosplit
Condensed matter physics
43. Introduction to Solid State Physics
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Condensed matter physics
44. Jellium
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nosplit
Condensed matter physics
45. Keldysh formalism
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Condensed matter physics
46. Kohn anomaly
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nosplit
Condensed matter physics
47. Kohn–Luttinger superconductivity
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Condensed matter physics
48. Kondo insulator
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Condensed matter physics
49. Kondo model
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Condensed matter physics
50. Lindhard theory
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nosplit
Condensed matter physics
51. Liquefaction
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nosplit
Condensed matter physics
52. Little–Parks effect
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Condensed matter physics
53. Luttinger's theorem
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nosplit
Condensed matter physics
54. Luttinger–Kohn model
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nosplit
Condensed matter physics
55. Luttinger–Ward functional
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nosplit
Condensed matter physics
56. Lyddane–Sachs–Teller relation
link
nosplit
Condensed matter physics
57. Magnetic topological insulator
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Condensed matter physics
58. Metal–insulator transition
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nosplit
Condensed matter physics
59. Mode coupling
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Condensed matter physics
60. Particle in a one-dimensional lattice
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nosplit
Condensed matter physics
61. Path integrals in polymer science
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Condensed matter physics
62. Phase separation
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Condensed matter physics
63. Phenomenology (physics)
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Condensed matter physics
64. Phonon noise
link
nosplit
Condensed matter physics
65. Poole–Frenkel effect
link
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Condensed matter physics
66. Quantum acoustics
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Condensed matter physics
67. Quantum boomerang effect
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nosplit
Condensed matter physics
68. Quantum dimer magnet
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Condensed matter physics
69. Quantum dot single-photon source
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Condensed matter physics
70. Quantum oscillations
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Condensed matter physics
71. Quantum spin tunneling
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Condensed matter physics
72. Quasi-harmonic approximation
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Condensed matter physics
73. Random phase approximation
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nosplit
Condensed matter physics
74. Resonating valence bond theory
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nosplit
Condensed matter physics
75. Rydberg matter
link
nosplit
Condensed matter physics
76. Schottky effect
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nosplit
Condensed matter physics
77. Semimetal
link
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Condensed matter physics
78. Single-atom transistor
link
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Condensed matter physics
79. Single-layer materials
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Condensed matter physics
80. Single-molecule magnet
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Condensed matter physics
81. Spaser
link
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Condensed matter physics
82. Spontelectrics
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nosplit
Condensed matter physics
83. Structure of liquids and glasses
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nosplit
Condensed matter physics
84. Superexchange
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nosplit
Condensed matter physics
85. Superlubricity
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nosplit
Condensed matter physics
86. Surface photovoltage
link
nosplit
Condensed matter physics
87. Surface reconstruction
link
nosplit
Condensed matter physics
88. Su–Schrieffer–Heeger model
link
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Condensed matter physics
89. Thomas–Fermi screening
link
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Condensed matter physics
90. Tonks–Girardeau gas
link
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Condensed matter physics
91. Topological insulator
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Condensed matter physics
92. Total position spread
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Condensed matter physics
93. Tube-based nanostructure
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Condensed matter physics
94. Two-dimensional semiconductor
link
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Condensed matter physics
95. Ultradivided matter
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Condensed matter physics
96. Wannier function
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Condensed matter physics
97. Wigner crystal
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Condensed matter physics
Ancestors
Subfields of physics
Physics
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