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1 | (17) |
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Point defects in solids. Formation parameters |
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2 | (2) |
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Influence of point defects on physical properties |
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4 | (2) |
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Strong nonlinear increase in specific heat and thermal expansivity of metals |
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6 | (3) |
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Two viewpoints on equilibrium point defects in metals |
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9 | (8) |
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Basic theory of point-defect formation |
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17 | (12) |
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Thermodynamics of point-defect formation |
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18 | (1) |
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Origin of the formation entropy |
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19 | (1) |
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Temperature dependence of formation parameters |
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20 | (3) |
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Results of theoretical calculations |
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23 | (4) |
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27 | (2) |
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Methods for studying point defects |
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29 | (16) |
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Measurements in equilibrium |
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30 | (5) |
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35 | (3) |
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Observation of vacancy equilibration |
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38 | (6) |
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44 | (1) |
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Modulation calorimetry and related techniques |
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45 | (56) |
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46 | (5) |
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Basic theory of modulation calorimetry |
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51 | (8) |
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Modulation of heating power |
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59 | (6) |
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Measurement of temperature oscillations |
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65 | (18) |
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83 | (13) |
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Modulation measurements of electrical resistivity and thermopower |
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96 | (4) |
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100 | (1) |
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Enthalpy and specific heat of metals |
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101 | (36) |
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Point defects and specific heat |
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102 | (3) |
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105 | (12) |
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Formation parameters from calorimetric data |
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117 | (10) |
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Extra enthalpy of quenched samples |
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127 | (2) |
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Question to be answered by rapid-heating experiments |
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129 | (3) |
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Specific heat of tungsten -- a student experiment |
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132 | (4) |
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136 | (1) |
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Thermal expansion of metals |
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137 | (24) |
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Point defects and thermal expansion |
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138 | (2) |
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140 | (7) |
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147 | (5) |
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Equilibrium vacancy concentrations |
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152 | (4) |
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High vacancy concentrations in some alloys and intermetallics |
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156 | (1) |
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Lattice parameter and volume of quenched samples |
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157 | (3) |
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160 | (1) |
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Electrical resistivity of metals |
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161 | (18) |
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Influence of point defects on electrical resistivity |
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162 | (2) |
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Resistivity of metals at high temperatures |
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164 | (5) |
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169 | (4) |
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Comparison of data from two methods |
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173 | (5) |
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178 | (1) |
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179 | (18) |
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Positron-annihilation techniques |
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180 | (12) |
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192 | (2) |
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Drawbacks of positron-annihilation techniques |
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194 | (1) |
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High vacancy concentrations in some intermetallics |
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195 | (1) |
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196 | (1) |
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197 | (20) |
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198 | (9) |
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Other physical properties |
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207 | (5) |
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Microscopic observation of quenched-in defects |
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212 | (4) |
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216 | (1) |
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Equilibration of point defects |
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217 | (20) |
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Role of internal sources (sinks) for point defects |
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218 | (1) |
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219 | (1) |
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220 | (9) |
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229 | (4) |
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Equilibration times from relaxation data |
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233 | (3) |
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236 | (1) |
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Parameters of vacancy formation |
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237 | (18) |
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Equilibrium concentrations of point defects |
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238 | (7) |
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Point defects in high-melting-point metals |
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245 | (3) |
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Temperature dependence of formation parameters |
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248 | (5) |
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253 | (2) |
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255 | (32) |
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Comparison of experimental techniques |
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256 | (1) |
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Critical vacancy concentrations |
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257 | (2) |
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Thermodynamic bounds for formation entropies |
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259 | (2) |
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261 | (4) |
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Constant-volume specific heat of tungsten |
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265 | (7) |
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Thermal defects in alloys and intermetallics |
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272 | (3) |
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275 | (3) |
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Point defects and melting |
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278 | (3) |
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How to determine vacancy contributions to enthalpy -- a proposal |
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281 | (5) |
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286 | (1) |
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287 | (15) |
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Current knowledge of equilibrium point defects in metals |
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288 | (10) |
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Actuality of Seeger's formulation |
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298 | (2) |
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What could be done to reliably determine equilibrium defect concentrations |
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300 | (2) |
Acknowledgments |
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302 | (1) |
References |
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303 | (20) |
Index |
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323 | |