## Treatise on materials science and technology |

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Page 27

The Helmholtz free energy can be found by rearranging the partition

in a power series in a in the form N I N ' ( a2 a3 I F-F'- tTI" wfr-tl! + 'T' + 2! x- * v.l> +

--} (90> where the A's are

The Helmholtz free energy can be found by rearranging the partition

**function**(87)in a power series in a in the form N I N ' ( a2 a3 I F-F'- tTI" wfr-tl! + 'T' + 2! x- * v.l> +

--} (90> where the A's are

**functions**of the moments M, of the form A, = Mu A3 ...Page 31

Accordingly, as Wagner (1971) has recently pointed out, it is appropriate to

consider the thermodynamic

composition at constant volume in relation to the predictions of the statistical

models. It is not ...

Accordingly, as Wagner (1971) has recently pointed out, it is appropriate to

consider the thermodynamic

**functions**of the solute atoms as a**function**ofcomposition at constant volume in relation to the predictions of the statistical

models. It is not ...

Page 208

600 700 800 900 TEMPERATURE CO — ▻ /S. A comparison of the equilibrium

extension of superlattice dislocations in FeCo-2V as a

from a number of different theories. From Moine et a/.[57]. below 7^, this stress is

...

600 700 800 900 TEMPERATURE CO — ▻ /S. A comparison of the equilibrium

extension of superlattice dislocations in FeCo-2V as a

**function**of temperaturefrom a number of different theories. From Moine et a/.[57]. below 7^, this stress is

...

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### Contents

Introduction | 2 |

Formal Relations for Solutions | 3 |

Phase Relations | 12 |

Copyright | |

17 other sections not shown

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### Common terms and phrases

alkali halides applied stress atomic ordering behavior Burgers vector center concentration Chem color centers components configuration cross slip cyclic deformation dislocation loop disordered alloy effect elastic collisions equation equilibrium excited F amplitudes F band F centers FeCo alloy flow stress fracture fully ordered given by Eq grain high energy impurities interaction interstitial ionic irradiation lattice low temperatures luminescence magnetic Marcinkowski materials McLellan measurements mechanism nearest neighbor neutron nuclear occur optical absorption ordered alloys ordinary dislocations pair production pairs particle photochemical photoluminescence photon Phys plastic fatigue plastic strain point defects Pooley Proc produced R. G. Davies radiation damage processes recombination room temperature shown in Fig shows Sibley single crystals slip bands slip plane sodalite solid solute atoms Sonder stage Status Solidi stress-strain curves structure studies superlattice dislocation techniques temperature dependence thermal thermodynamic tion trapped twinning vacancies values yield stress