## Treatise on Materials Science and Technology, Volume 4 |

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Page 59

Lattice

Lattice

**Diffusion**of Substitutional Solutes and Correlation Effects J. P. STARK Department of Mechanical Engineering The University of Texas at Austin ...Page 61

This coefficient is called the

This coefficient is called the

**diffusion**coefficient or diffusivity and since the flux may be dependent upon position and time , so may the diffusivity .Page 95

Thus , with fo the correlation factor for solvent self -

Thus , with fo the correlation factor for solvent self -

**diffusion**, fo = 0.78 , x1 = 1 / 2fi + f2 ) x2 = 1/14 ( f3 +254 + f5 +256 + fz + fo + 28 , + f10 + ...### What people are saying - Write a review

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### Contents

RICHARD W VOOK | 2 |

Epitaxial Monocrystalline Films | 10 |

Polycrystalline Films | 37 |

Copyright | |

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activity addition alloys applied approximation average beam becomes calculated compaction component composition compression concentration considered constant copper correlation corresponding crystal cubic curve decreases defined deformation density dependence determined diffraction diffusion direction discussed dislocation disorder distribution effect electron elements energy enthalpy entropy equations example experimental expression factor fault field Figure forged function given gives increases influence interaction jump lattice material measurements mechanism metal method neighbor observed obtained occurs oriented parameter partial pattern phases Phys plane polycrystalline position possible powder present probability production properties random ratio reflections region relative respectively shown in Fig shows single crystals sintered solid solution solute atoms solvent specimen strain strengthening stress structure Substituting surface Table temperature theoretical theory thermodynamic thin films tracer twin vacancy values variations volume yield