## Treatise on Materials Science and Technology, Volume 2 |

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Page 10

VgA = { Bb – EBA ( 2 . 8 ) is supposed to depend purely on the fundamental

interaction , independent of real strain or misfit , and may be disregarded in any ...

**energy**. The potential**energy**per overgrowth atom in the reference configurationVgA = { Bb – EBA ( 2 . 8 ) is supposed to depend purely on the fundamental

interaction , independent of real strain or misfit , and may be disregarded in any ...

Page 70

The

and Kuhlmann - Wilsdorf , 1967a ; Ball , 1970 ) Egle ) = 2410 ( 1 + 0v ) tē < / ( 1 -

0 ) ( 6 . 3 ) The

The

**energy**of homogeneous strain per unit area of interface is given by ( Jesserand Kuhlmann - Wilsdorf , 1967a ; Ball , 1970 ) Egle ) = 2410 ( 1 + 0v ) tē < / ( 1 -

0 ) ( 6 . 3 ) The

**energy**per unit area of interface due to one sequence of misfit ...Page 237

Herbert Herman. field Ha , the field will penetrate into the normal metal but not

into the superconductor . To get the difference of the free energies for H , + 0 , we

therefore have to add the field expulsion

for ...

Herbert Herman. field Ha , the field will penetrate into the normal metal but not

into the superconductor . To get the difference of the free energies for H , + 0 , we

therefore have to add the field expulsion

**energy**density H , ? / 87 . Thus we getfor ...

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angle anisotropy approximation assumed atoms average axis c-sites calculated cations coherent compounds concentration condition considerations constant contribution corresponding crystal curve defect density dependence determined diffusion direction discussed dislocations displacement effect elastic elastic scattering electron energy equation et al exist experimental experiments factor field flux lines follows force function garnet given gives important increasing Inelastic Scattering interaction interface ions lattice length limit magnetic materials measured Merwe metal method misfit mode neutron normal obtained parameter phase phonon Phys plane position potential present properties range rare earth reference region relation resolution resonance respectively sample scattering cross section shown shows single solid solution space strain stress structure substrate superconducting surface Table temperature tetrahedral theory thermal thickness transition unit values vector X-ray