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Principles of Structural Analysis for NonCrystalline Systems
Experimental Techniques for Structural Analysis of NonCrystalline
The Structure of Liquid Metals and Alloys
12 other sections not shown
alkaline earth metal alloys annealing anomalous approximation Ashcroft atomic distribution atoms behavior binary alloy calculated coefficient coordination number correlation function corresponds crystal crystalline decrease difference diffraction experiments discussion earth metals effect electrical resistivity electron Enderby energy estimated example experimental data factor of liquid fayalite Fe-P alloys Figure Fourier transformation given hard-sphere diameter hard-sphere model increase ions liquid metals Masumoto metallic glasses method mole percent near-neighbor neutron diffraction non-crystalline materials non-crystalline systems observed obtained packing density pair distribution function pair potential parameter partial pair distribution partial structure factors Percus-Yevick equation phase Phys pressure radial distribution function radiation region sample scattering intensity Schematic diagram second peak shown in Fig shows Si-Si silicate anions silicates similar SiO2 SiO4 tetrahedra solution structure of liquid structure of molten structure of non-crystalline Table 3 Table Table App technique temperature tetrahedra theory total structure factor transition metals Waseda and Tamaki x-ray diffraction
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