A quantitative study of vacancy defects in quenched platinum by field ion microscopy and electrical resistivity—II. Analysis and interpretation
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference23 articles.
1. A quantitative study of vacancy defects in quenched platinum by field ion microscopy and electrical resistivity—I. Experimental results
2. Vacancies and Interstitials in Metals;Balluffi,1970
3. On the Efficiency of Dislocation Climb in Gold
4. Interactions Between Lattice Defects;Seidman,1968
5. Point Defects in Metals;Damask,1962
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