A computer program for electron probe microanalysis in the fields of metallurgy and geology
Computer program for metallurgical and geological data reductions
Engineering topics
Publications and source records attributed to Goldstein, J. I..
Computer program for metallurgical and geological data reductions
Iron meteorites genetic classification based on parent body cooling rate and Ga-Ge trace element content
Fe-Ni-P phase diagram studies applied to schreibersite and rhabdite formation in iron meteorites
Electron probe microanalyses in metallurgy and geology performed by FORTRAN program
Crystalline variation and chemical composition of meteorite found at Marburg, West Germany
Cooling rates for Widmanstatten pattern formation in iron meteorites used to obtain data on parent meteorite bodies
Germanium distribution in metallic phases of various iron meteorites by electron probe microanalysis
Iron and iron-stony meteorites cooling rates in relation to Ni content and Widmanstatten structure suggest development in different thermal environments
Iron and stony meteorite cooling rates determined by measuring kamacite bandwidth, bulk nickel content and composition
Germanium concentrations in metallic phases of iron meteorites
Quantitative electron probe microanalyzer standards preparation apparatus, discussing metal alloys rapid quenching and X ray flux data
Butler iron meteorite composition, noting unusually high cobalt and germanium content and low cooling rate
Preparation of electron probe microanalyzer standards using rapid quench method
High cobalt and germanium content and low cooling rate of Butler iron meteorite
Concentration gradients in meteoritic kamacite predicted from Fe-Ni phase diagram and diffusion analysis
Diffusion analysis of concentrated gradients in metallic meteorites kamacite
Alpha and gamma solubility limits in iron-nickel phase diagram at high temperatures - quench- and-anneal and diffusion couple techniques and electron probe microanalysis