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Journal of Environmental Radioactivity|March 25, 2017
Review of current nuclear fallout codesJerrad P Auxier, John D Auxier, Howard L HallACS Omega|August 29, 2019
Establishing Cost-Effective Computational Models for the Prediction of Lanthanoid Binding in [Ln(NO3)]2+ (with Ln = La to Lu)Charles C Peterson, Deborah A Penchoff, John D Auxier, et al.Applied Optics|March 17, 2022
Development of advanced machine learning models for analysis of plutonium surrogate optical emission spectraAshwin P Rao, Phillip R Jenkins, John D Auxier, et al.Applied Spectroscopy|April 17, 2019
Mapping of Uranium in Surrogate Nuclear Debris Using Laser-Induced Breakdown Spectroscopy (LIBS)Michael B Shattan, Mark Gragston, Zhili Zhang, et al.Journal of Visualized Experiments : Jove|January 19, 2016
Production of Synthetic Nuclear Melt GlassJoshua J Molgaard, John D Auxier, Andrew V Giminaro, et al.Journal of Radioanalytical and Nuclear Chemistry|January 24, 2017
Characterization and thermogravimetric analysis of lanthanide hexafluoroacetylacetone chelatesShayan Shahbazi, S Adam Stratz, John D Auxier, et al.Journal of Radioanalytical and Nuclear Chemistry|March 23, 2016
Thermodynamic analysis of volatile organometallic fission productsJohn D Auxier, Jacob A Jordan, S Adam Stratz, et al.Applied Optics|February 23, 2023
Machine learning in analytical spectroscopy for nuclear diagnostics [Invited]Ashwin P Rao, Phillip R Jenkins, Ryan E Pinson, et al.Journal of Radioanalytical and Nuclear Chemistry|May 2, 2017
Gas chemical adsorption characterization of lanthanide hexafluoroacetylacetonatesS Adam Stratz, Steven J Jones, Austin D Mullen, et al.Analytical Methods : Advancing Methods and Applications|July 12, 2021
Rapid quantitative analysis of trace elements in plutonium alloys using a handheld laser-induced breakdown spectroscopy (LIBS) device coupled with chemometrics and machine learningAshwin P Rao, Phillip R Jenkins, Dung M Vu, et al.Pageof 2