Zobrazeno 1 - 10
of 40
pro vyhledávání: '"Batikan, Koroglu"'
Autor:
Keith D. Morrison, Ana Racoveanu, Jason S. Moore, Alan K. Burnham, Batikan Koroglu, Keith R. Coffee, Adele F. Panasci-Nott, Gregory L. Klunder, Bradley A. Steele, M. A. McClelland, John G. Reynolds
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-6 (2023)
Abstract Understanding the thermal decomposition behavior of TATB (1,3,5-triamino-2,4,6-trinitrobenzene) is a major focus in energetic materials research because of safety issues. Previous research and modelling efforts have suggested benzo-monofuraz
Externí odkaz:
https://doaj.org/article/fc55aec478fa434c87d90893e28237ab
Stochastic optimization of a uranium oxide reaction mechanism using plasma flow reactor measurements
Autor:
Mikhail Finko, Batikan Koroglu, Kate E. Rodriguez, Timothy P. Rose, Jonathan C. Crowhurst, Davide Curreli, Harry B. Radousky, Kim B. Knight
Publikováno v:
Scientific Reports, Vol 13, Iss 1, Pp 1-24 (2023)
Abstract In this work, a coupled Monte Carlo Genetic Algorithm (MCGA) approach is used to optimize a gas phase uranium oxide reaction mechanism based on plasma flow reactor (PFR) measurements. The PFR produces a steady Ar plasma containing U, O, H, a
Externí odkaz:
https://doaj.org/article/ceb724d9c057403c9460b983150645b7
Autor:
Mark A. Burton, Alex W. Auner, Jonathan C. Crowhurst, Peter S. Boone, Lauren A. Finney, David G. Weisz, Batikan Koroglu, Igor Jovanovic, Harry B. Radousky, Kim B. Knight
Publikováno v:
Scientific Reports, Vol 12, Iss 1, Pp 1-11 (2022)
Abstract In order to model the fate and transport of particles following a nuclear explosion, there must first be an understanding of individual physical and chemical processes that affect particle formation. One interaction pertinent to fireball che
Externí odkaz:
https://doaj.org/article/3c31b35e7d544f5793db7eac7d37fce6
Autor:
Kate Rodriguez, Batikan Koroglu, Joshua Hammons, Zurong Dai, Maryline G. Ferrier, Enrica Balboni, Timothy Rose, Kim B. Knight
Publikováno v:
ACS Earth and Space Chemistry. 6:1997-2008
Autor:
John G. Reynolds, Harris E. Mason, Jonathan C. Crowhurst, Jason S. Moore, David Weisz, Ana Racoveanu, Batikan Koroglu, Alan K. Burnham, Evan M. Kahl
Publikováno v:
Propellants, Explosives, Pyrotechnics. 46:1352-1366
Autor:
Mark A, Burton, Alex W, Auner, Jonathan C, Crowhurst, Peter S, Boone, Lauren A, Finney, David G, Weisz, Batikan, Koroglu, Igor, Jovanovic, Harry B, Radousky, Kim B, Knight
Publikováno v:
Scientific reports. 12(1)
In order to model the fate and transport of particles following a nuclear explosion, there must first be an understanding of individual physical and chemical processes that affect particle formation. One interaction pertinent to fireball chemistry an
Autor:
Maxwell A.T. Marple, Batikan Koroglu, Keith Morrison, Jonathan Crowhurst, Anagi Balachandra, Parviz Soroushian, Harris E. Mason
Publikováno v:
Cement and Concrete Research. 156:106760
Autor:
Batikan Koroglu, Mikhail Finko, Chiara Saggese, Scott Wagnon, Samuel Foster, Dana McGuffin, Don Lucas, Tim P. Rose, Jonathan C. Crowhurst, David G. Weisz, Harry B. Radousky, Davide Curreli, Kim B. Knight
Publikováno v:
Journal of Aerosol Science. 162:105959
Autor:
Kim B. Knight, Batikan Koroglu, Jonathan C. Crowhurst, Timothy P. Rose, Mikhail Finko, Michael R. Armstrong, David Weisz, Harry B. Radousky, Z. Dai, Davide Curreli
Publikováno v:
Analytical chemistry. 92(9)
The predictive models that describe the fate and transport of radioactive materials in the atmosphere following a nuclear incident (explosion or reactor accident) assume that uranium-bearing particulates would attain chemical equilibrium during vapor
Autor:
Harry B. Radousky, Marco Mehl, Jonathan C. Crowhurst, Scott W. Wagnon, Joseph M. Zaug, Z. Dai, Batikan Koroglu, Michael R. Armstrong, Timothy P. Rose, David Weisz
Publikováno v:
Scientific Reports, Vol 8, Iss 1, Pp 1-15 (2018)
Scientific Reports
Scientific Reports
We use a recently developed plasma-flow reactor to experimentally investigate the formation of oxide nanoparticles from gas phase metal atoms during oxidation, homogeneous nucleation, condensation, and agglomeration processes. Gas phase uranium, alum