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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|February 2, 2013
Impact on porous targets: penetration, crater formation, target compaction, and ejectionChristian Ringl, Eduardo M Bringa, Herbert M Urbassek
Nanotechnology|December 22, 2020
Tension-compression behavior in gold nanoparticle arrays: a molecular dynamics studyFelipe J Valencia, Nicolás Amigo, Eduardo M Bringa
Journal of Physics. Condensed Matter : an Institute of Physics Journal|May 5, 2012
Analytical solution of the mean field Ising model for finite systemsDalía S Bertoldi, Eduardo M Bringa, E N Miranda
Scientific Reports|September 24, 2024
Size-dependent Curie temperature of Ni nanoparticles from spin-lattice dynamics simulationsGonzalo Dos Santos, Herbert M Urbassek, Eduardo M Bringa
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|May 15, 2015
Compaction of highly porous granular matter by impacts on a hard wallChristian Ringl, Nina Gunkelmann, Eduardo M Bringa, et al.
Scientific Reports|August 16, 2022
Collisions between CO, CO[Formula: see text], H[Formula: see text]O and Ar ice nanoparticles compared by molecular dynamics simulationMaureen L Nietiadi, Yudi Rosandi, Eduardo M Bringa, et al.
Physical Chemistry Chemical Physics : PCCP|October 13, 2015
The elastic-plastic transition in nanoparticle collisionsEmmanuel N Millán, Diego R Tramontina, Herbert M Urbassek, et al.
Physical Review. E|July 15, 2016
Nucleation of plasticity in nanoparticle collisionsEmmanuel N Millán, Diego R Tramontina, Herbert M Urbassek, et al.
Physical Review. E|April 20, 2019
Bouncing window for colliding nanoparticles: Role of dislocation generationMaureen L Nietiadi, Emmanuel N Millán, Eduardo M Bringa, et al.
Scientific Reports|August 31, 2023
Spin-lattice-dynamics analysis of magnetic properties of iron under compressionGonzalo Dos Santos, Robert Meyer, Diego Tramontina, et al.
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