Pular para o conteúdo principal
  • Portal do Governo Brasileiro
  • Atualize sua Barra de Governo
Início
Buscar: Pesquisador(a) | Publicação
Portuguese Chinese (Simplified) English French German Korean Russian Spanish Swahili Yoruba

Menu principal

  • PESQUISADORES
  • REVISTAS
  • ASSUNTOS
  • PUBLICAÇÕES
Início Dissipative Relativistic Fluid Dynamics: A New Way to Derive the Equations of Motion from Kinetic Theory

Dissipative Relativistic Fluid Dynamics: A New Way to Derive the Equations of Motion from Kinetic Theory

Título: 
Dissipative Relativistic Fluid Dynamics: A New Way to Derive the Equations of Motion from Kinetic Theory
Autor: 
Gabriel Silveira Denicol
Ano: 
2010
DOI: 
10.1103/PhysRevLett.105.162501
Revista: 
PHYSICAL REVIEW LETTERS
ISSN: 
10797114
Home: 
[doi:10.1103/physrevlett.105.162501]
Idioma: 
Inglês
Buscar essa publicação no Google Acadêmico

Publicações com a mesma autoria

Bulk viscous effects on flow and dilepton radiation in a hybrid approach
Probing the non-equilibrium dynamics of hot and dense QCD with dileptons
Event-by-event direct photon anisotropic flow in relativistic heavy-ion collisions
Exact Hydrodynamic Attractor of an Ultrarelativistic Gas of Hard Spheres
Consistency of field-theoretical and kinetic calculations of viscous transport coefficients for a relativistic fluid
Perfect fluidity of a dissipative system: Analytical solution for the Boltzmann equation in
A hybrid approach to relativistic heavy-ion collisions at the RHIC BES energies
Elliptic-flow suppression due to hadron mass spectrum
Nonlinear dynamics from the relativistic Boltzmann equation in the Friedmann-Lemaître-Robertson-Walker spacetime
Second order dissipative fluid dynamics from kinetic theory
  •  
  • 1 de 8
  • próximo ›

Sobre o site | Fale conosco

Versão Alpha. As informações contidas neste site foram importadas do Lattes no dia 20/04/2022.