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Titlebook: Advances in Nuclear Physics; Structure and React Rajeev K. Puri,Joerg Aichelin,Rohit Kumar Conference proceedings 2021 Springer Nature Sin

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The Bochner–Weitzenböck Formuladependence of equation of state in reaction dynamics of heavy-ion collisions. Here, we probe isospin effects via nuclear multifragmentation. Using the isospin-dependent quantum molecular dynamics (IQMD) model, we present the study of reactions of isotopic and isobaric pairs. Here, we studied the . (
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Variation Formulas for Arclengthation for the central reactions of .Ar + .Sc. We have used the quantum molecular dynamics (QMD) model to generate the phase space of the nucleons and clusterization algorithms based on spatial constraints and its variants, and the energy-based clusterization algorithm. We also present the correlatio
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Henry A. Kurtz,Brian Weiner,Yngve Öhrn Here, the mass dependence of energy of peak production and peak IMFs multiplicity is investigated for .Sn and .Au target reactions. It is observed that the energy of peak production increases on moving toward low mass projectiles for both .Sn and .Au target reactions with different slopes. Further,
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https://doi.org/10.1007/978-3-642-46421-8ribe heavy-ion collisions and especially the cluster formation in these reactions. This n-body transport approach allows to address physical processes which cannot be addressed by transport approaches which calculate the time evolution of the one-body phase space density or the one-body Greens funct
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Bonn Econometric Model of German Economy,y interacting systems formulated on the basis of Kadanoff–Baym equations for Green’s functions in phase-space representation (in 1st order gradient expansion beyond the quasiparticle approximation). The approach consistently describes the full evolution of a relativistic heavy-ion collision from the
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Van Bien Nguyen,Eduard Krause,Cam Tho Chulisions at 400 AMeV incident energy. While the most observables on the behavior of nucleons seem to be only slightly affected, the isospin ratios of pions show a quite significant effect. It is found that the comparison of the centrality dependence at different energies allows to gain information on
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Simon Friedrich Kraus,Eduard Krausenside hadrons. Such a state of matter, that may have existed a few microseconds after the Big Bang, is created in the laboratory by colliding nuclei at the Relativistic Heavy-Ion Collider (RHIC), Brookhaven, and at the Large Hadron Collider (LHC), CERN at top center of mass energies . GeV and 5.02 T
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