Comparison of coalescence and two-body correlation effects in proton-nucleus collisions at 800mev (1995)
- Authors:
- Autor USP: HUSSEIN, MAHIR SALEH - IF
- Unidade: IF
- Assunto: FÍSICA NUCLEAR
- Language: Inglês
- Imprenta:
- Source:
- Título: Programa e Resumos
- Conference titles: Reuniao de Trabalho em Fisica Nuclear No Brasil
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ABNT
FREDERICO, Tobias et al. Comparison of coalescence and two-body correlation effects in proton-nucleus collisions at 800mev. 1995, Anais.. São Paulo: Sbf, 1995. . Acesso em: 22 maio 2025. -
APA
Frederico, T., Rego, R. A., Carlson, B. V., & Hussein, M. S. (1995). Comparison of coalescence and two-body correlation effects in proton-nucleus collisions at 800mev. In Programa e Resumos. São Paulo: Sbf. -
NLM
Frederico T, Rego RA, Carlson BV, Hussein MS. Comparison of coalescence and two-body correlation effects in proton-nucleus collisions at 800mev. Programa e Resumos. 1995 ;[citado 2025 maio 22 ] -
Vancouver
Frederico T, Rego RA, Carlson BV, Hussein MS. Comparison of coalescence and two-body correlation effects in proton-nucleus collisions at 800mev. Programa e Resumos. 1995 ;[citado 2025 maio 22 ] - Effects of the dynamic 'ALFA'-transfer polarization potential in the large-angle scattering of 'ANTPOT.16 O'+ 'ANTPOT.28 SI'
- Limiting total excitation energy of the nucleus and levinson's theorem
- Dynamic alfa transfer polarization potentials and the large angle scatterring of 'ANTPOT.16 O'+'ANTPOT.28 SI'
- Nature of the enhancement of sub-barrier heavy - ion fusion cross section: dispersion relation approach
- Structure of 'ANTPOT.11 LI': a rydberg nucleus ?
- Nucleon-nucleon correlation effects in the elastic scattering of 'ALFA' particles from li at 26mev / nucleon
- Physics of unstable nuclear beams: topics on the structural and interactions of nuclear far from the stability line
- The doorway expansion method applied to heavy-ion collision involving a neutron-rich exotic nucleus
- Limiting excitation energy of the nucleus
- Unitary defect of the s - matrix and statistical multistep direct nuclear processes
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