Optimal conditions are used in nondynamical formalism to diagonalize the pionproton
reaction matrix as much as possible. Invariance laws are imposed to simplify
the relationship between observables and bilinear combination of amplitudes. Transverse
amplitudes are determined by using measured polarization parameter in xfp
elastic scattering at 6.0 GeVIC
. (1992). NONDYNAMICAL ANALYSIS OF SPIN AMPLITUDES
IN PION-PROTON ELASTIC SCATTERING
IN OPTIMAL FORMALISM AT 6.0 GeV/C. (e31523). Journal of Sciences, Islamic Republic of Iran, 3(2), e31523
MLA
. "NONDYNAMICAL ANALYSIS OF SPIN AMPLITUDES
IN PION-PROTON ELASTIC SCATTERING
IN OPTIMAL FORMALISM AT 6.0 GeV/C" .e31523 , Journal of Sciences, Islamic Republic of Iran, 3, 2, 1992, e31523.
HARVARD
. (1992). 'NONDYNAMICAL ANALYSIS OF SPIN AMPLITUDES
IN PION-PROTON ELASTIC SCATTERING
IN OPTIMAL FORMALISM AT 6.0 GeV/C', Journal of Sciences, Islamic Republic of Iran, 3(2), e31523.
CHICAGO
, "NONDYNAMICAL ANALYSIS OF SPIN AMPLITUDES
IN PION-PROTON ELASTIC SCATTERING
IN OPTIMAL FORMALISM AT 6.0 GeV/C," Journal of Sciences, Islamic Republic of Iran, 3 2 (1992): e31523,
VANCOUVER
. NONDYNAMICAL ANALYSIS OF SPIN AMPLITUDES
IN PION-PROTON ELASTIC SCATTERING
IN OPTIMAL FORMALISM AT 6.0 GeV/C. J. Sci. I. R. I.. 1992;3(2):e31523.