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Partial and full inelasticity coefficients in 16O<i>p</i>-collisions at 3.25<i>A</i>GeV/<i>c</i>

Kosim OlimovInha University in Tashkent (IUT), Ziyolilar str. 9, 100170 Tashkent, UzbekistanK. G. GulamovPhysical-Technical Institute of SPA, “Physics-Sun” of Uzbek Academy of Sciences, Bodomzor Yo’li str. 2b, 100084 Tashkent, UzbekistanKhusniddin K. OlimovInha University in Tashkent (IUT), Ziyolilar str. 9, 100170 Tashkent, UzbekistanS. L. LutpullaevPhysical-Technical Institute of SPA, “Physics-Sun” of Uzbek Academy of Sciences, Bodomzor Yo’li str. 2b, 100084 Tashkent, UzbekistanV. V. LugovoyPhysical-Technical Institute of SPA, “Physics-Sun” of Uzbek Academy of Sciences, Bodomzor Yo’li str. 2b, 100084 Tashkent, UzbekistanBekhzod S YuldashevInstitute of Nuclear Physics of Uzbek Academy of Sciences, Tashkent, UzbekistanAlisher K. OlimovPhysical-Technical Institute of SPA, “Physics-Sun” of Uzbek Academy of Sciences, Bodomzor Yo’li str. 2b, 100084 Tashkent, Uzbekistan
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The partial inelasticity coefficients of baryon fragments of oxygen nuclei and pions were investigated and the full inelasticity coefficient was determined for the first time in [Formula: see text] collisions at [Formula: see text]. The fraction of kinetic energy of incident proton in [Formula: see text] collisions at [Formula: see text] spent on formation of all the baryon fragments and production of charged and neutral pions was found. The experimental results were compared with those obtained in other experiments at high energies. The experimental full inelasticity coefficient in [Formula: see text] collisions at [Formula: see text] was reproduced well by calculations within the framework of Glauber model of multiple scatterings in hadron–nucleus collisions.

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