2015
DOI: 10.1007/s12648-015-0762-0
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Nucleon momentum distributions and elastic electron scattering from 19F, 25Mg, 27Al, and 29Si nuclei

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Cited by 3 publications
(7 citation statements)
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“…In short, this section describes the derivation of nuclear distributions such as proton density distribution (PDD), root mean square radius (RMS) and EESFF of the ground state for some even mass nuclei in the 2p-1f shell for ( 104 Pd, 106 Pd, 108 Pd, 110 Pd) isotopes. By a harmonic oscillator can be evaluated by means of the radial part of the wave functions ( ) [18].…”
Section: Theorymentioning
confidence: 99%
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“…In short, this section describes the derivation of nuclear distributions such as proton density distribution (PDD), root mean square radius (RMS) and EESFF of the ground state for some even mass nuclei in the 2p-1f shell for ( 104 Pd, 106 Pd, 108 Pd, 110 Pd) isotopes. By a harmonic oscillator can be evaluated by means of the radial part of the wave functions ( ) [18].…”
Section: Theorymentioning
confidence: 99%
“…where the form factor of uniform charge density distribution is given by is considered as free nucleon form factor which is assumed to be the same for protons and neutrons [18].…”
Section: Theorymentioning
confidence: 99%
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“…Al-Rahmani and Hussien [17] have studied the (CDD) and elastic electron scattering form factors of some 2s-1d shell nuclei using the (PWBA) and demonstrated that the inclusion of the higher 1f-2p shell in the calculation leads to produce a good result in comparison with those of the experimental data. Al-Rahmani and Kadhim [18] have calculated the (NMD) and elastic electron scattering form factors of the ground state for some 1f-2p shell nuclei for 59 Co, 61 Ni, 63 Cu and 65 Cu nuclei by using the Coherent Density Fluctuation Model and expressed in terms of the fluctuation function (weight function). In the present study, we employ the CDFM with weight functions originated in terms of theoretical CDD.…”
Section: Introductionmentioning
confidence: 99%