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S. Kox

Researcher at Joseph Fourier University

Publications -  9
Citations -  302

S. Kox is an academic researcher from Joseph Fourier University. The author has contributed to research in topics: Nucleon & Scattering. The author has an hindex of 6, co-authored 9 publications receiving 288 citations.

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Journal ArticleDOI

Strange Quark Contributions to Parity-Violating Asymmetries in the Backward Angle G0 Electron Scattering Experiment

TL;DR: P parity-violating asymmetries in elastic electron-proton and quasielastic electron-deuteron scattering are measured and the first measurement of anapole moment effects in the axial-vector current at these four-momentum transfers is presented.
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Parity-violating Electron Deuteron Scattering and the Proton’s Neutral Weak Axial Vector Form Factor

TL;DR: A new measurement of the parity-violating asymmetry in quasielastic electron scattering from the deuteron at backward angles at Q2=0.038 (GeV/c)2 is reported, which provides a determination of the neutral weak axial vector form factor of the nucleon, which can potentially receive large electroweak corrections.
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Transverse Beam Spin Asymmetries in Forward-Angle Elastic Electron-Proton Scattering

D. S. Armstrong, +112 more
TL;DR: The beam-normal single-spin asymmetry in elastic scattering of transversely polarized 3 GeV electrons from unpolarized protons at Q2=0.15, 0.25 (GeV/c)2 is measured.
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Quasielastic He-3(e,e(')p)H-2 reaction at Q(2)=1.5 GeV2 for recoil momenta up to 1 GeV/c

M. Rvachev, +77 more
TL;DR: In this article, the quasielastic He-3(e,e(')p)H-2 reaction in perpendicular coplanar kinematics was studied, with the energy and the momentum transferred by the electron fixed at 840 MeV and 1502 MeV/c, respectively.
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Backward electroproduction of π0 mesons on protons in the region of nucleon resonances at four momentum transfer squared Q2=1.0 GeV2

G. Laveissière, +171 more
- 01 Apr 2004 - 
TL;DR: In this article, the results of a study on the exclusive electroproduction of pi{sup 0} mesons on protons in the backward hemisphere has been studied at Q2 = 1.0 GeV2 by detecting protons from the 4 GeV electron beam in Jefferson Lab's Hall A.