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Просмотр Авторы Kholmetskii, A.L.

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Результаты 1 - 18 из 18
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2021Comparison of traditional and synchrotron beam methodologies in Mössbauer experiments in a rotating systemKholmetskii, A.L.; Yarman, T.; Yarman, O.; Arik, M.
2019Concerning Mössbauer experiments in a rotating system and their physical interpretationKholmetskii, A.L.; Yarman, T.; Yarman, O.; Arik, M.
2021Corrigendum to “Quantum phases for point-like charged particles and for electrically neutral dipoles in an electromagnetic field” [Ann. Phys. 392 (2018) 49–62](S0003491618300605)(10.1016/j.aop.2018.03.005)Kholmetskii, A.L.; Missevitch, O.V.; Yarman, T.
2021Doppler effect in rotating systems and Mössbauer rotor experimentsKholmetskii, A.L.; Yarman, T.; Yarman, O.; Arik, M.
дек-2020Frequency difference between two clocks at Tokyo Skytree: Contribution of Earth’s self-rotationYarman, T.; Kholmetskii, A.L.; Yarman, O.; Arik, M.
2022Klein-Gordon equation for electrically charged particles with new energy-momentum operatorKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2019LIGO's "gW150914 signal" reproduced under YARK theory of gravityYarman, T.; Kholmetskii, A.L.; Yarman, O.; Marchal, C.B.; Arik, M.
2016Novel Mössbauer experiment in a rotating system and the extra-energy shift between emission and absorption linesYarman, T.; Kholmetskii, A.L.; Arik, M.; Akkus, B.; Oktem, Y.; Susam, L.A.; Missevitch, O.V.
2022Quantum phase effects for electrically charged particles and redefinition of the momentum operatorKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2022Quantum phase effects for electrically charged particles and redefinition of the momentum operatorKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2022Quantum phase effects for electrically charged particles: converging descriptions via fields and potentialsKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2022Quantum phase effects for electrically charged particles: updated analysisKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2018Quantum phases for moving charges and dipoles in an electromagnetic field and fundamental equations of quantum mechanicsKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.; Arik, M.
2018Quantum phases for point-like charged particles and for electrically neutral dipoles in an electromagnetic fieldKholmetskii, A.L.; Missevitch, O.V.; Yarman, T.
2021Reply to “Comment on 'Lorentz transformation of a charge- current density and “relativistic polarization” of a moving current loop'” by J. FranklinKholmetskii, A.L.; Yarman, T.; Missevitch, O.V.
2016Response to “The Mössbauer rotor experiment and the general theory of relativity” by C. CordaKholmetskii, A.L.; Yarman, T.; Yarman, O.; Arik, M.
окт-2022The Energy probability distribution of quantum levels of a particle imprisoned in a three dimensional boxKholmetskii, A.L.; Yarman, T.; Akkus, B.
2019The Eötvös experiment, GTR, and differing gravitational and inertial masses Proposition for a crucial test of metric theoriesYarman, T.; Kholmetskii, A.L.; Marchal, C.; Yarman, O.; Arik, M.