Finkelstein, J. (2010). Comment on “A one-way speed of light experiment” by E. D. Greaves, An Michel Rodríguez, and J. Ruiz-Camacho [Am. J. Phys. 77 (10), 894–896 (2009)]. Am. J. Phys., 78(8), 877–877.
Gift, S.J.G. (2012). A simple demonstration of one-way light speed anisotropy using Global Positioning System (GPS) technology. Physics Essays, 25, 387–389.
Javanshiry, M. (2021). The Mechanical Behavior of a Multispring System Revealing Absurdity in the Relativistic Force Transformation. International Journal of Mathematics and Mathematical Sciences, Vol. 2021, ID 2706705, 1–8.
Koczan, G.M. (2021a). New definitions of 3D acceleration and inertial mass not violating F=MA in the Special Relativity. Results in Physics, 24, 104121, 1–19.
Nagel, M., Parker, S.R., Kovalchuk, E.V., Stanwix, P.L., Hartnett, J.G., Ivanov, E.N., Peters, A., Tobar, M.E. (2015). Direct terrestrial test of Lorentz symmetry in electrodynamics to 10-18. Nature Communications, 6(8174), 1–8.
Rizzi, G., Ruggiero, M.L., Serafini, A. (2004). Synchronization gauges and the principles of special relativity. Foundations of Physics, 34(12), 1835–1887.
Spavieri, G., Quintero, J., Unnikrishnan, S., Gillies, G.T., Cavalleri, G., Tonni, E., Bosi, L. (2012). Can the One-Way Speed of Light be used for Detection of Violations of the Relativity Principle?. Phys Lett A, 376(6–7), 795–797.
Szostek, K., Szostek, R. (2022). The existence of a universal frame of reference, in which it propagates light, is still an unresolved problem of physics. Jordan Journal of Physics, 15(5), 457–467, ISSN 1994-7607, https://journals.yu.edu.jo/jjp/JJPIssues/Vol15No5pdf2022/3.html
Szostek, K., Szostek, R. (2017). The explanation of the Michelson-Morley experiment results by means universal frame of reference. Journal of Modern Physics, 8(11), 1868–1883, https://doi.org/10.4236/jmp.2017.811110
Szostek, K., Szostek, R. (2018a). The derivation of the general form of kinematics with the universal reference system. Results in Physics, 8, 429–437, https://doi.org/10.1016/j.rinp.2017.12.053
Szostek, K., Szostek, R. (2018b). Kinematics in the Special Theory of Ether (in English). Moscow University Physics Bulletin, 73(4), 413–421, https://rdcu.be/bSJP3 (open access) or https://doi.org/10.3103/S0027134918040136
Szostek, K., Szostek, R. (2018c). Кинематика в Cпециальной Tеории Эфира (in Russian). Вестник Московского Университета. Серия 3. Физика и Астрономия, 4, 70–79, http://vmu.phys.msu.ru/abstract/2018/4/18-4-070
Szostek, R. (2019), Derivation method of numerous dynamics in the Special Theory of Relativity. Open Physics, 17, 153–166, https://doi.org/10.1515/phys-2019-0016
Szostek, R., Góralski, P., Szostek, K. (2019), Gravitational waves in Newton’s gravitation and criticism of gravitational waves resulting from the General Theory of Relativity (LIGO). Bulletin of the Karaganda University. Physics series, 4(96), 39–56, https://physics-vestnik.ksu.kz/apart/2019-96-4/5.pdf
Szostek, R. (2020a). Derivation of all linear transformations that meet the results of Michelson-Morley’s experiment and discussion of the relativity basics (in English). Moscow University Physics Bulletin, 75(6), 684–704, www.vixra.org/abs/1904.0339 (open access) or https://doi.org/10.3103/S0027134920060181
Szostek, R. (2020b). Вывод всех линейных преобразований, удовлетворяющих эксперименту Майкельсона-Морли, и обсуждение основ релятивизма (in Russian). Вестник Московского Университета, Серия 3. Физика и Астрономия, 6, 142–161, http://vmu.phys.msu.ru/abstract/2020/6/20-6-142
Szostek, R. (2022a). Explanation of what time in kinematics is and dispelling myths allegedly stemming from the Special Theory of Relativity. Applied Sciences, 12(12), 6272, 01–19, https://www.mdpi.com/2076-3417/12/12/6272/htm
Szostek, R. (2022b). The original method of deriving transformations for kinematics with a universal reference system. Jurnal Fizik Malaysia, 43(1), 10244-10262, https://ifm.org.my/viewpublication/637edcf8ef0a867aa5a22b39
Sposób pomiaru prędkości światła i urządzenie do stosowania tego sposobu (in Polish: Method for measuring the speed of light and the device for the application of this method), P.414434.
Yuan, Tony (2021). Why the Michelson-Morley Experiment Cannot Observe the Movement of Interference Fringe. Open Access Library Journal, 8(11), e8011, 1–9.