Two reviews of papers are considered. The first paper for a galaxy model uses matter consisting of neutrinos, bosons and other similar particles. It is shown that these particles were introduced as a result of an incorrect description of interactions in the Theory of Relativity. In reality, with the relative motion of interacting particles, their interactions force changes, and not their mass. It is shown that models of such stellar associations as globular clusters and galaxies should be created on the basis of the substance that exists on Earth. The second peer-reviewed paper proposes to create LIGO on the Moon. It is shown that gravitational waves do not exist. They were introduced to explain the excessive rotation of the Mercury’s perihelion. However, the excessive rotation of the Mercury’s perihelion is due to the Sun oblateness. The paper shows that gravitational waves, the Big Bang, the expanding Universe, dark matter, dark energy, etc. appeared on the basis of unfounded hypotheses. The urgent task is to eliminate them from science.
Smulsky, J.J. (2004) The Theory of Interaction. Cultural Information Bank, Ekaterinburg. http://www.ikz.ru/~smulski/TVEnA5_2.pdf
Smulsky, J.J. (2019) New Understanding in Academic Science. Natural Science, 11, 74-94. https://www.scirp.org/journal/PaperInformation.aspx?PaperID=91189 https://doi.org/10.4236/ns.2019.113009
Smulsky, J.J. (2002) The New Fundamental Trajectories: Part 1—Hyperbolic/Elliptic Trajectories. Galilean Electrodynamics, 13, 23-28.
Smulsky, J.J. (2002) The New Fundamental Trajectories: Part 2—Parabolic/Elliptic Trajectories. Galilean Electrodynamics, 13, 47-51. http://www.ikz.ru/~smulski/smul1/English1/FounPhisics/NFT.pdf
Smulsky, J.J. (1994) The New Approach and Superlight Particle Production. Physics Essays, 7, 153-166. http://www.ikz.ru/~smulski/smul1/English1/FounPhisics/NApSup.pdf https://doi.org/10.4006/1.3029128
Smulsky, J.J. (2003a) Axisymmetrical Problem of Gravitational Interaction of N-Bodies. Mathematical Modelling, 15, 27-36. (In Russian) http://www.ikz.ru/~smulski/smul1/Russian1/IntSunSyst/Osvnb4.doc
Smulsky, J.J. (2015b) Exact Solution to the Problem of N-Bodies Forming a Multilayer Rotating Structure. SpringerPlus, 4, Article No. 361. http://www.springerplus.com/content/4/1/361 https://doi.org/10.1186/s40064-015-1141-1
Smulsky, J.J. (2019) Periodic Orbits of N Bodies on a Sphere. Cosmic Research, 57, 459-470. http://link.springer.com/article/10.1134/S001095251906008X https://rdcu.be/b03dI https://doi.org/10.1134/S001095251906008X
Smulsky, J.J. (2017) Advances in Mechanics and Outlook for Future Mankind Progress. International Journal of Modern Education and Computer Science, 9, 15-25. https://doi.org/10.5815/ijmecs.2017.01.02 http://www.mecs-press.org/ijmecs/ijmecs-v9-n1/IJMECS-V9-N1-2.pdf
Smulsky, J.J. (2012) The System of Free Access Galactica to Compute Interactions of N-Bodies. International Journal of Modern Education and Computer Science, 4, 1-20. https://doi.org/10.5815/ijmecs.2012.11.01
Smulsky, J.J. (2018) Future Space Problems and Their Solutions. Nova Science Publishers, New York, 269 p. http://www.ikz.ru/~smulski/Papers/InfFSPS.pdf
Smulsky, J.J. (1996) The “Black Hole”: Superstition of the 20th Century. Apeiron, 3, 22-23. http://www.ikz.ru/~smulski/smul1/English1/FounPhisics/BHAP2.doc
Abbott, B.P., et al. (2016) Observation of Gravitational Waves from a Binary Black Hole Merger. Physical Review Letters, 116, Article ID: 061102. https://doi.org/10.1103/PhysRevLett.116.061102
Smulsky, J.J. (2016) On Performance Indicator of Scientist’s Scientific Work. The Way of Science. International Scientific Journal, 10, 8-16. (In Russian) http://www.ikz.ru/~smulski/Papers/PokRezNauchD4.pdf
Smulsky, J.J. (2019) The Upcoming Tasks of Fundamental Science. Sputnik+ Publishing House, M., 134 p. (In Russian) http://www.ikz.ru/~smulski/Papers/InfPrZaFN.pdf
Gerber, P. (1898) Die raumliche und zeitliche Aubreitung der Gravitation. Zeitschrift für Mathematik und Physik, 43, 93-104. http://bourabai.narod.ru/papers/gerber/gerber.htm
Smulsky, J.J. (2011) New Components of the Mercury’s Perihelion Precession. Natural Science, 3, 268-274. http://www.scirp.org/journal/ns https://doi.org/10.4236/ns.2011.34034
Smulsky, J.J. and Smulsky, Ya.J. (2012) Dynamic Problems of the Planets and Asteroids, and Their Discussion. International Journal of Astronomy and Astrophysics, 2, 129-155. https://doi.org/10.4236/ijaa.2012.23018
Smulsky, J.J. (2008) Numerical Modeling of Evolution of the Satellite of a Rotating Body. In: Col. The Theoretical and Applied Tasks of the Nonlinear Analysis, Russian Academy of Sciences: A.A. Dorodnicyn Computing Center, Moscow, 100-117. (In Russian) http://www.ikz.ru/~smulski/Papers/ModSun07c.pdf
Smulsky, J.J. (1994) The Electromagnetic and Gravitational Actions (The Non-Relativistic Tractates). “Science” Publisher, Novosibirsk, 225 p. (In Russian) http://www.ikz.ru/~smulski/smul1/English1/FounPhisics/ELGRVZIN.doc
Smulsky, J.J. (1995) The Trajectories at Interaction of Two Bodies, Which Depend on Relative Distance and Velocityю Mathematical Modeling. Mathematical Modeling, 7, 111-126. (In Russian) http://www.ikz.ru/~smulski/smul1/English1/FounPhisics/ELGRVZIN.doc
Smulsky, J.J. (2014) Electrodynamics of Moving Bodies. Determination of Forces and Calculation of Movements. Palmarium Academic Publishing, Saarbrucken, 324 p. (In Russian) http://www.ikz.ru/~smulski/Papers/InfElMvBEn.pdf
Carezani, R.L. (1997) Nuclear-Nuclear Collisions.
Carezani, R.L. (1997) Neutrinos at Fermi Lab.
de Hilster, D. (2011) The Neutrino: Doomed from Inception. Proceedings of the NPA, 8, 148-151.
Ellis, C.D. and Wooster, W.A. (1927) The Average Energy of Disintegration of Radium E. Proceedings of the Royal Society London A, 117, 109-123. https://doi.org/10.1098/rspa.1927.0168
Bucherer, A.H. (1909) Die experimentelle Bestatigung des Relativitats Prinzips. Annalen der Physik, 28, 513 S. https://doi.org/10.1002/andp.19093330305