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Search Results: 1 - 10 of 297535 matches for " J. J. Smulsky "
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Dynamic Problems of the Planets and Asteroids, and Their Discussion  [PDF]
Joseph J. Smulsky, Yaroslav J. Smulsky
International Journal of Astronomy and Astrophysics (IJAA) , 2012, DOI: 10.4236/ijaa.2012.23018
Abstract: The problems of dynamics of celestial bodies are considered which in the literature are explained by instability and randomness of movements. The dynamics of planets orbits on an interval 100 million years was investigated by new numerical method and its stability is established. The same method is used for computing movements of two asteroids Apophis and 1950DA. The evolution of their movement on an interval of 1000 is investigated. The moments of their closest passages at the Earth are defined. The different ways of transformation of asteroids trajectories into orbits of the Earth’s satellites are considered. The problems of interest are discussed from the different points of view.
New components of the mercury’s perihelion precession  [PDF]
J. J. Smulsky
Natural Science (NS) , 2011, DOI: 10.4236/ns.2011.34034
Abstract: The velocity of perihelion rotation of Mercury's orbit relatively motionless space is computed. It is prove that it coincides with that calculated by the Newtonian interaction of the planets and of the compound model of the Sun’s rotation.
The Influence of the Planets, Sun and Moon on the Evolution of the Earth’s Axis  [PDF]
Joseph J. Smulsky
International Journal of Astronomy and Astrophysics (IJAA) , 2011, DOI: 10.4236/ijaa.2011.13017
Abstract: To study climate evolution, we consider the rotational motion of the Earth. The law of angular momentum change is analyzed, based on which the differential equations of rotational motion are derived. Problems with initial conditions are discussed and the algorithm of the numerical solution is presented. The equations are numerically integrated for the action of each planet, the Sun and the Moon on the Earth separately over 10 kyr. Results are analyzed and compared to solutions of other authors and to observation data.
Exact Equations for the Light Doppler Effect  [PDF]
Joseph J. Smulsky
Journal of Modern Physics (JMP) , 2014, DOI: 10.4236/jmp.2014.516161
Abstract: The influence of light source on the receiver as electromagnetic interaction is considered. The mechanical influence of the moving charged body on a motionless one is defined in the experimental laws of electrodynamics. These laws determine the changes of parameters of the light source that moves relatively the receiver. The laws of change of light frequency and its direction of the moving source are derived from the laws of electromagnetism. At small velocity of source movement they coincide with classical results: the Doppler effect and phenomenon of aberration. The interaction of the source and receiver depends only on their velocity of movement relatively each other. There is no world medium, the relative movement to which would influence the characteristics of light source.
New Understanding in Academic Science  [PDF]
Joseph J. Smulsky
Natural Science (NS) , 2019, DOI: 10.4236/ns.2019.113009
Abstract: The present paper is a compilation of extractions from author’s works. Those works were performed along different lines of research, each line reflecting some relevant side of the surrounding world. The review is focused on the world around us and on our understanding of this world. While writing the present paper, author tried to outline the disadvantages of the contemporary scientific picture of the world. Those disadvantages mainly stem from the presently adopted scientific method in which almost all explanations of physical phenomena are based on hypotheses. Gradually, the arbitrariness of adopted hypotheses gets forgotten, and fictional explanations get establish as the real structures of the world. In the present paper, the electromagnetic and gravitational interactions are treated from the position of the no-hypothesis approach. The latter approach consists in the study of phenomena as they are, in the measurement of the various properties of natural objects, and in the establishment of relations between them. The gained results form a new understanding of the world’s phenomena which will allow using them in humans’ practical activity. Moreover, the new understanding of the world permits anticipation of future results without recurring to hypotheses. Some unveiled sides of the surrounding world are also analyzed, together with the problems the human society presently faces. In conclusion, author summarizes the main shortcomings of the contemporary academic science which have caused public distrust in obtained results. Author would like to emphasize here that science can only earn trust in society via reliability and trustworthiness of its reached results. Author hopes that this publication will prove interesting for a wide range of readers.
The System of Free Access Galactica to Compute Interactions of N-Bodies
Joseph J. Smulsky
International Journal of Modern Education and Computer Science , 2012,
Abstract: The Galactica System is intended for resolving N-body interaction problems. It is based on a high-precision method for solving differential equations of motion of bodies whose interaction forces are inversely proportional to the squared distance. The differential equations of motion and their solution method are given in paper. The structure of the input file, the files of initial conditions and output files are described. The examples of these files for different solved tasks are presented. The actions of executable files are explained. The paper describes all the theoretical and practical issues so that even a novice researcher could use Galactica System in his/her works.
GALACTICA Software for Solving Gravitational Interaction Problems
Joseph J. Smulsky
Applied Physics Research , 2012, DOI: 10.5539/apr.v4n2p110
Abstract: Galactica software has been developed to clarify the astronomical theory of climate change. It is designed to provide the numerical solution of problems of the gravitational interaction of bodies. It tackles a whole range of problems: the evolution of the solar system for 100 million years, the evolution of Earth's rotation axis, the influence of the Sun on the Mercury’s perihelion, the motion of near-Earth asteroids, the optimal motion of the spacecraft and the destruction of a system of interacting bodies. The Galactica system is developed for the free access. It contains everything that is needed to solve problems, even a novice researcher..
The Basic Problems of Contemporary Scientific View of the World  [PDF]
Joseph J. Smulsky
Open Access Library Journal (OALib Journal) , 2014, DOI: 10.4236/oalib.1100772
Abstract: Contemporary scientific view of micro- and macro-world was built on a chain of successive hypotheses, each link of which has no reliable evidence. The examples of scientific concepts “Big Bang” and “neutrino” show the formation of erroneous hypotheses that lead to the emergence of these concepts. In addition, the accepted hypotheses lead to the emergence of new objects of scientific vision of the world, which in the real world are absent. The paper proves the fallacy of hypotheses about the dependence of mass on velocity, about particles of light, about light speed of gravity propagation, about “Black holes”, about gravitational waves etc. This paper is the introduction to the book1, which, in turn, based on the book “The Electromagnetic and Gravitational Actions (The Non-Relativistic Tractates)”. The last book was published 20 years ago and aroused great interest among readers. However, the developed methods in the book are not used in physics due to misconceptions about essence of science. The paper states a brief review of the book. This paper, as well as the book, will be useful to physicists, students, senior pupils and everyone who is interested in the scientific worldview.
Axisymmetric Coulomb Interaction and Research of Its Stability by System Galactica  [PDF]
Joseph J. Smulsky
Open Access Library Journal (OALib Journal) , 2014, DOI: 10.4236/oalib.1100773
Abstract: Indeterministic consideration of micro-world based on quantum mechanics has resulted in its probabilistic understanding. At the same time the study of the micro-world based on Coulomb interactions in some cases gives deterministic view of it. However, at this way it is necessary to solve complex problems of many particles interaction. The program Galactica have to be developed for the numerical solution with high accuracy gravitational problems of many-bodies. The paper considers a modification of the program algorithm for solution of Coulomb interaction. For integrating differential equations of motion, the initial conditions have to be given, which are deter- mined by the geometry of the interacting particles. Since in contemporary physics the atoms geo- metry is not specified, as an example, their axisymmetric models are studied. They consist of positively charged nucleus and are symmetrically arranged on the plane of the electrons. The neces- sary tasks were solved to determine positions and velocities of particles at the initial time. Based on their results, the program in environment MathCad for creation of a file of inital conditions is developed. Using the modified program Galactica, the motion of particles in an axisymmetric structure with eight peripheral electrons is researched. It has appeared that they are unstable. For comparison, a similar problem was studied with the gravitational interaction. It also proved to be unstable. So more detailed studies of the problem of stability of axisymmetric structures were made. They showed that the stability of the structure increases with the decrease of the interac- tion parameters. Such stable structure with eight peripheral bodies is considered for gravitational interaction. The paper also considers an example of a helium atom at axisymmetric interaction with two peripheral electrons. This structure is also unstable. At the same time two-particle inte- raction on the example of the hydrogen atom, considered using the Galactica, is stable and the re- sults of numerical solutions coincide with the exact analytical solution. The studies showed that the program Galactica can be used to research the Coulomb interactions. The paper shows that axially symmetric structure of the atom can be used to create his other geometries. The developed methods and programs may be used in these studies. In the future, they will increase the degree of determinateness of micro-world. This paper, as well as the book, will be useful to physicists, students, senior pupils and everything who are interested in the scientific worldview. The programs are the free access (http://www.ikz.ru/~smulski/GalactcW/) and can be used for student projects.
Multilayer Coulomb Structures: Mathematical Principia of Microcosm Mechanics  [PDF]
Joseph J. Smulsky
Open Access Library Journal (OALib Journal) , 2015, DOI: 10.4236/oalib.1101661
Abstract: The problem of a rotating planar multilayer structure with Coulomb interaction is formulated in the paper. The absence of solutions of the problem is proven. Based on this problem the method of constructing planar structures with differential rotation of the layers is developed. A number of structures are received and their dynamics and stability are studied by numerical methods with assistance of the system Galactica. The planar structures are unstable. Identified ways are found to improve the stability of multilayer structures and construct such structures, which could be models of atoms. The paper is of interest for specialists in the field of mechanics of microcosm and can be used by students when doing term papers and dissertations. The different mathematical methods are developed to solve problems in the mechanics of the microworld. They are in free access: http://www.ikz.ru/~smulski//Data/ClmRnStr/. In essence, the paper offers a new physics without theory of relativity and quantum mechanics. It aims for receiving a real knowledge of the microcosm. The paper is written in Russian. It is recommended to translate it into English, Chinese, Hindi, Persian and other national languages. This will allow the younger generation using the paper to cognize the real macrocosm.
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