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Author(s):  
L.V. Lysenko ◽  
A.P. Korzhavyi ◽  
A.V. Romanov ◽  
V.K. Shatalov ◽  
A.V. Chelenko

The theoretical dependences arising from the dimensionless Lysenko complex for studying the transport of momentum, which determine the force interaction of photons, are considered. When deriving the force interaction equation, a model is adopted which takes into account that the product of the magnetic and electric charge is equal to the angular momentum, and the product of the magnetic and electric constant gives the value inverse to the square of the speed of light. The equation of the magnetic wave is obtained. From the dimensionless complex of energy-technological processes, the transport equation for the substance of the pulse, which determines the force interaction of photons, is obtained It is shown that such force interaction allows us to give a new interpretation of the nature of light and the energy mc2: the energy of one photon (mfc2)/2, and the energy of two photons mfc2. It is confirmed that the three forms of substance, energy and impulse (angular momentum) give the physical diversity of the material world.


Author(s):  
Mykola Nesterenko ◽  
Mykola Nesterenko ◽  
Olexandr Orysenko ◽  
Taras Sklyarenko

A brief description of vibration tables with spatial oscillations of a moving frame and comparison of their technologicalpossibilities depending on their constructive execution are given. The methodology for evaluating the technological andstructural parameters of the vibration tables is also presented based on the use of a dimensionless complex parameter that enables to evaluate the consumer qualities of the vibrating tables, their technical level and competitiveness during the designand operation stage. The vibrating machines constructive designs schemes, their characteristics and the description of thescope of application are presented, which enables designers and manufacturers to orientate themselves in the variety of currently used vibration machines with spatial oscillations of the moving frame for the formation of the same type of reinforcedconcrete products.


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