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On the Technical Possibility of Transmitting an Impulse of Movement at Superlight Speed

Abstract:
It is known that exceeding the speed of light is contrary to the laws of physics. However, Newton's pendulum is known, which transmits the impulse of oscillatory motion through several balls. These balls hang on parallel threads and fit snugly together. In this case, the momentum of movement is transmitted from one extreme ball to another without the movement of intermediate balls. In this case, with a pendulum length L = 0.29979∙109 m, with a half-period of oscillation of the pendulum T < 0.5 s, it is in principle possible to exceed the speed of light without violating the laws of relativism, since there is no real motion of mass in the pendulum. However, the presence of a significant mass of balls as a measure of the inertia of a physical body imposes restrictions on the speed of momentum transfer.

Aim: The aim of the work is to eliminate this drawback by reducing the mass of contacting objects. Scientific Novelty: The scientific novelty of the work is the substantiation of Newton's pendulum of the atomic-molecular level and the possibility of transmitting motion impulses on it.

Methodology: The research methodology based on the general principles of the dialectics of nature and non-contradiction to the known laws of physics.

Results: The results of the work - the design of the Newton's pendulum of the atomic-molecular level, which consists of 3 nanotubes, the gap between which provides a linear arrangement of molecules, is proposed. On this basis, an experiment on the transfer of the impulse of motion is proposed, which can be carried out on the basis of the LIGO observatory. This requires nanotubes of great length (more than a thousand meters), which poses the further task of their manufacture.

Conclusions: At the same time, the involvement of scientists and technicians and the financing of the project ensure the possibility of its implementation.