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Rotational motion as a means of movement in space

Let's think - flying saucers, is this a real phenomenon from the point of view of academic science, and is there any reasonable explanation for such a phenomenon? In the beginning, let us recall what has long been known to everyone. Academic science proves the fact that any movement must be preceded by repulsion. Otherwise, this fact is also called a "support" movement, in which the mass of a moving body, including a rotating one, repels from another mass.

In closed systems, the sum of all external forces always remains unchanged. Simply put, the center of any movement that occurs on Earth and within its investigated orbits is the very middle of the globe. This law obeys all subjects and any vehicles known to the world today.

Fundamental laws on which all interaction of the masses is based in a closed space, to which the Earth is, are the three Newton's laws, namely, the law of conservation of energy, the law of momenta and the law of momenta of impulses. With a correct interpretation of these laws, it can not be concluded that the center of mass The closed space in which the rotational motion occurs remains constant.

Are there alternative kinetic energy of rotational motion, which is not based on the action of external forces, that is, is not "support"? Let's look at an example.

Suppose we have a cylinder, a small ball rotates around the cylinder around a conditional, very strong and weightless sphere. If a minor shock wave is created behind the ball (explosion), then according to Newton's second law, the change in the rotation speed of the ball must occur in proportion to the force acting on it (that is, the force of the explosion), and the movement must be directed along a straight line toward which the explosive force was Attached.

What will happen in this particular example? Newton's second law does not differentiate directions into translational or rotational ones. Consequently, the rotational and translational displacement of the cylinder should be considered equal to the force applied to the cylinder. It turns out that a body rotating around an object can transmit this body a forward and rectilinear motion, the direction of which will coincide with the direction of the applied force.

Hence, the rectilinear and translational motion of one object can cause the energy that the work produces when rotating another object. The cylinder, in our example, has a large mass, relative to the ball. If this were not so, then the motion of the central axis of the cylinder would be equivalent to the motion of the rotating ball. However, by examining our example, we can assume that there is the right to exist such inertia, in which the force applied to the center of the cylinder will cause in it a straightforward and progressive motion.

Thus, the rotational motion of one object can cause the rectilinear and translational motion of the other, and all three Newton's laws will not be violated at the same time.

Modern science has already reached the point that it is able to create an "unsupported" engine that will use the continuous, closed and cyclic process of energy production, which will create a rotational movement. This method of movement can be used in any vehicle, from a bicycle and to a flying saucer, and the economic efficiency of this process will be incomparable.

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