Sound levitation

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In the early 1930s, Swedish aviation engineer Henri Kjellson observed in Tibet that the monks were building a rock temple at a height of 400 metres. The stones, with a diameter of about half a meter - Dotaskivalsya Yak is a small horizontal area located at a distance of 100 meters from the cliff. They then pour into a hole in the rock, corresponding to the size of the stone and the depth of 15 centimeters.


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At 63 meters from the pit (the engineer measures with precision all the distances) there were 19 musicians, and behind them 200 monks, he is in a radial piniyam. A few people in each. The angle between the lines was five degrees. A stone was placed in the center of this building.

There were 13 musicians with large drums hanging from the wooden beams and sounding towards the surface to the pit with a stone. Between the drums in different places they place six large metal pipes, also outlets, directed to the pit. Around each tube are two musicians who blow in their turn. According to a special team of the entire band had to play out loud, and the monks' choir, singing in unison. And as Henry Kjellson said, four minutes, when the sound reaches its peak, the boulder in the hole itself begins to sway, and suddenly it flew parabolic directly to the top of the rock.

Thus, according to Henri's story, the monks offered the temple they were building, five or six huge rocks every hour.

As an engineer and aviator, Kjellson tried to explain the incredible phenomenon from the point of view of common sense.

Kjellson passed distance measurements from the well to the pit rock before the musicians and monks performed, and so on, and got the numbers of all multiples of the "pi" number and the proportions of the golden section and the number 5024 - the product of "PI" and the golden proportion. The stone was in the centre of the circle formed by the orchestra and the monks, who sent sound waves to the pit, which acted as a reflector of these oscillations, and they also proposed the transfer of a rock to 400 metres! The sounds grew slowly (four minutes, or 240 seconds), were very beautiful, and the vibrations were harmonious. As a result of this effect, the sacred temple is being created and was in fact built.

The stones flew in a parabolic dish. First it was almost vertically (range, bouncing off the rocks, not allowed to approach the rock), and then it begins to deviate towards the top. Closer to the rock there was a smaller number of monks in the radius lines, therefore, the fluctuations and their reflections were weaker, and by the top of their numbers, in general, they began to fall drastically, and the stones, following the path of least resistance, simply reached the site of the sanctuary construction.

It is likely that in the same way the ancient builders of the pyramids and other important global structures were also working. They moved rocks possibly at considerable distances and higher altitudes.

SUCCESSFUL EXPERIMENT

Physicists generally accept the possibility of controlled acoustic levitation. Not only mastered the management technology of the first (verical) but then for the carrying of large rocks in horizontal.

Many people have probably seen great things hanging in the air with a drop of water. These experiments produced, for example, scientists from Switzerland. But to achieve control of the process on three levels for a long time could not be either.

And in January of this year, experts at the University of Tokyo did it using sound waves to float small objects of different shapes and weights in space. The Japanese matrix was directed as a sound source located at certain points, allowing them to move in complex paths.

At first, scientists have operated on the usual water droplets, polystyrene pieces with a diameter of 0.6 to 2 mm, and other small pieces, but the crown of a series of experiments was the lifting of buckets designed by a toy manufacturer, on top of a pyramid model.

Experiencers say that after a while we will be able to handle objects of any weight and volume. All that remains is to learn how to determine the sound of a certain frequency and capacity, according to the material, size, etc. They also say that acoustic levitation in the future will help to fully overcome gravity. The use of this technology to create new types of aircraft is already of interest to some NASA engineers.

In this video you can see about these experiments.

Sound levitation | Ecency