Micro-inclusions: The Key To The Technologies Of The "gods" - Alternative View

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Micro-inclusions: The Key To The Technologies Of The "gods" - Alternative View
Micro-inclusions: The Key To The Technologies Of The "gods" - Alternative View

Video: Micro-inclusions: The Key To The Technologies Of The "gods" - Alternative View

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Traces of technology "gods"

It has long been no secret that in the distant past, very high technologies already existed and were applied on Earth, which we can observe on a number of objects in different parts of the world, where traces of the so-called "civilization of the gods" are marked. Now it is not even so important whether it was "unearthly" (aliens from outer space), or originated on our planet. What is important is that we are faced with specific facts about specific objects under investigation, which cannot be denied or interpreted in any other way. And there is concrete evidence of the use of these "gods" technologies.

Researchers obtained data on what tools the "gods" or their descendants could use (subject to the transfer of knowledge about the technology) on the traces of their use - micro-inclusions on objects.

In the process of working stone - especially hard rocks such as granite and basalt - the working tool inevitably grinds away. In this case, the smallest particles of the material of the instrument can get stuck between the hard crystals of quartz, which are part of many rocks of natural stone. And the analysis of such micro-inclusions can provide information on the composition of processing tools.

Today we already have hundreds of laboratory-recorded and analyzed microparticles of the material of processing instruments. They are small - only a dozen or so microns in size and are often heavily eroded, but in a number of cases it was possible to determine their detailed chemical composition.

Fragments of a quartzite sarcophagus and instrument microparticles on its surface

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It is curious that the overwhelming majority (about 70-80 percent) of the analyzed particles belongs to approximately the same metal alloy, which has several important characteristics at once.

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First, it is found on samples of ancient objects that are scattered over a vast territory - from Egypt to Japan.

Secondly, in its composition there is a rather high content of nickel and cobalt - elements that are now used to create high-tech tool alloys used in conditions of high temperatures and an aggressive chemical environment. Moreover, the amount of these metals is such that we can certainly talk not about accidental, but about their deliberate addition to the alloy (for example, the nickel content ranges from 10 to 40 percent).

And thirdly, this alloy is not included in the nomenclature of both currently produced alloys and those ever produced by mankind throughout the known history.

The closest analogs of this alloy have a very high thermal conductivity and therefore are used, in particular, in the most heat-stressed areas of rocket engines.

The found microparticles of the material of the tool, which in ancient times was used by some craftsmen for processing hard rocks, have nothing to do with the simplest technologies of those civilizations that are known to historians and archaeologists. It is simply impossible to obtain such alloys by the methods of primitive metallurgy!..

Also, data from soil studies near the pyramids in Giza showed the presence of traces of rare earth metals in the samples (rare earth elements, in the periodic table - lanthanides). The modern field of their application is very curious.

Scandium: space technology, energy saving lamps.

Yttrium: lasers, microwave filters, high-temperature superconductors.

Lanthanum: lenses, oil refining, high refractive index glass, electrodes.

Cerium: glass and ceramics, polishes, oxidants.

Praseodymium: magnets, lasers, incandescent lamps.

Neodymium: magnets, lasers.

Promethium: atomic batteries.

Samarium: magnets, lasers, masers.

Europium: lasers, energy saving lamps.

Gadolinium: magnets, lasers, x-ray tubes, magnetic resonance imaging, computer memory.

Terbium: lasers, fluorescent lamps.

Dysprosium: magnets, lasers.

Holmium: lasers.

Erbium: lasers, vanadium steel.

Thulium: medical x-rays.

Ytterbium: lasers.

Lutetium: Positron Emission Tomography, high refractive index glass.

In aircraft and rocketry, they are used to produce ultra-strong, diffusion coatings. This is the so-called currentless transfer.

There are concrete traces of high technologies. And the official version with "slaves, ropes and pharaohs" in the light of the available facts can be safely sent to the dustbin of history - where it belongs …

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