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Radiation of water courses and geological structures

Groundwater radiation, geological influences and the droplet method

Groundwater radiation is classified as microwave radiation, which is said to be caused by the flow of neutrons excited from different sources. They do not reach the surface in a pure form, but change their energy potential under the influence of geological processes in the earth's crust.

Geological changes and radiation modification

Earth's structure and tectonic disturbances significantly affect the characteristics of underground radiation. Such processes include:

  • Tectonic faults: Cracking and shifting of rock layers due to old tectonic movements.
  • Internal hollows and wrinkles: The formation of voids or folds within soil layers.
  • Ore deposits and oil pools: Integration of radiation from mineral raw materials (iron, lead, manganese) or oil deposits, which changes the frequencies and energy potential of water radiations that are also right or left circular.

Precise locating of the place for digging a well would require knowledge of all these complex phenomena for eventual corrections in the field, which is extremely difficult to do in practice, and thus can explain possible errors in dowsing locating.

Biological impact and droplet imaging method

When it comes to the impact of electromagnetic radiation from water courses on humans, the distribution is unfortunately unfavorable: about 80% of groundwater is negative (left-circular), while only 20% is positive (right-circular). Although their chemical composition is identical, their effect on the living world is drastically different, whereby positive waters have been known since ancient times as healthy and beneficial.

The droplet method (Die Tropfenbildmethode)

The method developed by Theodor Schwenk is used to determine the differences between positive and negative waters. The procedure consists of pouring 30 drops of water into the glass at the rate of one drop every five seconds, after which the structural image on the surface of the water is photographed. In this way, the differences between mineral water and tap water, as well as between natural spring water and stagnant water, can be clearly seen.

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