How is electromagnetic used in mining?

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1016592

2026-08-19 18:45

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In the experimental phase a productive and effective strategy first comes in "prospecting". Examples include "divining rods" as is the case for H2O detection as well as the more advanced and still amiable/developmental electromagnetic tonal resonance. The parameters of which consit of the known fact that elements have a unique discharge upon cotact with electric shock or "input" given its monitored and data collected the returning signature would describe total composition and in more advanced methods make-up molecularly and atomically. Given that the equation for such observations are set and proven via sequential testing and control groups within a lab.

The next phase which is still let us say in development would be the large scale usage of emp scaler pulsars as a carrier/return wave to detect certain key elemental within lets us say the ocean floor, mountain range etc. etc.

The application of such techniques is feasable given advances spectral analysis, electrical discharge return rates and the design of equipment which wll carry the given function and monitoring.

The primary concern is outside the control group which would require adjusting the carrier/scaler wave to compensate for external facors such as saline water displacion, heavy air or other external stimuli that would offset the response. However, the method is applicable given the equation set lists are in place and the correct read out complete with variance, polynomials and external factors are processed and recieved into a digital mapping and co-ordinance device.

Patents as well a governmental orginizations are already scurring to secure rich sea bed deposits within the mid atlantic ridge among other places. Needless to say the amount of minerals plus fertilizers that could becompounded from such new mining techniques as well as the result in immense wealth is comparable to the discovery of the americas and the resulatant struggle to secure said sea bed deposits.

The equation list will consist of a beta wave with leng designated by tonal frequency input with enviomental displasions. Then synthesize the return readout with the data collected from lab test to what said area is composed of post emp pulsar blast.

The radials of such blast can be calibrated from 15 meters to let us say a mega watt spread of 15-35 km's given the wave pattern is set ansd calculations are in place. Sensory arrays would primarly consist of insulated probes imbeded with the soils and sub soils and calibrated at which crest the emp will pass. u ~ n

Three dimensional models are still applicable and is recommended during sequencing of the wave carriers and the reciever platforms whether the be probes or implace rod housing groups.

The equation set lists include the sigma wae offset by polarity of metallic to bases. Based on the differential between the registered wave polarity upon detonation the general composite sketch would then be place through a processor were the polarity charge is dissiminated and coded dependent on the variables recieved and the tonal signature as well as length of blast with dimensionals as well as duration and magnitiude in wattages and receptors calibtrations.

The Data..........sorry can't compute in three dimensional space. On a x,y,z axis

Phase 1

1- spatials and outer environs. "Differentials to be calculated upon environ"

0 - Calibrated Electromagnetic Pulsar Wave

*- Sensory receptors "AS WELL AS TARGET GROUP"

Sensory array and blast center.

Alpha and Omega Receptors- ORIGIN AND END POINT RECEPTORS

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1111111111111111000000000011111111111111111111111

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Factoring with Alpha and Omega input []

Chemical Composition, Scaling based on Carbon Base Lining and Magnetic Reactivity and Radiance

Using carbon baseline and electro-reactivity monitoring control groups using carbon as the base line within a scale and set equation graphs.

Either on a low curve or high curve.

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