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논문 기본 정보

자료유형
학술대회자료
저자정보
저널정보
한국정신과학학회 한국정신과학회 학술대회논문집 한국정신과학학회 제4회 1996년도 춘계학술대회 논문집
발행연도
1996.4
수록면
82 - 97 (16page)

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초록· 키워드

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The outer-most electrons of metal atoms and the remaining valence electrons of any molecular atoms make three dimensional crystallizing p-bondings. The electrons on the p-bonding orbital rotate clockwise or counter-clockwise and they then make electro-magnetic waves between atoms on the orbital because electron move between plus charged ions.
The three dimensional crystallizing p-bonding orbitals are quantum-mechanically modeled by a cyclic Kronig-Penny Model and energy band structures are analyzed with their potential barrier thickness.
The waves generated between plus charged ions are the particular p-far infrared rays, which have dual properties between material and electro-magnetic waves and can be measured not by modcm electro-magnetic tester but biosensor such as finger's force tester.
Because the p-rays can be modulated with electro-magnetic waves it can be applied for harmful electro-magnetic wave killers. Because the p-rays make new three dimensional crystallizing p-bonding orbitals in the material the food and drink can be transformed into a helpful physical constitutional property for human health.
Distinction between crystalline and amorphous metals is possible because
very strong crystalline p-bonding orbitals can not easily be transformed into another. The p-rays can also be applied for biofunctional diagnostics and therapy. Gravitational field is one of the electro-magnetic fields. And also magnetic field and gravitational force field make charge's movement.

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개요

ABSTRACT

1. CONVENTIONAL METALLIC BONDING AND THREE-DIMENSIONAL CRYSTALLIZING p-BONDING.

2. GENERATION OF p-FAR INFRARED RAYS FROM THREE-DIMENSIONAL CRYSTALLIZING p-BONDINGS.

3. THEORETICAL DUAL PROPERTIES BETWEEN MATERIAL AND ELECTRO-MAGNETIC WAVES

4. EVIDENCE OF DUAL PROPERTIES

5. MATERIAL STRUCTURE TRANSFORAMTION BY-p-FAR INFRARED RAYS

6. DISTINCTION BETWEEN CRYSTALLINE AND AMORPHOUS METAL BY THE p-FAR INFRARED RAYS

7. BIOFUNCTIONAL DIAGNOSTICS AND THERAPY

8. CONCLUSIONS

REFERENCES

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