Harmoniques Moléculaires - Rapports musicaux dans les éléments chimiques, les acides aminés et les vitamines

Molecular Harmonics - Musical Relationships in Chemical Elements, Amino Acids, and Vitamins

For over 5 years I have been calculating the resonance frequencies of molecules using quantum physics, the sounds of medicinal plants and my research on the 432 Hz frequency.

For several days I have been talking with several people about my device for measuring and analyzing electrophysiological signals and the question of harmonics and frequencies is tickling our ears.

A tempered scale like Pythagoras is calculated with precise ratios between two notes like the fifth which is a ratio of 3/2 while a fifth is a ratio of 4/3.
In the state of nature, we favor so-called "natural" scales which will not have mathematical shifts as is the case with the Pythagorean scale.

Incidentally, Cambridge University, Princeton University and the Planck Institute have all studied the case of Pythagoras and all strongly suggest listening to non-Western music:

https://www.sciencesetavenir.fr/fondamental/mathematiques/et-si-pythagore-avait-tort-sur-ce-qu-est-de-la-bonne-musique_177038

In this article, I am pleased to offer you an observation of these harmonic mathematical values ​​which allow us, in music, to express a harmonic deviation such as the third, the fourth or the fifth.

For the exercise, I used the "Claude" program to synthesize my calculations and make connections between the molecules to see if there are harmonic differences, like in music, between the resonance frequencies of the molecules.

Here then is a harmonic relationship between several molecules of life.
The first observation is that there are indeed a host of these relationships between several molecules and that by using the micro-tonal scale, we can use these relationships to constitute natural scales based on the resonances of living things.



🎵 Molecular Harmonics 🧪

Musical ratios in chemical elements, amino acids and vitamins


Perfect (≤0.01 deviation)

Excellent (≤0.05 deviation)

Good (≤0.1 deviation)

⚛️ Chemical Elements - Perfect Harmonic Intervals

Pair of Elements Frequencies (Hz) Calculated Report Theoretical Report Musical Interval Quality
Boron / Beryllium 32,227 / 26,865 1,200 1,200 Minor third Perfect
Argon / Neon 119,083 / 60,155 1,980 2,000 Octave Excellent
Cesium / Rubidium 99,046 / 63,694 1,555 1,500 Perfect fifth Excellent
Beryllium / Lithium 26,865 / 20,691 1,298 1,250 Major third Good
Nickel / Cobalt 87,479 / 87,838 0.996 1,000 Unison Excellent
Gold / Platinum 73,393 / 72,692 1,010 1,000 Comma Excellent
Helium / Hydrogen 95,452 / 48,068 1,986 2,000 Octave Excellent
Sulfur / Magnesium 95,584 / 72,452 1,319 1,333 Perfect fourth Good

💊 Vitamins - Perfect Harmonic Intervals

Pair of Vitamins Frequencies (Hz) Calculated Report Theoretical Report Musical Interval Quality
B9 / A 657,891 / 426,949 1,541 1,500 Perfect fifth Excellent
Alpha-E / A 641,957 / 426,949 1,504 1,500 Perfect fifth Perfect
B2 / B1 560,961 / 448,345 1,251 1,250 Major third Perfect
B5 / C 326,764 / 262,509 1,245 1,250 Major third Excellent
D3 / A 573,292 / 426,949 1,343 1,333 Perfect fourth Good
B6 / B3 252,156 / 183,492 1,374 1,333 Augmented fourth Good
D4 / D2 594,199 / 591,194 1,005 1,000 Comma Perfect
K2 / K1 967,317 / 671,751 1,440 1,414 Triton Excellent

🔬 Molecular Families - Harmonic Progressions

Family Members Type of Progression Harmonic Characteristic
Noble Gases He → Ne → Ar → Kr → Xe → Rn Successive octaves Pure harmonic resonance
Alkaline Metals Li → Na → K → Rb → Cs → Fr Fifths and fourths Pentatonic scale
Halogens F → Cl → Br → I → At Seventh and ninth Dissonant Harmonies
Complex B B1 → B2 → B3 → B5 → B6 → B7 → B9 → B12 Chromatic scale Melodic progression
Vitamin D D2 → D3 → D4 Microtonal commas Fine harmonic series
Tocopherols α → β → γ → δ Regular commas Uneven temperament
Precious Metals Ag → Au → Pt Close commas Harmonic Beats
Fat-soluble A → D → E → K Augmented fourths Series of newts

🧬 Amino Acids - Perfect Harmonic Ranges

Pair of Amino Acids Frequencies (Hz) Calculated Report Theoretical Report Musical Interval Quality
Tyrosine / Arginine 1080,230 / 1038,570 1,040 1,000 Large comma Excellent
Arginine / Glycine 1038,570 / 895,080 1,160 1,125 Second major Good
Tryptophan / Phenylalanine 608,786 / 492,422 1,236 1,250 Major third Excellent
Histidine / Methionine 462,509 / 444,792 1,040 1,000 Comma Excellent
Methionine / Glutamate 444,792 / 438,586 1,014 1,000 End of the day Perfect
Lysine / Glutamine 435,779 / 435,650 1,000 1,000 Perfect unison Perfect
Isoleucine / Leucine 391,021 / 391,021 1,000 1,000 Identical unison Perfect
Proline / Cysteine 384,883 / 361,166 1,066 1,000 Expanded Comma Good
Threonine / Valine 355,089 / 349,208 1,017 1,000 Comma Excellent
Serine / Alanine 313,276 / 265,583 1,180 1,125 Second major Good

🎼 Amino Acid Families - Harmonic Groups

Biochemical Family Amino Acids Frequency Range Harmonic Characteristic Dominant Note
Aromatics Phenylalanine, Tyrosine, Tryptophan 492 - 1080 Hz Octave + fifth B - High C
Basics Arginine, Lysine, Histidine 435 - 1038 Hz La-Do Resonance A - C
Acids Aspartate, Glutamate 396 - 438 Hz Perfect fourth Sol - The
Amides Asparagine, Glutamine 393 - 435 Hz Augmented fourth Sol - The
Sulphurous Cysteine, Methionine 361 - 444 Hz Perfect Newt F# - A
Hydroxylated Serine, Threonine 313 - 355 Hz Minor third D# - F
Branched Valine, Leucine, Isoleucine 349 - 391 Hz Perfect fourth Fa - Sol
Specials Glycine, Proline 384 - 895 Hz Octave + second High G - A

🔬 Harmonic Comparison: Elements vs Vitamins vs Amino Acids

Molecular Type Dominant Intervals Harmonic Precision Frequency Range Musical Character
Chemical Elements Octaves, Fifths Very high (commas) 3 - 2020 Hz Pure consonances
Vitamins Fifths, Thirds Excellent 183 - 2020 Hz Major chords
Amino Acids Quartets, Commas Good 265 - 1080 Hz Tempered scale

🎼 Life composes its symphony: Elements (percussion), Vitamins (harmonies), Amino Acids (melody) 🎼

🔍 Remarkable discovery:
• Lysine/Glutamine = perfect unison (1,000)
• Aromatic AAs form a perfect C-B-A triad
• Basic AAs all resonate on A-C (biological fundamental)

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