Integrating Light

Inspired by Walter Russell · Nikola Tesla · Cymatics

Integrating Light

Everything is light, and light moves in waves. Walter Russell drew the elements not as a grid of particles but as ten octaves of one wave — a scale of tones, each with its own color and its own note. Move through it, touch it, and listen.

“Matter is light. Nothing is which is not light.”

— Walter Russell, The Universal One (1926)

Turn the sound on — every tone has its own note, and you'll hear each one as you explore.

Begin with one octave

I · The octave

One octave, eight tones

Every octave on Russell's chart is the same wave. It leaves the line of stillness, winds up through three charging tones to a crest, unwinds through three discharging tones, and comes to rest in an inert gas — the master tone — before the next octave begins.

The textbooks count particles to explain why the elements repeat. Russell heard why: they repeat because they are a scale. His circular chart writes a color and a note beside each tone — red through yellow, C down to G, on the charging side; green through violet, F down to D, on the discharging side. Those are the colors of this whole page. Wherever you see yellow, you are standing on a crest.

One octave: from helium, through lithium to fluorine, to neon 0 He 1+ Li 2+ Be 3+ B 4‡ C 3− N 2− O 1− F 0 Ne
Hover or tap a tone. Each color and note is the one Russell wrote beside that tone's line.

II · The ten octaves

The ten octaves of integrating light

“Diagram showing the ten octaves of integrating light, one octave within the other. These ten octaves constitute one complete cycle of the transfer of the universal constant of energy into, and through, all of its dimensions in sequence.”

— Walter Russell, caption to his chart of the ten octaves

Follow the wave down from Alphanon. The first three octaves hold tones no laboratory has isolated — Russell named them anyway, because the wave requires them. Hydrogen, “the first element”, arrives only as the first tone of the fourth octave. From the seventh octave the wave swings wide, and the metals crowd in around each crest as mid-tones. The faint twin beside each wave is its opposite: no motion without its reaction.

Hover or tap any tone. Tap an octave's name to hear its scale. With a tone focused, the arrow keys walk the wave.

The ten octaves of integrating light, drawn as one wave 1st octave 2nd octave 3rd octave 4th octave 5th octave 6th octave 7th octave 8th octave 9th octave 10th octave Alphanon Irenon Marvaon Vijaon Tomion Alberton Blacton Boston Betanon Jamearnon Erneston Eykaon Athenon Barnardon Delphanon Romanon Gammanon Marconium Penrynium Vinton Quentin Tracion Buzzeon Helenine Hydron Hydrogen Ethlogen Bebegen Carbogen Luminon Halanon Helionon Helium Lithium Beryllium Boron Carbon Nitrogen Oxygen Fluorine Neon Sodium Magnesium Aluminium Silicon Phosphorus Sulphur Chlorine Argon Potassium Calcium Scandium Titanium Vanadium Chromium Manganese Iron Cobalt Nickel Copper Zinc Gallium Germanium Arsenic Selenium Bromine Krypton Rubidium Strontium Yttrium Zirconium Niobium Molybdenum Technetium Ruthenium Rhodium Palladium Silver Cadmium Indium Tin Antimony Tellurium Iodine Xenon Caesium Barium Lanthanum Cerium Praseodymium Neodymium Promethium Samarium Europium Gadolinium Terbium Dysprosium Holmium Erbium Thulium Ytterbium Lutetium Hafnium Tantalum Tungsten Rhenium Osmium Iridium Platinum Gold Mercury Thallium Lead Bismuth Polonium Astatine Radon Francium Radium Actinium Thorium Protactinium Uranium Neptunium Plutonium Americium Curium Berkelium Californium Einsteinium Fermium Mendelevium Nobelium Lawrencium Rutherfordium Dubnium Seaborgium Bohrium Hassium Meitnerium Darmstadtium Roentgenium Copernicium Nihonium Flerovium Moscovium Livermorium Tennessine Oganesson Omeganon
Read the ten octaves as a list

The 1st octave

  1. Irenon · 1+ · 16.0 Hz
  2. Marvaon · 2+ · 15.0 Hz
  3. Vijaon · 3+ · 13.3 Hz
  4. Tomion · 4‡ · 12.0 Hz
  5. Alberton · 3− · 10.7 Hz
  6. Blacton · 2− · 10.0 Hz
  7. Boston · 1− · 9.00 Hz
  8. Betanon · master · 8.00 Hz

The 2nd octave

  1. Jamearnon · 1+ · 32.0 Hz
  2. Erneston · 2+ · 30.0 Hz
  3. Eykaon · 3+ · 26.7 Hz
  4. Athenon · 4‡ · 24.0 Hz
  5. Barnardon · 3− · 21.3 Hz
  6. Delphanon · 2− · 20.0 Hz
  7. Romanon · 1− · 18.0 Hz
  8. Gammanon · master · 16.0 Hz

The 3rd octave

  1. Marconium · 1+ · 64.0 Hz
  2. Penrynium · 2+ · 60.0 Hz
  3. Vinton · 3+ · 53.3 Hz
  4. Quentin · 4‡ · 48.0 Hz
  5. Tracion · 3− · 42.7 Hz
  6. Buzzeon · 2− · 40.0 Hz
  7. Helenine · 1− · 36.0 Hz
  8. Hydron · master · 32.0 Hz

The 4th octave

  1. Hydrogen H · 1+ · 128 Hz
  2. Ethlogen · 2+ · 120 Hz
  3. Bebegen · 3+ · 107 Hz
  4. Carbogen · 4‡ · 96.0 Hz
  5. Luminon · 3− · 85.3 Hz
  6. Halanon · 2− · 80.0 Hz
  7. Helionon · 1− · 72.0 Hz
  8. Helium He · master · 64.0 Hz

The 5th octave

  1. Lithium Li · 1+ · 256 Hz
  2. Beryllium Be · 2+ · 240 Hz
  3. Boron B · 3+ · 213 Hz
  4. Carbon C · 4‡ · 192 Hz
  5. Nitrogen N · 3− · 171 Hz
  6. Oxygen O · 2− · 160 Hz
  7. Fluorine F · 1− · 144 Hz
  8. Neon Ne · master · 128 Hz

The 6th octave

  1. Sodium Na · 1+ · 512 Hz
  2. Magnesium Mg · 2+ · 480 Hz
  3. Aluminium Al · 3+ · 427 Hz
  4. Silicon Si · 4‡ · 384 Hz
  5. Phosphorus P · 3− · 341 Hz
  6. Sulphur S · 2− · 320 Hz
  7. Chlorine Cl · 1− · 288 Hz
  8. Argon Ar · master · 256 Hz

The 7th octave

  1. Potassium K · 1+ · 1024 Hz
  2. Calcium Ca · 2+ · 960 Hz
  3. Scandium Sc · 3+ · 853 Hz
  4. Titanium Ti · mid-tone · 838 Hz
  5. Vanadium V · mid-tone · 824 Hz
  6. Chromium Cr · mid-tone · 810 Hz
  7. Manganese Mn · mid-tone · 795 Hz
  8. Iron Fe · mid-tone · 782 Hz
  9. Cobalt Co · 4‡ · 768 Hz
  10. Nickel Ni · mid-tone · 753 Hz
  11. Copper Cu · mid-tone · 738 Hz
  12. Zinc Zn · mid-tone · 724 Hz
  13. Gallium Ga · mid-tone · 710 Hz
  14. Germanium Ge · mid-tone · 696 Hz
  15. Arsenic As · 3− · 683 Hz
  16. Selenium Se · 2− · 640 Hz
  17. Bromine Br · 1− · 576 Hz
  18. Krypton Kr · master · 512 Hz

The 8th octave

  1. Rubidium Rb · 1+ · 2048 Hz
  2. Strontium Sr · 2+ · 1920 Hz
  3. Yttrium Y · 3+ · 1707 Hz
  4. Zirconium Zr · mid-tone · 1677 Hz
  5. Niobium Nb · mid-tone · 1648 Hz
  6. Molybdenum Mo · mid-tone · 1619 Hz
  7. Technetium Tc · mid-tone · 1591 Hz
  8. Ruthenium Ru · mid-tone · 1563 Hz
  9. Rhodium Rh · 4‡ · 1536 Hz
  10. Palladium Pd · mid-tone · 1506 Hz
  11. Silver Ag · mid-tone · 1477 Hz
  12. Cadmium Cd · mid-tone · 1448 Hz
  13. Indium In · mid-tone · 1420 Hz
  14. Tin Sn · mid-tone · 1392 Hz
  15. Antimony Sb · 3− · 1365 Hz
  16. Tellurium Te · 2− · 1280 Hz
  17. Iodine I · 1− · 1152 Hz
  18. Xenon Xe · master · 1024 Hz

The 9th octave

  1. Caesium Cs · 1+ · 4096 Hz
  2. Barium Ba · 2+ · 3840 Hz
  3. Lanthanum La · 3+ · 3413 Hz
  4. Cerium Ce · mid-tone · 3388 Hz
  5. Praseodymium Pr · mid-tone · 3362 Hz
  6. Neodymium Nd · mid-tone · 3337 Hz
  7. Promethium Pm · mid-tone · 3312 Hz
  8. Samarium Sm · mid-tone · 3287 Hz
  9. Europium Eu · mid-tone · 3263 Hz
  10. Gadolinium Gd · mid-tone · 3238 Hz
  11. Terbium Tb · mid-tone · 3214 Hz
  12. Dysprosium Dy · mid-tone · 3190 Hz
  13. Holmium Ho · mid-tone · 3166 Hz
  14. Erbium Er · mid-tone · 3142 Hz
  15. Thulium Tm · mid-tone · 3119 Hz
  16. Ytterbium Yb · mid-tone · 3095 Hz
  17. Lutetium Lu · 4‡ · 3072 Hz
  18. Hafnium Hf · mid-tone · 3042 Hz
  19. Tantalum Ta · mid-tone · 3012 Hz
  20. Tungsten W · mid-tone · 2983 Hz
  21. Rhenium Re · mid-tone · 2954 Hz
  22. Osmium Os · mid-tone · 2925 Hz
  23. Iridium Ir · mid-tone · 2896 Hz
  24. Platinum Pt · mid-tone · 2868 Hz
  25. Gold Au · mid-tone · 2840 Hz
  26. Mercury Hg · mid-tone · 2812 Hz
  27. Thallium Tl · mid-tone · 2785 Hz
  28. Lead Pb · mid-tone · 2758 Hz
  29. Bismuth Bi · 3− · 2731 Hz
  30. Polonium Po · 2− · 2560 Hz
  31. Astatine At · 1− · 2304 Hz
  32. Radon Rn · master · 2048 Hz

The 10th octave

  1. Francium Fr · 1+ · 8192 Hz
  2. Radium Ra · 2+ · 7680 Hz
  3. Actinium Ac · 3+ · 6827 Hz
  4. Thorium Th · mid-tone · 6772 Hz
  5. Protactinium Pa · mid-tone · 6717 Hz
  6. Uranium U · mid-tone · 6663 Hz
  7. Neptunium Np · mid-tone · 6609 Hz
  8. Plutonium Pu · mid-tone · 6556 Hz
  9. Americium Am · mid-tone · 6503 Hz
  10. Curium Cm · mid-tone · 6450 Hz
  11. Berkelium Bk · mid-tone · 6398 Hz
  12. Californium Cf · mid-tone · 6346 Hz
  13. Einsteinium Es · mid-tone · 6295 Hz
  14. Fermium Fm · mid-tone · 6244 Hz
  15. Mendelevium Md · mid-tone · 6194 Hz
  16. Nobelium No · 4‡ · 6144 Hz
  17. Lawrencium Lr · mid-tone · 6093 Hz
  18. Rutherfordium Rf · mid-tone · 6041 Hz
  19. Dubnium Db · mid-tone · 5991 Hz
  20. Seaborgium Sg · mid-tone · 5941 Hz
  21. Bohrium Bh · mid-tone · 5891 Hz
  22. Hassium Hs · mid-tone · 5842 Hz
  23. Meitnerium Mt · mid-tone · 5793 Hz
  24. Darmstadtium Ds · mid-tone · 5744 Hz
  25. Roentgenium Rg · mid-tone · 5696 Hz
  26. Copernicium Cn · mid-tone · 5648 Hz
  27. Nihonium Nh · mid-tone · 5601 Hz
  28. Flerovium Fl · mid-tone · 5554 Hz
  29. Moscovium Mc · mid-tone · 5507 Hz
  30. Livermorium Lv · 3− · 5461 Hz
  31. Tennessine Ts · 2− · 5120 Hz
  32. Oganesson Og · 1− · 4608 Hz
  33. Omeganon · master · 4096 Hz

III · The wheel

The wheel of the elements

Russell's circular chart is the same wave seen from above: a spiral out of absolute zero, each octave half a turn. The master tones fall on one horizontal line — the line of the inert gases — alternating either side of the centre. Every crest stands on the vertical carbon line.

Read along any spoke and you meet a family. The lithium line runs Irenon, Jamearnon, Marconium, hydrogen, lithium, sodium, potassium, rubidium, caesium, francium — the alkali metals the textbooks group by counting, found here by tone.

The wheel of the elements, after Walter Russell's circular periodic chart 1+ 1+ 2+ 2+ 3+ 3+ 4‡ 4‡ 3− 3− 2− 2− 1− 1− 0 0 Li Be B C N O F Ne Na Mg Al Si P S Cl Ar K Ca Sc Co As Se Br Kr Rb Sr Y Rh Sb Te I Xe Cs Ba La Lu Bi Po At Rn Fr Ra Ac No Lv Ts Og

IV · The law

All direction is curved. All motion is spiral.

— the two headings of Russell's chart of the electro-magnetic process of mass formation

“Mass is an accumulation of the universal constant of energy into higher potential. The greater the mass the greater the potential. Mass accumulates inductively along the centripetal lines of closing spirals, and is rotated by the impact of genero-active force. Mass dissipates conductively along centrifugal lines of opening spirals, and is rotated by the expulsion of radio-active force. These opposite forces are the cause of rotation of mass.”

— Walter Russell, chart of the electro-magnetic process of mass formation
Discharging Charging
Balanced
Two vortices: charging and discharging spirals meeting at the inertial plane Inertial plane of equal pressures Inertial plane of regeneration × ×

V · Cymatics

Sound made visible

Scatter sand on a plate and sound it. The sand leaves every place that moves and gathers on the lines that stand still — the figure of the tone. Russell's wave says the same of all matter: form gathers where motion comes to rest.

Here every tone of every octave has its own figure. Higher octaves draw finer figures; charging tones and discharging tones draw mirror-opposite ones; the master tones draw rings — spheres of rest.

“However, this is not an unregulated chaos; it is a dynamic but ordered pattern.”

— Hans Jenny, Cymatics (1967)
Tone
5th

The lineage

VI · Tesla

The wheelwork of nature

“Throughout space there is energy. Is this energy static or kinetic? If static our hopes are in vain; if kinetic—and this we know it is, for certain—then it is a mere question of time when men will succeed in attaching their machinery to the very wheelwork of nature.”

— Nikola Tesla, lecture to the Institution of Electrical Engineers, London (1892)

Tesla never stopped speaking of the medium the physicists later wrote out of their equations — the ether that carries every wave. He and Russell met. As Lao Russell told it, when Russell showed Tesla his cosmogony, Tesla's advice was to hide it:

“Tesla told him that he would have to seal it in a sepulchre with instructions that it be opened in a thousand years when human intelligence had unfolded far enough to be ready to accept it.”

“Long ago he recognized that all perceptible matter comes from a primary substance, of a tenuity beyond conception and filling all space—the Akasha or luminiferous ether—which is acted upon by the life-giving Prana or creative force, calling into existence, in never ending cycles, all things and phenomena.”

— Nikola Tesla, “Man's Greatest Achievement”, New York American (1930)

Two tones, one figure

The wheelwork is harmony. Give each of two vibrations an axis and let them draw together: when their ratio is simple — an octave, a fifth — the line closes into one still, turning form. Choose two tones of the octave.

First tone
Second tone

VII · The library

Go to the sources

Don't take this page's word for it — or the textbooks'. Read Russell, Tesla and the cymatic pioneers in their own words.

“Light is all there is; it is all we have to deal with, but we do not yet know what it is.”

— Walter Russell, The Secret of Light (1947)

Walter Russell

Keepers of the work

Tesla

Cymatics