Uberarchangel Profile picture
Feb 2 35 tweets 7 min read
Outdated names for cynmatic patterns is Chladni Patterns, Sound Figures and Modal Patterns. duckduckgo produces way more interesting results with those terminologies. Nodal patterns are also related.

#cynmatic #ancientgeometry #AncientArt #sacredgeometry
The use of deionized water that is ready to freeze in combination with the introduction of an element of one isotope in a vacuum without introduction of magnetic disturbance colliding in space should produce the cynmatic pattern and thus the frequency said isotope.
Use of 2 similar enough density materials placed inside a sphere vibrated at a frequency should produce the 3D version of that frequency. Then if you can cause the one material to solidify through heat, water, chemical reaction while maintaining the position you have a 3D model.
Use of the 3D model can then be used to generate frequency locking elemental materials. By seeing which materials would be able to match together at supporting or unsupported locations. These would likely be extremely stable and have very interesting properties.
Then through the use of frequency you would be able to lock materials together. Thus making material from isotopes and sound. So take two materials of similar melting points and heating them to the higher of the two, play frequencies, cool it may be time sensitive cooling.
If the interplay is correct you should wind up with a freq material. It would likely have very interesting magnetic/electrical properties.
Plasma, liquid, or gas would likely be the easiest of them to experiment with. Solids would be more difficult. I feel that you would need to phase the interplay of the frequency. Think electrical phases on an electrical motor. May need to use wave propagation.
Variations in the formation would likely be due to slight inconsistencies of the isotope. May need to be mapped or averaged. Think overlaying over top one another multiple images of the pattern.
The use of a water as a liquid or it becoming the patterned snowflake may result in the pattern being phase of matter dependent.
Using standing wave that interact with the tips of the measured amplitude same or slightly +/- should allow for the interlocking of an individual isotope 3 dimensional cynmatic/fractal pattern. Effectively pushing the pattern into one another so as to share singular point.
You may be able to vary this my calculating a standing wave frequency that would vibrate connecting/matting points of the 3d fractal in different locations allowing you to control the assembly basically of the said isotope.
If forming individual isotopes and then bonding them with other materials one might actually be able to use sound to assemble more complex materials. Though we would need to develop some rather interesting speakers with extremely fine points of vibration.
Think how there is a singular point on a magnifying glass where light is most concentrated only it would be sound. It would need to be mounted to a 3d printer style head but, likely need to be 3 of them coming in from each axis and focusing the sound on a singular point.
It may be possible to do this by using a speaker where the outside part of the cone is able to be increased and decreased in diameter. May need to shape speaker more like a Tibetan singing bowl. It may be required to play that into an acoustically conductive cone with small hole
Small hole would likely determine the actual size of the beam of sound. May need to be a radius-ed cone like that of a Tuba, trumpet, sax, etc.
Acoustic imperfections would need to be calculated and adjusted for. Basically each part would need to be acoustically tuned. Obviously there will be harmonic interference from the materials as well. This should be able to be rectified by sending an inverse wave pattern at them.
Movement of the Tibetan bowl speaker to different locations into the bowl need to be experimented with. Could be useful in wave propagation. Need to experiment in all axis and in patterns such as circles in the cone to create lopsided standing waves.
There may be other applications for this such as assembling something inside of an already sealed object without having to enter said object.
The obsession with mercury from the ancients has also lead me to wonder about possible acoustical properties of it. As everyone seemed to see it as important and it has been found at sites of large stone objects.
For the variable cone I was thinking a sheet of the flexible cone material such as kevlar that is changed in depth by adjusting the rear magnet of the cone in and out and the diameter by either flexible pieces of metal in a teardrop shape that flex against the stretched kevlar.
Or telescoping ring. Kevlar should be pulled on a 45 degree angle away from the center diameter of the ring. at which point you can adjust the tension on the ring via kevlar itself by how hard you pull on the kevlar against the ring. Likely will only need to be taunt.
May require clamping applied by feet over the kevlar pushing into the ring especially at transition points. Feet would need to be made of a shock/acoustic absorbing material such as foam like that found on a speaker mic only 1/4" xyz and internal structure may matter.
If so I would suggest the use of something like tyvek or some other extremely smooth material but, you do not want static electricity.
A non ferrous rope like that used for towing made of the higher quality synthetic materials should be used for applying the rearward force on the magnet for the speaker.
For added boost to the strength of the magnet the use of an electromagnet may be possible so long as canceling waves are used against it based off the electricity sinusoidal wave.
Side note: I wonder if with enough power through the use of sound if you can actually stop the flow of a/c electricity.
Pole piece would likely be able to be replaced by one of these new freq materials. Also would suggest with the investigation into superconducting magnets there may be super polarizing materials.
Obviously these techniques can be applied to a grid array for ultrasonic speakers though I would suggest that they each speaker could be adjusted xyz. Think of it like the reflectors on the James web telescope to be able to aim them at a specific point in addition to the cones.
In this way it may be possible to actually affect even smaller particles then we have been able too in the past. Cones for directing to pin point in my mind have been copper though brass or the same pole piece material may be needed.
The same wave effects that effect light, water, electricity should all be applicable to sound as well this includes rogue waves and rip currents.
Because of this things like square waves, saw tooth waves, triangle waves should also be applicable. Especially through the use of an array. It would be extremely interesting to see.
You should with enough control be able to cause ripples on the wavelength. think a bunch of miniature wavelengths within a longer wavelength pattern. think the vibration/ripple of the main wavelength of A/C current. Basically nesting dolls of wavelengths.
If you do this there is likely a golden ratio. Probably has to do with numbers divisible by prime or reinforcing wave lengths where the peaks line up as well as making the same original wavelength.

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@TwitterSupport @elonmusk So um yeah what is going on with the censoring of my account. I search posts from me go to latest it shows 4h ago. Why is it not showing the other posts I have made between that post 4h ago and now? Why are you censoring?
Still not showing them you just undid the shadowban starting from post above forward. Why are you not allowing them to be shown?
I find it interesting that it starts when I tag .jordanbpeterson and .MikhailaFuller

Care to explain? Why don't you want me talking to them?
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