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This Computer Simulation Shows The INCREDIBLE Geometry Produced Through Sound From 100Hz - 4092Hz Notice that the exact same patterns present here are also present throughout ancient spiritual symbology and near the end (4000Hz+) It's like a DMT Experience. THIS IS IMPORTANT 👇

130,335 次观看 • 1 年前 •via X (Twitter)

8 条评论

greenbudha 的头像
greenbudha1 年前

This is the “Flatland” two dimensional view, what does it look like in three dimensions?

Jay Anderson 的头像
Jay Anderson1 年前

Oh, you get UFOs

jkphillyfan 的头像
jkphillyfan1 年前

More important are the harmonics. Pause at 100hz, 200hz, 300hz, 400hz, etc. and understand the visual relationships you see.

KYLΞ ⚚ 的头像
KYLΞ ⚚1 年前

@voidcaapi This is called cymatics. I elevated cymatics from 2D to 3D and turned it into a music visualizer:

voidsignal 的头像
voidsignal1 年前

There’s nothing in this that even remotely resembles the visual characteristics of the DMT experience

You_know_me_as 的头像
You_know_me_as1 年前

Wonder whats going on at 3522 Hz? it basically pauses.

UAP_tech 的头像
UAP_tech1 年前

It’s all generation of standing waves. The patterns will depend on the size of the object being vibrated. Used to good effect in this video:

Guito 的头像
Guito1 年前

So… what I use in my guitar ? 432 hz or 440 hz?!

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The science behind the incredible 'Acoustics' of ancient amphitheaters : Ancient amphitheaters have long been used as venues for large concerts and events, but how did ancient architects achieve such superb acoustics without today's modern audio equipment and acoustical treatment? In last few decades have seen modern acoustic science employ acoustic simulation software and sophisticated computer models of such open amphitheaters, even though these spaces are known solely from archaeological records and hence virtually reconstructed as acoustic models. Often such computer models are complemented by in situ measurements in some well-preserved ancient theaters using more flexible portable equipment. Recent measurements with audience present show that such near-perfect intelligibility is retained beside increased sound absorption by audience, provided that background noise levels are not excessive. Natural phenomena that made acoustics of ancient amphitheaters so remarkable were a result of simple principles like geometry and use of materials and location made an impact. Engineering and architecture used in these sites enabled sound to propagate through large distances, with clarity, as though one was located just next to the speaker. Amplifying acoustic instruments has been of interest for musicians for centuries, leading to different techniques used at smaller venues and more intimate settings. However, there is something unique about atmosphere created when standing inside an amphitheater from reverberation and resonance that can be heard to witnessing energy expand around you - it's an experience that cannot be replicated elsewhere. So how have ancient technical developments paved way for modern audio technology today in amplification, absorption, diffusion and even 3D soundscapes? Sound travels through air as waves and can be amplified or dampened depending on environment. When sound waves hit a hard surface, like a wall or floor, they bounce back and create echoes. This is what causes reverberation and amplification in large open spaces like amphitheaters. Building design played a crucial role in acoustics of ancient amphitheaters. Curved shape of amphitheater created a natural echo chamber that amplified sounds. Seats were also designed at different heights and distances from stage to create a wave of sound that could be heard at every level of auditorium. Additionally, use of marble and other hard materials throughout structure helped to reflect sound waves. While reflection was important for amplifying sound, too much echo could make it difficult to understand speech or music. For this reason, ancient architects used sound-absorbent materials like curtains, carpets and drapes to absorb excess echoes. Orientation of an amphitheater was also crucial to its acoustics. Venues were often built facing east to west so that performers were bathed in natural light during afternoon. This also helped to create an ideal environment for acoustics, as sound waves would travel in same direction as light. Additionally, orientation of stage and seating areas played a role in creating ideal acoustics. While we can appreciate ingenuity of ancient architects, modern technology has allowed us to understand acoustics of ancient amphitheaters in greater detail. Studies have shown that shape of amphitheater was responsible for up to 50% of its acoustics, with rest being attributed to reverberation, reflection and absorption. We can now understand how ancient venues would have sounded in their prime using computer simulations. Natural phenomena that made acoustics of ancient amphitheaters so remarkable were a result of simple principles like geometry and use of certain materials. Engineers of ancient times unknowingly developed best acoustic structures that are still admired today. 🎥 : A 2nd Century AD, Roman Theater in Calama (Numidia), Algeria 🇩🇿. It allows you to whisper from one end to other. 🎥© cameronazi (IG) #archaeohistories

Archaeo - Histories

28,233 次观看 • 1 年前