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Rendering crown chakra dynamics through interlocking tori


Global Insight from Crown Chakra Dynamics in 3D? (Part #5)


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A design option presented above uses the movement of the 20 rings, with an associated change of diameter, in order to frame a torus. The rings pass successively through the central hole of the torus then around the torus -- with rings and torus all sharing a single common axis.

Interlocking: A case made separately argued for the significance of coupling two tori as indicated below. It is their orthogonal relationship which is then particularly suggestive as a means of holding fundamental duality, notably that of objective and subjective modalities -- each frquently deemed meaningless to the other.

Torus coupling or interlocking with distinctive movements
Dynamic virtual reality model of intertwined tori Dynamics of interlocking tori

Discussed with respect to the Fearful attraction of a hole (In: Visualization in 3D of Dynamics of Toroidal Helical Coils: in quest of optimum designs for a Concordian Mandala, 2016)

Red torus has a vortex (smoke ring) dynamic in the model; Blue torus has a wheel-like dynamic in the model

VRML animation produced by Bob BurkhardtX3D and VRML variants produced by Sergey Bederov of Cortona3D

Ring containment: Each torus could then be used as a container for 10 rings, as previously illustrated by use of a torus as a container for the classic Zen images of 10 Bulls (Zen of Facticity: Bull, Ox or Otherwise? Herding facts and their alternatives in a post-truth-era, 2017). The image on the right is an experimental combination of the animation of a schematic Ouroboros with the 10 Zen ox-herding images. The cognitive implication then derives from how the coherence for the complex interlocking of two tori might be comprehended, as discussed separately (Cognitive Osmosis in a Knowledge-based Civilization: interface challenge of inside-outside, insight-outsight, information-outformation, 2017).

Animation of simplest torus as container for dynamic cognitive relations
10-fold pattern of Zen bulls
8-fold BaGua pattern of trigrams
Ourobouros through images
Zen ox-herding images in torus animation Bagua trigrams in torus animation Ouroboros and Zen ox-herding
mp4  -- wrl -- x3d  mp4 -- wrl -- x3d x3d

Examples of models using two tori: The significance of such interlocking was the focus of an earlier discussion (Enabling Wisdom Dynamically within Intertwined Tori: tequisite resonance in global knowledge architecture, 2012).

Indicative interlocking torus dynamics with 20 crown chakra rings -- 10 rings per torus
10 rotating rings "flat" in each torus 10 rings turning in each torus 10 rings circulating thru each torus
Horizontal rotation of 20 crown chakra rings within interlocking tori Overlapping movement of 20 crown chakra rings within interlocking tori Circulation of 20 crown chakra rings within interlocking tori
interactive web -- x3d interactive web -- x3d interactive web -- x3d

The animation on the right above is potentially more interesting when the rate of movement of the circles through one torus is much greater than that through another -- best seen through another interactive variant. (due to the technical challenges of representation). This animation is especially relevant to the subsequent argument.

Range of design options with two tori:

Torus movement options
"Horizontal" torus static moving (faster/slower) static moving (faster/slower)
"Vertical" torus static static moving (faster/slower) moving (faster/slower)
Torus visibility options
"Horizontal" torus visible invisible invisible invisible
"Vertical" torus visible visible visible invisible
Ring colour options
"Horizontal" torus

same colour
(for both tori)

distinctive single colour same 10 colours
(for both tori)
20 distinctive
colours
"Vertical" torus distinctive single colour
Ring dynamics options
Ring orientation Ring dynamic Ring movement within torus
Horizontal
(plane of torus)
static turning on
ring axis
rotating
parallel
to torus
axis
stationary moving along torus in sync moving along torus different rates (passing through each other) some moving in reverse direction (colliding)
"Vertical"
(to plane of torus)
static turning on
ring axis
rotating
parallel
to torus
axis
stationary moving along torus in sync moving along torus different rates (passing through each other) some moving in reverse direction (colliding)

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