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"The
Universe is a thought of the Deity. Since this ideal thought-form has overflowed into actuality, and the world
born thereof has realized the plan of its creator, it is the calling of all thinking beings to rediscover in
this existent whole the original design."

Friedrich
Schiller

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The outer and inner forms of the Tree of Life, the Platonic solids, the I Ching table of 64 hexagrams, the Sri Yantra, the disdyakis triacontahedron and the polychorons are shown to be equivalent representations of holistic systems and to embody the physics of superstrings as remote viewed by Annie Besant and C.W. Leadbeater.
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Articles
HTML and PDF articles.
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Web
List of research articles as web pages.
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PDF
List of research articles as PDFs.
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The Tree of Life
Constructed from tetractyses. the outer and inner Trees of Life display their isomorphism to the I Ching array of hexagrams, the Sri Yantra and the polyhedral Tree of Life.
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I Ching
How the I Ching table of 64 hexagrams is isomorphic to the outer & inner Trees of Life.
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The Sri Yantra
How the Sri Yantra is ismorphic to the outer & inner Trees of Life and to the 64 hexagrams in I Ching.
www.smphillips.mysite.com/the-sri-yantra.html
Polyhedral Tree of Life
How the polyhedral Tree of Life is encoded in the outer & inner Tree of Life and is isomorphic to the 64 hexagrams of the I Ching and to the Sri Yantra.
www.smphillips.mysite.com/polyhedral-tree-of-life.html
Correspondences
The inner Tree of Life, Platonic solids, Sri Yantra and disdyakis triacontahedron are proved to be equivalent representations of holistic systems.
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The holistic pattern
The basic holistic patterns within sacred geometries are analyzed.
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Power of the polygons
We analyze how polygons embody numbers that are parameters of sacred geometries such as the Tree of Life and which relate through the tetractys of Pythagoras to the number values of the Divine Names in Kabbalah.
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Triangle
The Tree of Life parameters embodied in the triangle are analyzed.
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Square
We analyze how the square embodies the parameters of the Tree of Life and other sacred geometries.
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Pentagon
We analyze how the pentagon embodies parameters of the Tree of Life and other sacred geometries.
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Hexagon
We analyze how the hexagon embodies parameters of the Tree of Life and other sacred geometries.
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Octagon
We analyze how the octagon embodies parameters of the Tree of Life and other sacred geometries.
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Decagon
We analyze how the decagon embodies parameters of the Tree of Life and other sacred geometries.
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Dodecagon
We analyze how the dodecagon embodies parameters of the Tree of Life and other sacred geometries.
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Maps of reality
The inner Tree of Life encodes the Cosmic Tree of Life. The Platonic solids, the Sri Yantra and the disdyakis triacontahedron are shown to be equivalent maps of the spiritual cosmos.
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Cosmic Tree of Life
How the inner form of the Tree of Life encodes the Cosmic Tree of Life when transformed by the tetractys.
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Platonic solids
The five Platonic solids are shown to be equivalent to the Cosmic Tree of Life as a map of the spiritual cosmos.
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Sri Yantra
The Sri Yantra is shown to be equivament to the Cosmic Tree of Life.
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Disdyakis triacontahedron
The disdyakis triacontahedron is shown to be equivalent to the Cosmic Tree of Life and the Sri Yantra as a map of the spiritual cosmos.
www.smphillips.mysite.com/disdyakis-triacontahedron.html
Superstrings as sacred geometry
How the E8xE8 heterotic superstring is encoded in the sacred geometry of the outer & inner Trees of Life, the Sri Yantra, the disdyakis triacontahedron and in the hexagrams of the I Ching.
www.smphillips.mysite.com/superstrings-as-sacred-geometry.html
Tree of Life
The outer & inner Trees of Life, the Platonic solids encode the gauge symmetry groups E8 and E8xE8 of the heterotic superstring. They encode its structure according to the micro-psi description of the UPA.
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Platonic solids
Superstring dynamics & structure are encoded in the sacred geometry of the Platonic solids.
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I Ching
The I Ching table of 64 hexagrams embodies the structure of the superstring as the UPA described with micro-psi in Occult Chemistry.
www.smphillips.mysite.com/i-ching.html
Sri Yantra
The Sri Yantra encodes the superstring as the UPA described with micro-psi in Occult Chemistry.
www.smphillips.mysite.com/the-sri-yantras.html
Disdyakis triacontahedron
The disdyakis triacontahedron encodes the heterotic superstring according to the micro-psi description of the UPA published in Occult Chemistry.
www.smphillips.mysite.com/the-disdyakis-triacontahedron.html
Polychorons & Gosset polytope
The six polychorons and the 421 polytope are analysed in the context of superstring theory and the UPA.
www.smphillips.mysite.com/polychorons-&-gosset-polytope.html
Triacontagon
Holistic patterns in the 8 triacontagons of the E8 Coxeter plane projection of the 421 polytope.
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The seven musical scales
The Divine Names prescribe the holistic nature of the seven musical scales or Church modes.
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Plato's Lambda
Plato's Lambda, its generalisation and its equivalence to sacred geometries.
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Human skeleton
The Tree of Life basis of the human axial and appendicular skeletons is described.
www.smphillips.mysite.com/human-skeleton.html
Polygonal numbers
Polygonal numbers express parameters of holistic systems, including superstrings.
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Wonders of sacred geometry
Spectacular examples of properties of sacred geometries that are indicative of divine intelligence.
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Correspondence
Correspondences between the Tree of Life, Sri Yantra, I Ching table, Platonic solids and the disdyakis triacontahedron.
www.smphillips.mysite.com/correspondence.html
Superstrings
How sacred geometries embody the dynamics and structure of superstrings.
www.smphillips.mysite.com/superstrings.html
Miscellaneous
Miscellaneous properties of sacred geometries.
www.smphillips.mysite.com/miscellaneous.html
Wonders of correspondences
Details of correspondences between sacred geometries.
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Wonders of superstrings
How sacred geometries embody superstring structure and dynamics.
www.smphillips.mysite.com/wonders-of-superstrings.html
Miscellaneous wonders
Miscellanous wonders of sacred geometry.
www.smphillips.mysite.com/miscellaneous-wonders.html
Sacred art gallery
Gallery of sacred geometrical art for sale.
www.smphillips.mysite.com/sacred-art-gallery.html
My slideshows
Five sets of PowerPoint slideshows available for purchase and download.
www.smphillips.mysite.com/my-slideshows.html
Real God Particle
The real "God Particle" is the UPA paranormally described over a century ago.
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New book
Description of Stephen Phillips' new book.
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Article 1
A Tetrad Principle is formulated that reveals the Pythagorean nature of the parameters determining superstring and bosonic string theories.
www.smphillips.mysite.com/article-1.html
Article 2
The Theosophists' "physical plane" is related to 26-dimensional space-time and etheric matter is identified as the shadow matter predicted by E8xE8 heterotic superstring theory.
www.smphillips.mysite.com/article-2.html
Article 3
The true nature of the sacred geometry of the five Platonic solids is revealed.
www.smphillips.mysite.com/article-3.html
Article 4
The Godnames of the ten Sephiroth prescribe the inner Tree of Life, the first (6+6) enfolded polygons and the (7+7) enfolded polygons encoding CTOL.
www.smphillips.mysite.com/article-4.html
Article 5
The superstring described with micro-psi by Besant & Leadbeater is shown to be the microcosmic counterpart of the cosmic physical plane.
www.smphillips.mysite.com/article-5.html
Article 6
Superstring structure and dynamics are encoded in the 41-tree.
www.smphillips.mysite.com/article06.htm
Article 7
The first (5+5) enfolded polygons encode the fine-structure constant, superstring structural parameters and the human skeleton.
www.smphillips.mysite.com/article07.htm
Article 8
The first four polygons of the iner Tree of Life encode superstring structural parameters.
www.smphillips.mysite.com/article08.htm
Article 9
The square encodes structural and dynamical parameters of the superstring.
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Article 10
The dodecagon encodes structural and dynamical parameters of the superstring.
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Article 11
The meaning of Plato's Lambda and its equivalence to the Tree of Life.
www.smphillips.mysite.com/article11.htm
Article 12
The tetrahedral generalisation of Plato's Lambda Tetractys is described.
www.smphillips.mysite.com/article12.htm
Article 13
An analogy is explored between the ten whorls of the superstring and the musical potential of a 10-stringed harp.
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Article 14
The mathematical basis of the ancient Greek musical modes is analyzed and compared with the equal-tempered scale.
www.smphillips.mysite.com/article14.htm
Article 15
Connection is made between the micro-psi description of the UPA/superstring, the Fano plane, the Klein-quartic equation and the Lie group E8.
www.smphillips.mysite.com/article-15.html
Article 16
The intervals between notes in the seven musical scales is analysed and shown to be prescribed by the Godnames. Parallels are made between the UPA/superstring structural parameter 168, octonions, the Klein quartic and the seven musical scales.
www.smphillips.mysite.com/article-16.html
Article 17
The Titius-Bode law is generalised in order to include Neptune and Pluto. An octet pattern appears that is analogous to the octets of electrons in atoms, baryons & mesons, the notes of the octave and the eight unit octonions.
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Article 18
The I Ching table of 64 hexagrams encodes planetary distances, the oscillations of superstrings and their unified force.
www.smphillips.mysite.com/article-18.html
Article 19
Parallels are made between the eight trigrams of the I Ching table, the eight church modes and other 8-fold systems.
www.smphillips.mysite.com/article19.htm
Article 20
The algebraic, arithmetic and geometric meaning of the 64 hexagrams in I Ching is given.
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Article 21
Isomorphism is established between the I Ching table of 64 hexagrams, the 3x3x3 array of cubes and the Klein Configuration.
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Article 22
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Article 23
The polyhedral counterpart of the Tree of Life is shown to consist of a polyhedron with 144 faces and the disdyakis triacontahedron with 120 faces.
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Article 24
The faces of the 28 polyhedra contained in the disdyakis triacontahedron as the polyhedral Tree of Life contain 3360 hexagonal yods/ They denote the number of oscillatory waves in the ten whorls of the E8xE8 heterotic superstring described by Annie Besant and C.W. Leadbeater.
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Article 25
The 33 layers of vertices of the disdyakis triacontahedron correspond to the 33 tree levels of ten overlapping Trees of Life.
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Article 28
The inner Tree of Life and the disdyakis triacontahedron encode the roots of the superstring gauge symmetry group E8.
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Article 30
The triakis tetrahedron, the disdyakis triacontahedron and Plato's Lambda tetractys are shown to be equivalent.
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Article 31
The composition of intervals in the eight church modes is related to the polyhedral Tree of Life.
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Article 32
The bone and acupoint compositions of the human body are derived form its Tree of Life representation.
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Article33
The human axial skeleton is shown to be the trunk of the Tree of Life.
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Article 34
The bones of the human skeleton, the superstring symmetry groups E8 & E8xE8 and superstring structural parameters are encoded in the seven layers of vertices of the disdyakis triacontahedon.
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Article 35
The Sri Yantra is equivalent to the Tree of Life. It embodies the superstring structural parameter 336.
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Article 36
The 15 polygons defined by the vertices of the disdyakis triacontahedron encode the dimension 248 of the superstring symmetry group E8 and the 840 spirillae in each half of a whorl of the UPA.
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Article 37
The Tree of Life pattern of seven octaves of the seven musical scales and their counterpart in the disdaykis triacontahedron.
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Article 38
The disdyakis triacontahedron as the polyhedral representation of the intervals between the notes in the seven musical scales.
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Article 39
The 64x3 pattern of intervals between notes in the seven musical scales is compared with the 64 trigrams in the I Ching table and the 64 triplets of yods in each half of the Sri Yantra.
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Article 40 (Part 1)
The polyhedral Tree of Life is encoded in its polygonal counterpart.
www.smphillips.mysite.com/article-40-(part-1).html
Article 40 (Part 2)
The sacred geometries of the Tree of Life, the Sri Yantra, the I Ching table and the disdyakis triacontahedron are shown to be equivalent.
www.smphillips.mysite.com/article40-(part-2).htm
Article 40 (Part 3)
The sacred geometries of the Tree of Life, the Sri Yantra, the I Ching table and the disdyakis triacontahedron are shown to be equivalent.
www.smphillips.mysite.com/article-40-(part-3).html
Article 40 (Part 4)
The sacred geometries of the Tree of Life, the Sri Yantra, the I Ching table and the disdyakis triacontahedron are shown to be equivalent.
www.smphillips.mysite.com/article-40-(part-4).html
Article 41
When the polygons of the inner Tree of Life are regarded as the bases of pyramids, the latter encode the superstring structural parameters 336 and 16800. They also encode the bones of the human body.
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Article 42
The eight Church musical modes are compared with the human skeleton as holistic systems.
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Article 43
The 168 automorphisms of the Klein quartic tessellated on the 3-torus are shown to have a Tree of Life nature.
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Article 44
The disdyakis triacontahedron encodes CTOL and the superstring structural parameter 1680.
www.smphillips.mysite.com/article44.htm
Article 45
The 1680 1st-order spirillae of a whorl of the heterotic superstring as 1680 harmonics of the Pythagorean musical scale.
www.smphillips.mysite.com/article45.htm
Article 46
Sacred geometries encode the 64 codons of mRNA and the 64 anticodons of tRNA.
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Article 47 (Part 1)
The polyhedral Tree of Life is encoded in its polygonal counterpart.
www.smphillips.mysite.com/article-47-(part-1).html
Article 47 (Part 2)
Sacred geometries encode structural/dynamical properties of the E8xE8 heterotic superstring and the codon pattern of DNA.
www.smphillips.mysite.com/article-47-(part-2).html
Article 48
The two sets of the first four enfolded polygons encode the 248 roots of the superstring gauge symmetry group E8.
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Article 49
Different sacred geometries are equivalent representations of all levels of reality.
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Article 50 (Part 1)
How the Golden Ratio, Fibonacci & Lucas numbers appear in sacred geometries.
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Article 50 (Part 2)
The Golden Ratio, Lucas and Fibonacci numbers in sacred geometries.
www.smphillips.mysite.com/article50-(part-2).htm
Article 51
The connection between Fibonacci numbers and the Pythagorean musical scale is analogous to how they appear in the Platonic solids and other sacred geometries.
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Article 52
The Godnames EHYEH, YAH & YAHWEH determine the root structure and dimension of E8.
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Article 53
Four sacred geometries - the inner Tree of Life, the first three Platonic solids, the Sri Yantra & the disdyakis triacontahedron - are shown to have a 10x24 division that manifests as the UPA/subquark state of the E8xE8 heterotic superstring.
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Article 54
The combined outer and inner Trees of Life and their properties.
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Article 55
The five Platonic solids embody the five exceptional groups G2, F4, E6, E7 & E8.
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Article 56
The tetractys generates the universal pattern of sacred geometries.
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Article 57
The first 4 polygons embody the dimension 496 of E8xE8 and SO(32).
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Article 58
A correspondence between the first 10 polygons and the 10 Sephiroth is established.
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Article 59
The geometrical and yod composition of the three polygons absent from the inner Tree of Life are shown to embody the root structure of E8 and E8xE8 describing one of the two types of heterotic superstrings.
www.smphillips.mysite.com/article-59.html
Article 60
The seven Type C polygons of the inner Tree of Life embody structural parameters of the UPA/superstring, the dimension of E8 and E8xE8, and the number 137 determining the fine-structure constant.
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Article 61
Tree of Life basis of an astrological era.
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Article 62
The two 600-cells in the 421 polytope embody the paranormally obtained superstring structural parameters 1680 and 16800.
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Article 63
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 2
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 3
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 4
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 5
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 6
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 7
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img6.html
Slide 8
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img7.html
Slide 9
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 10
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img9.html
Slide 11
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img10.html
Slide 12
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img11.html
Slide 13
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img12.html
Slide 14
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img13.html
Slide 15
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img14.html
Slide 16
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img15.html
Slide 17
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img16.html
Slide 18
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img17.html
Slide 19
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img18.html
Slide 20
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
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Slide 21
Sacred geometries embody the number of edges of the 421 polytope whose 240 vertices define the 240 root vectors of the exceptional Lie group E8.
www.smphillips.mysite.com/img20.html
Article 64
How the 168:168 & 84:84 divisions in sacred geometries relate to superstrings.
www.smphillips.mysite.com/article-64.html
Article 65
Formulae for the geometrical and yod populations id the outer and inner forms of N Trees of Life or N-tree.
www.smphillips.mysite.com/article-65.html
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