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General: Saturn-Moon matrix symbolized in the crescent 5 pointed star of Islam
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 Reply Message 1 of 55 on the subject
 From: BARILOCHENSE6999  (Original message) Sent: 10/08/2015 03:44
 You will find some excellent "keys to the Vatican", the inner brain here: http://deephighlands.wordpress.com/     The good info is close to the bottom of the page. You will find the 3 fold solution to the 5-6 ( Jupiter - Saturn ) connection you spke of here: We need to include the Saturn-Moon matrix symbolized in the crescent  5 pointed star of Islam: http://projectavalon.net/forum4/showthread.php?51614-Saturn-Moon-ma... I tend to include Sirius whenever I see pentagrams and 5 pointed stars. The brain has 5 magnetic fields. Then there is also the dodecahedron, 12- pentagram construct from here: http://www.reversespins.com/Stargate3.html John and Dan Winter got together in Calgary back in 2009: http://www.youtube.com/watch?v=LHJUHSCNHfg John does it all in Excel.   Take care, Darren http://www.resistance2010.com/m/blogpost?id=3228704%3ABlogPost%3A353550&maxDate=2012-11-15T18%3A10%3A22.321Z

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 Reply Message 41 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 07/07/2017 15:29

### Marko Rodin and God’s Particle

Marko Rodin has indeed discovered natures secret about 3,6, and 9.
“We have to cast out all 9’s.” What does that mean? It means that any number that is above the value 9 or one place value is going to be added together to get a single digit.
So this means if we have a number 26, we add 2+6 to get 8, which is its “archetype”. If we do this for all numbers while doubling and halving, we get a pattern.
This. The secret to the Universe is DOUBLING and HALVING.

Let’s double the number 1 and found out what pattern we get.

1  1
2  2
4  4
8  8
16  7 (1+6=7)
32  5 (3+2=5)

64  1 (6+4=10, 1+0=1)
128  2 (1+2+8=11, 1+1=2)
256  4 (2+5+6=13, 1+3=4)
512  8 (5+1+2=8)
1024  7 (1+0+2+4=7)
2048  5 (2+0=4+8=14, 1+4=5)

Actually, every 6 sets repeats into infinity in this way.
You can also do the same by halving, or dividing the 1 into many parts.
Anyway.. there is more, like how 3, 6, and 9 are never present amongst other numbers in the double scheme.

3
6
12 (1+2=3)
24 (2+4=6)
48 (4+8=12, 1+2=3)
96 (9+6=15, 1+5=6)

3 and 6’s are constantly oscillating back and forth between each other in the doubling and halving scheme.

Now let’s double 9.
9
18 (1+8=9)
27 (2+7=9)
36 (3+6=9)
45 (4+5=9)
54 etc. starts over backwards here.
63
72
81
90
99

So 9 is the unchanging, unwavering number that never really loses its true identity, even though it is undergoing a constant state changing.
Watch Marko Rodins videos on YouTube and just try to understand what he’s saying. Basically he’s found the math to the real “God Particle” or particle of Spirit, known as Brahman in the Vedas, and he has shown how it can be observed, but not with physical instruments.

http://blog.world-mysteries.com/science/the-language-of-god/

 Reply Message 42 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 22/08/2017 20:56

22 de julio es el DIA DE MARIA MAGDALENA
NOVUS ORDO STRUCTORUM

 Reply Hide message Delete message Message 12 of 12 on the subject
 From: BARILOCHENSE6999 Sent: 22/08/2017 17:35
EL PARALELO DE "LA MECA" (KAABA) CRUZA CUBA-EL MISMO ESTA FUERTEMENTE RELACIONADO CON EL NUMERO DE ORO PHI=1.618

 Respuesta Ocultar Mensaje Eliminar Mensaje Mensaje 80 de 81 en el tema

 Respuesta Ocultar Mensaje Eliminar Mensaje Mensaje 81 de 81 en el tema

### 1618 GOLDEN RATIO of the WORLD ***MECCA*** - YouTube

www.youtube.com/watch?v=f0f-LugkXts14 May 2009 - 10 min - Subido por kewserx
Number of Golden Ratio, mystery of Kaaba, Miracle of Islam and Koran, it is the high time for Divine Secrets ...

• ### Golden Ratio Point Of The World * Mecca - YouTube

www.youtube.com/watch?v=hD2323zkQUM20 Abr 2009 - 10 min - Subido por HighFlyingDutchman
Presenting the clear scientific facts that the 'holy' city of Islam is in the Golden Ratio point of the world. It ...

•  Reply Message 26 of 34 on the subject
 From: BARILOCHENSE6999 Sent: 12/08/2017 22:11
¿QUIERE VIAJAR EN EL TIEMPO? CLARAMENTE HAY UN "AGUJERO DE GUSANO".
NO HAY PEOR CIEGO QUE EL QUE NO QUIERA VER.

¿USTED QUIERE SABER LA VERDAD DETRAS DE CUBA O ES TAN IGNORANTE QUE SE COME EL "RELATO"?

 Reply Hide message Delete message Message 85 of 98 on the subject
 From: BARILOCHENSE6999 Sent: 21/11/2016 11:53

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 From: BARILOCHENSE6999 Sent: 26/11/2016 21:18
 Sent: 26/11/2016 21:17

 Reply Message 43 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 18/09/2017 20:06

 Reply Message 44 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 10/04/2018 19:57
 . Juan 16:21 La mujer cuando da a luz, tiene dolor, porque ha llegado su HORA; pero después que ha dado a luz un niño, ya no se acuerda de la angustia, por el gozo de que haya nacido un hombre en el mundo.

 Reply Message 45 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 10/04/2018 20:17

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 From: BARILOCHENSE6999 Sent: 10/04/2018 17:14

 Reply Message 46 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 30/11/2018 18:17

 Respuesta Eliminar Mensaje Mensaje 25 de 26 en el tema

 Respuesta Eliminar Mensaje Mensaje 26 de 26 en el tema
22/7=3.14=PI

12 PUNTOS EN SU CIRCUNFERENCIA=RELOJ=SANTA CENA

LONGITUD CIRCUNFERENCIA=PIxDIAMETRO

 Respuesta Mensaje 73 de 74 en el tema

 Respuesta Mensaje 74 de 74 en el tema

 Reply Message 47 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 01/12/2018 16:43

# Trip to UK & Ireland

I recently returned from a three-week exploration of England, Scotland and Ireland. It was gratifying to finally see some of the locations in my films in person and explore many others I haven’t yet covered in my work. My wife and son made the trip with me, and we three are still digesting the experience […]

# The Metre

The metre (spelled meter in United States) was introduced by the First French Republic in 1799. It was originally defined to be one ten millionth of the distance (10,000 km) between the North Pole and the Equator through Paris. Since then the metre has been defined variously as the length of certain prototype objects, the […]

# Location, Location, Location

It has long been known that the three most important factors determining real estate value are: location, location, location. I notice that this aphorism is true not only for residential and commercial properties, but also somewhat unexpectedly for sites having great symbolic and/or spiritual significance. My research reveals a previously unknown system of non-monetary valuation […]

# Hidden Universal Symmetry

For millennia philosophers, mathematicians, architects, artists and mystics have been interested in the divine proportion, but its understanding has been highly fragmented. My recent work attempts to show how the divine proportion is a hidden universal symmetry worthy of comprehensive study and understanding. Euclid’s book Elements (300 BCE) contains the first known written definition of […]

# Macrocosmic Harmony

The best temples serve as bridges between human scale and the macrocosm. When Beverly Spicer sent me the following image, something clicked and I understood the human body, the Sphinx and the Pyramids in a new way. I’m not sure which book this black-and-white geometric analysis of Pharaoh Rameses II was scanned from—it appears to […]

http://www.secretsinplainsight.com/category/architecture/

 Reply Message 48 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 03/12/2018 04:54

 Reply Message 49 of 55 on the subject
 From: BARILOCHENSE6999 Sent: 20/04/2019 14:28

LLAVE DE ORO Y DE PLATA AL IGUAL QUE LA MANZANA

# Incendio Notre Dame: Última hora de la catedral de París (15 DE ABRIL)

Incendio Notre Dame (París), en directo (Bertrand Guay / AFP)

### PHI A NOTRE-DAME

A la catredal de Notre Dame hi observem més rectanlges auris:

Creat per Mario Pastor

# Math in Architecture and the Golden Section

The Golden Section (aka Golden Mean, and Golden Ratio) phys.org

We use math in architecture on a daily basis to solve problems. We use it to achieve both functional and aesthetic advantages. By applying math to our architectural designs through the use of the Golden Section and other mathematical principles, we can achieve harmony and balance. As you will see from some of the examples below, the application of mathematical principles can result in beautiful and long-lasting architecture which has passed the test of time.

### Using Math in Architecture for Function and Form

We use math in architecture every day at our office. For example, we use math to calculate the area of a building site or office space. Math helps us to determine the volume of gravel or soil that is needed to fill a hole. We rely on math when designing safe building structures and bridges by calculating loads and spans. Math also helps us to determine the best material to use for a structure, such as wood, concrete, or steel.

### “Without mathematics there is no art.” – Luca Pacioli, De divina proportione, 1509

Architects also use math when making aesthetic decisions. For instance, we use numbers to achieve attractive proportion and harmony. This may seem counter-intuitive, but architects routinely apply a combination of math, science, and art to create attractive and functional structures. One example of this is when we use math to achieve harmony and proportion by applying a well-known principle called the Golden Section

### Math and Proportion – The Golden Section

Perfect proportions of the human body – The Vitruvian Man – by Leonardo da Vinci.

We tend to think of beauty as purely subjective, but that is not necessarily the case. There is a relationship between math and beauty. By applying math to our architectural designs through the use of the Golden Section and other mathematical principles, we can achieve harmony and balance.

The Golden Section is one example of a mathematical principle that is believed to result in pleasing proportions. It was mentioned in the works of the Greek mathematician Euclid, the father of geometry. Since the 4th century, artists and architects have applied the Golden Section to their work.

The Golden Section is a rectangular form that, when cut in half or doubled, results in the same proportion as the original form. The proportions are 1: the square root of 2 (1.414) It is one of many mathematical principles that architects use to bring beautiful proportion to their designs.

Examples of the Golden Section are found extensively in nature, including the human body. The influential author Vitruvius asserted that the best designs are based on the perfect proportions of the human body.

Over the years many well-known artists and architects, such as Leonardo da Vinci and Michelangelo, used the Golden Section to define the dimensions and proportions in their works. For example, you can see the Golden Section demonstrated in DaVinci’s painting Mona Lisa and his drawing Vitruvian Man.

### Famous Buildings Influenced by Mathematical Principles

Here are some examples of famous buildings universally recognized for their beauty. We believe their architects used math and the principals of the Golden Section in their design:

Parthenon

The classical Doric columned Parthenon was built on the Acropolis between 447 and 432 BC. It was designed by the architects Iktinos and Kallikrates. The temple had two rooms to shelter a gold and ivory statue of the goddess Athena and her treasure. Visitors to the Parthenon viewed the statue and temple from the outside. The refined exterior is recognized for its proportional harmony which has influenced generations of designers. The pediment and frieze were decorated with sculpted scenes of Athena, the Gods, and heroes.

Parthenon Golden Section

Notre Dame Cathedral in Paris

Built on the Ile de la Cite, Notre Dame was built on the site of two earlier churches. The foundation stone was laid by Pope Alexander III in 1163. The stone building demonstrates various styles of architecture, due to the fact that construction occurred for over 300 years. It is predominantly French Gothic, but also has elements of Renaissance and Naturalism. The cathedral interior is 427 feet x 157 feet in plan. The two Gothic towers on the west façade are 223 feet high. They were intended to be crowned by spires, but the spires were never built. The cathedral is especially loved for its three stained glass rose windows and daring flying buttresses. During the Revolution, the building was extensively damaged and was saved from demolition by the emperor Napoleon.

Notre Dame Cathedral in Paris

Taj Mahal

Built in Agra between 1631 and 1648, the Taj Mahal is a white marble mausoleum designed by Ustad-Ahmad Lahori. This jewel of Indian architecture was built by Emperor Shah Jahan in memory of his favorite wife. Additional buildings and elements were completed in 1653. The square tomb is raised and is dramatically located at the end of a formal garden. On the interior, the tomb chamber is octagonal and is surrounded by hallways and four corner rooms. Building materials are brick and lime veneered with marble and sandstone.

As you can see from the above examples, the application of mathematical principles can result in some pretty amazing architecture. The architects’ work reflects eye-catching harmony and balance. Although these buildings are all quite old, their designs have pleasing proportions which have truly passed the test of time.

https://bleckarchitects.com/math-in-architecture/

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 500 × 500

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