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General: ¿PORQUE LA MISA CATOLICA ES UNICA Y EXCLUSIVA A NIVEL MUNDIAL? (VESICA PISCIS)
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De: BARILOCHENSE6999  (Mensaje original) Enviado: 20/03/2019 14:00
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Sabemos que Vesica Piscis esta en funcion al a los 153 peces de Juan 21:11.


Aqui tenemos a Pi - la circunferencia del toro y la vesica piscis 256/153 equivalente a la raiz cuadrada de 3 
En el hipercubo las coordinadas binarias de Piscis son decimal 3 y binario 11
153 los pescados de Jesus en la biblia
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I have a lot to say about pythagorean triangles in my videos. In particular I have found many references to 5:12:13 triangles and 5:12 rectangles (that’s 2 of the triangles put together) in Stonehenge and the whole region surrounding it, in Washington DC, Paris, and Jerusalem. Someone who listened to my first Red Ice interview contacted me with a major discovery he made in regards to the 5:12 proportion. Brace yourself…

SH512

A rectangle measuring 5 feet by 12 feet has an area of 8640 square inches. This is something I can work with. I’m never going to be able to build an 864 foot solar Osiris talisman on a geodetic hot spot, but I think I can manage making a few raised garden beds measuring exactly 5 by 12 feet. And where I live in Canada (above 50 degrees North) can really use more resonance with the Sun.

If you saw SIPS Volume 1, you might recall that Stonehenge has its station stones which describe a 5×12 rectangle.

from SIPS Volume 1

from SIPS Volume 1

Stonehenge is also 33.33° from Solomon’s Temple.

Stonehenge Solomon's Temple

Las piedras de                                               estaciones de Stonehenge                                               forman un rectángulo con                                               la proporción de 5:12  Mapa con                                                     Stonehenge y la isla                                                     Caldey mostrando la                                                     distancia                                                     proporcional de                                                     12,369 - eso es el                                                     número de lunas                                                     llenas por año
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Sapientia Aedificavit Sibi Domum. Es decir, "la sabiduría ha edificado aquí su casa". Resulta curioso que la misma frase aparece en el Evangelio de María Magdalena, un texto apócrifo. Se dice que en el interior de esta iglesia y de otras muchas de Venecia está escondido el tesoro de los templarios. Pero no hay ninguna prueba de ello. Para terminar ya con esta entrada me gustaría que nos acercásemos un momento a uno de los edificios más emblemáticos de Venecia: el Palacio Ducal.
 
 
 
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De: BARILOCHENSE6999 Enviado: 11/04/2019 01:25
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Sapientia Aedificavit Sibi Domum. Es decir, "la sabiduría ha edificado aquí su casa". Resulta curioso que la misma frase aparece en el Evangelio de María Magdalena, un texto apócrifo. Se dice que en el interior de esta iglesia y de otras muchas de Venecia está escondido el tesoro de los templarios. Pero no hay ninguna prueba de ello. Para terminar ya con esta entrada me gustaría que nos acercásemos un momento a uno de los edificios más emblemáticos de Venecia: el Palacio Ducal.
 
 
 
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GEMATRIA EN INGLES DE SEED=33
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SARA (CE-SAREA DE FILIPO)=PARALELO 33
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milky way in Simple Gematria Equals: 119 ( m 13 i9 l 12 k 11 y 25 0 w 23 a1 y 25 )
queen mary in Simple Gematria Equals: 119 ( q 17 u 21 e5 e5 n 14 0 m 13 a1 r 18 y 25  
hebrew calendar in Simple Gematria Equals: 119 ( h8 e5 b2 r 18 e5 w 23 0 c3 a1 l 12 e5 n 14 d4 a1 r 18
mary magdalene in Simple Gematria Equals: 119 ( m 13 a1 r 18 y 25 0 m 13 a1 g7 d4 a1 l 12 e5 n 14 e5  
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Respuesta  Mensaje 30 de 52 en el tema 
De: BARILOCHENSE6999 Enviado: 18/04/2019 17:03
369





http://www.greatdreams.com/numbers/72/72.htm

http://cube-it.webs.com/

SOURCE:
http://science2art.tumblr.com/post/18398397422/72



48 + 1 = 7 x 7

Learning from Liu Hui

http://www.ams.org/notices/200207/comm-cullen.pdf



http://en.wikipedia.org/wiki/Pythago...heorem#History

Venus=175 : 

iSQUARE = - 1

http://en.wikipedia.org/wiki/History...umbers#History

i = YOU

Time you learned love and lust, they both have 4 letters

666 : 

Music of the Spheres: 

Was Pythagoras Chinese ?
http://math.temple.edu/~zit/Zitarell...ag_Chinese.pdf


R.I.P.
Romke Jan Bernhard Sloot ( 27-08-1945, 11-07-1999 )
was a Dutch electronics technician, who claimed to have developed a
revolutionary data compression technique, 
the Sloot Digital Coding System


http://science2art.tumblr.com/post/18723310752/phi-369
http://science2art.tumblr.com/post/18398397422/72

Linking the Fibonacci sequence and 
the Chromatic scale with Rodin Math

http://www.davidicke.com/forum/showp...98&postcount=7

Knights Templars & PRIME numbers
http://www.davidicke.com/forum/showthread.php?t=217191

Last edited by science2art; 23-07-2012 at 01:21 PM.
 
 
 
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Respuesta  Mensaje 31 de 52 en el tema 
De: BARILOCHENSE6999 Enviado: 19/04/2019 15:27
 
 
Previsualización de la tapa del diario Clarin
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LLAVE DE ORO Y DE PLATA AL IGUAL QUE LA MANZANA
 

 


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

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Incendio Notre Dame: Última hora de la catedral de ParísIncendio Notre Dame (París), en directo (Bertrand Guay / AFP)
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PHI A NOTRE-DAME

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

Creat per Mario Pastor
 

The DaVinci Code, Notre Dame Cathedral from DaVinci Code

original movie prop

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Math in Architecture and the Golden Section

 
math in architecture

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

Math in Architecture

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.

Math in Architecture

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.

Math in Architecture.

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.

Math in Architecture and the Golden Section

Taj Mahal designed by Ustad-Ahmad Lahori

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/


Respuesta  Mensaje 32 de 52 en el tema 
De: BARILOCHENSE6999 Enviado: 04/05/2019 15:44
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Respuesta  Mensaje 33 de 52 en el tema 
De: BARILOCHENSE6999 Enviado: 04/05/2019 17:26

Lockheed Martin Patents Nuclear Fusion-Powered Fighter Jet | Zero Hedge

(Zero Hedge) Lockheed Martin has secretly been developing a game-changing compact nuclear fusion reactor that could potentially fit into a fighter jet. The Maryland-based defense contractor recently obtained a patent associated with its design for a fully compact fusion reactor, after filing for the patent in 2014.

Related How The Military Controls America

 

Source – Zero Hedge

by Staff Writer, March 31st, 2018

If the latest patent from the defense company serves as a benchmark, nuclear fusion technology could revolutionize the aeronautic industry and eventually begin the quantum leap from fossil fuels to compact fusion reactors for the industry.

According to CBS Washington, the prototype system would be the size of a normal shipping container but capable of producing enough energy to power 80,000 residential homes or a Nimitz-class aircraft carrier, sometime in the next year or so.

The patent, tilted “Encapsulating Magnetic Fields for Plasma Confinement,” is dated Feb. 15, 2018. CBS indicates that Skunk Works, also known as Lockheed Martin’s Advanced Development Programs or its advanced R&D group, has reportedly been developing the compact fusion reactor since about 2014, with latest reports suggesting the technology could be ready for production by 2019.

Nuclear fusion is the same process of what happens to hydrogen gas in the core of the Sun. Hydrogen gas gets squeezed into four hydrogen nuclei combine to form one helium atom; thus, nuclear fusion is created.

Lockheed said, “Our concept will mimic that process within a compact magnetic container and release energy in a controlled fashion to produce power we can use.” Here is how Lockheed describes nuclear fusion power:

Lockheed indicates that the compact size of the reactor has induced a technology revolution, which instead of taking “five years to design and build a concept, it takes only a few months.”

“The compact size is the reason that we believe we will be able to create fusion technology quickly. The smaller the size of the device, the easier it is to build up momentum and develop it faster. Instead of taking five years to design and build a concept, it takes only a few months. If we undergo a few of these testing and refinement cycles, we will be able to develop a prototype within the same five year timespan.”

As the technology advances, the size of the fusion reactor shrinks. Lockheed has dropped the bombshell and indicated the reactor could be ready to mount on “a truck, aircraft, ship, train, spacecraft, or submarine.” Across the board, Lockheed could revolutionize the transportation industry in the very near term.

“Some embodiments may provide a fusion reactor that is compact enough to be mounted on or in a vehicle such as a truck, aircraft, ship, train, spacecraft, or submarine. Some embodiments may provide a fusion reactor that may be utilized in desalination plants or electrical power plants.”

Patent FIG. 1 illustrates example applications for fusion reactors, according to certain embodiments.

“As one example, one or more embodiments of fusion reactor 110 are utilized by aircraft 101 to supply heat to one or more engines (e.g., turbines) of aircraft 101. A specific example of utilizing one or more fusion reactors 110 in an aircraft is discussed in more detail below in reference to FIG. 2. In another example, one or more embodiments of fusion reactor 110 are utilized by ship 102 to supply electricity and propulsion power. While an aircraft carrier is illustrated for ship 102 in FIG. 1, any type of ship (e.g., a cargo ship, a cruise ship, etc.) may utilize one or more embodiments of fusion reactor 110. As another example, one or more embodiments of fusion reactor 110 may be mounted to a flat-bed truck 103 in order to provide decentralized power or for supplying power to remote areas in need of electricity. As another example, one or more embodiments of fusion reactor 110 may be utilized by an electrical power plant 104 in order to provide electricity to a power grid. While specific applications for fusion reactor 110 are illustrated in FIG. 1, the disclosure is not limited to the illustrated applications. For example, fusion reactor 110 may be utilized in other applications such as trains, desalination plants, spacecraft, submarines, and the like.”

Patent FIG. 2 illustrates an example aircraft system utilizing fusion reactors, according to certain embodiments.

“In general, fusion reactor 110 is a device that generates power by confining and controlling plasma that is used in a nuclear fusion process. Fusion reactor 110 generates a large amount of heat from the nuclear fusion process that may be converted into various forms of power. For example, the heat generated by fusion reactor 110 may be utilized to produce steam for driving a turbine and an electrical generator, thereby producing electricity. As another example, as discussed further below in reference to FIG. 2, the heat generated by fusion reactor 110 may be utilized directly by a turbine of a turbofan or fanjet engine of an aircraft instead of a combustor.”

Patent FIGS. 3A illustrates an example fusion reactor, according to certain embodiments.

Patent FIGS. 3B illustrates an example fusion reactor, according to certain embodiments.

 Lockheed’s potential applications of compact fusion:

The Silicon Republic believes Skunk Works’ Compact Fusion Project could usher in an era of nuclear drones patrolling the skies:

“Patents for the reactor were filed in 2014 by the company’s advanced research division, Skunk Works, with the aim of having its compact fusion reactor (CFR) ready by 2019. While it has obviously missed that deadline, the delay does not mean the technology is to be left behind. As Dr. Thomas McGuire, head of Skunk Works’ Compact Fusion Project, detailed in a 2014 report, the smaller reactor is more feasible than a large-scale one. If the system functions as expected, the CFR could take 11kg of fuel in the form of the hydrogen isotopes deuterium and tritium, and run the reactor for an entire year without needing to stop.

Throughout that time, it would be consistently pumping out 100MW of power, enough to power up to 80,000 homes. When discussing how it could impact aircraft design, Lockheed Martin said that this amount of power would allow it to fly indefinitely and would only be hampered by the crew’s need for food and water on the ground. The likelier option is that this would translate extremely well into drone aircraft used to patrol the skies for years at a time, which, admittedly, sounds a little terrifying.”

While a nuclear fusion powered fighter jet would certainly change the board game of geopolitics, factor in the hypersonics technologies and high energy weapons, and the high-tech weapons for the next global conflict have already been identified.

 

To be sure, the global superpowers realize that the first to possess these technologies will not just revolutionize their civilian and military programs, but will also dictate the future path for civilizations on planet earth, as such the new arms race is on, just not in the same weapons that defined the first cold war.


Stillness in the Storm Editor’s note: Did you find a spelling error or grammar mistake?  Send an email to corrections@stillnessinthestorm.comwith the error and suggested correction, along with the headline and url. Do you think this article needs an update? Or do you just have some feedback? Send us an email at sitsshow@gmail.com. Thank you for reading.

Source:

https://www.zerohedge.com/news/2018-03-30/lockheed-martin-patents-nuclear-fusion-powered-fighter-jet

https://stillnessinthestorm.com/2018/04/lockheed-martin-patents-nuclear-fusion-powered-fighter-jet-zero-hedge/

Respuesta  Mensaje 34 de 52 en el tema 
De: BARILOCHENSE6999 Enviado: 06/05/2019 17:48

Taking on the Giants: Skunk Works Aims for Commercial, Compact Fusion Reactor Within Ten Years

Ever since major industrialized nations learned how to fuse atoms in megabombs able to blast scores of square miles to smithereens, the quest has been on to harness the vast potential energy store that is nuclear fusion as a viable means to peacefully fuel modern civilization.

Unlike fission, which involves the splitting of atomic nuclei, fusion both produces more energy while generating no radio-active waste. The primary fuel — H2 — is abundant and non-radioactive. Because conventional fusion reactors involve containment fields that force these non-radioactive elements together, they do not operate under dangerous conditions similar to nuclear fission reactors. The fusion reaction bi-products are also common, non-polluting elements together with a heat source used for mechanical work.

Fusion reactors aren’t vulnerable to the same kinds of terrible melt-downs seen at Fukushima and Chernobyl. And the energy density of the fusion reaction itself is extraordinary, producing a potential for very high energy returns on energy invested.

A world where an energy source of this quality is compact, economic, and widely available, is one within reach of a progression of advances and wonders. A human civilization with a growing capability to solve emerging problems involving a number of difficult limits.

The Quest for Viable Hot Fusion

As such, viable fusion is seen as a kind of holy grail energy source. And ever since the 1950s, engineers have been pursuing technical and cost effective means to harness it. For part of the problem in harnessing fusion was the highly energetic nature of the energy source itself.

To contain massive, hot, fusion reactions, magnetic plasma bottles were needed. Doughnut-shaped containment fields engineered to trap substances as hot as a sun. And the magnetic bottles themselves were energy-hungry beasts requiring major investment in infrastructure and materials.

The reactor facilities necessary to produce such high-energy bottles were massive, involving megawatts of energy for the magnetic fields that would contain the super-hot fusion reaction and its resultant plasmas. Such tokamak fields were very expensive to erect and maintain.

Tokamak_fields_lg

(Tokamak fusion reaction containment field. Image source: Commons.)

In most cases, more energy was needed to keep the fusion reaction in check than could be gleaned from the reaction overall. But slow and steady advances continued — primarily aimed at building a large enough containment vessel to glean a useful return on the energy dumped into the tokamak fields.

As the massive tokamak projects entered the 21st Century, a coalition of countries including the EU, the US, Russia and China, pooled efforts to construct the 23,000 ton ITER project. At a cost of $50 billion dollars US and growing, the project aims to provide a 10 to 1 energy return on energy invested by converting 50 megawatts of containment field energy into 500 megawatts of commercial energy. Such provision of a viable fusion energy store would, indeed, be a breakthrough and likely result in spin-off reactor technology if such offerings could be reproduced at relatively low-cost.

ITER plans to begin testing in 2020 and hopes to be online and producing energy by 2027.

It is worth noting, though, that the massive size and cost of projects like ITER serve to limit the likelihood that fusion energy will become commercially viable on any time horizon sooner than 20 years even if the energy production efforts are successful (although, one can well compare the 50 billion over decades cost of ITER with the $650 billion or greater annual cost of current ongoing oil and gas exploration).

Unexplained Experimental Results

For much of the mainstream scientific community, the large fusion plasma containment field projects like ITER serve as the only hope for a viable fusion energy source. But ever since the late 1980s, an underground science has developed around what was, at first, called cold fusion.

This fringe field emerged onto the world stage as an off-spring of work conducted and announced by Pons and Fleischmann in 1989. The two scientists provided reports observing a positive energy fusion reaction of deuterium occurring at low temperature in the presence of a relatively low-energy electrical current and a catalyst (palladium).

It was also a continuation of previous work by Graham, Paneth, Peters, and Tandberg during the 19th and early 20th Centuries. Most notably, Tandberg stated in 1927 that he had fused hydrogen into helium in an electrolytic cell with palladium electrodes. Ironically, this work was mostly unknown to Pons and Fleischmann at the time of their announcement.

Pons and Fleischmann’s paper rocked the scientific community — triggering an article about the researchers in Time Magazine and Congressional inquiries together with speculation that a dawn of a new energy era was at hand. Much of this speculation was fueled by the researchers, who provided extraordinary claims about the usefulness of the energy source they discovered.

But the Pons and Fleischmann experiment was a sketchy subject for observational proofs. For like Tandberg, who had a patent based on his experiment rejected on the notion that ‘he could not explain the physical process,’ Pons and Fleischmann found resistance due to the fact that their observations would upend most of what was currently understood about atomic physics — chiefly that it should take a massive amount of energy to fuse atomic particles.

Even more bedeviling, the experiment was difficult to reproduce. Sometimes, the positive heat energy reaction that Pons and Fleischmann reported was observed and sometimes it was not. This inconsistency continued to fuel doubt in the validity of this line of research.

Even worse, there was very little in the way of sound scientific theory that could explain what was actually going on inside the reaction chamber to produce the observed heat. Conventional atomic science couldn’t produce a mechanism for such a reaction. And so the observations hinged on convincing the gate keepers of conventional science that a loop-hole existed in atomic fusion theory. A rather high bar to cross.

Since no current accepted and peer-reviewed theory could explain the cold fusion reaction to make it viable, this lead to researchers in the field fighting off the label of ‘scientific pariah.’

Nonetheless, work continued on so-called cold fusion (now often labeled low energy nuclear reactions or LENR) at a number of government and commercial laboratories around the world. Japan, Italy, France, Israel, and the US all continued to conduct validation and observation experiments related to Pons and Fleischmann’s efforts. And a variety of commercial efforts also emerged — with some producing rather extraordinary but, as yet, still disputed claims.

Last year, a team of scientists produced an observational study of a controversial generator called the E-Cat which claimed to use LENR technology to produce excess energy. The study validated the claim, but, as with most LENR work, has received broad criticism.  A second potential paper, produced by the same authors, was listed on a blog earlier this month. The draft has yet to appear in any of the major scientific libraries.

Lockheed Martin’s Compact Fusion

LOCKHEED-FUSION_300

(Lockheed Martin working on experimental fusion design. Image source: Lockheed Martin.)

Until recently, commercial agencies working to develop fusion as a viable energy technology have split into two camps — the large corporations which have chiefly funded experimental efforts, and the small corporations like Rossi Energy which have been promising, but failing to deliver, viable LENR generators for the past few years.

Now, as of last week, Lockheed Martin has entered the fray by making an announcement that it aims to produce a commercially viable small fusion reactor within the next ten years.

Spear-headed by Skunk Works — the same group that produced the first stealth bomber and a number of other breakthrough technologies — the effort aims to have an experimental reactor off the ground within 5 years, military capable technology for ships, vehicles and aircraft within 10 years, and non-government/military reactors within less than 20 years.

The Lockheed Martin reactors are planned to be compact — small enough to fit in an 18 wheeler truck bed. These compact designs would produce a relatively large amount of energy — about 100 MW. Such a design could power a moderate sized city, allow an aircraft to fly indefinitely, be used to power larger vehicles, and serve as an energy source for ocean-going vessels. Such a small design would be less costly, more useful, and more easy to rapidly test, develop, and deploy.

Fusion-Graphic Magnetic Mirrors

(Lockheed Martin’s fusion reactor desing uses a layered plasma containment approach. Image source: Cosmos. Image credit: Anton Banulski.)

The key to Lockheed Martin’s smaller design is the creative use of older containment technologies. According to reports from lead Lockheed Martin scientists, the Skunk Works team is using a technique that involves a cusp confinement method — which uses ring-shaped electromagnets to contain the fusion plasma. The electromagnets generate a field that bulges in the middle. Magnetism pushes the fusion particles together. The further away from the fusion medium the particles stray, the greater the magnetic force pushing them back in.

In the 1970s, cusp confinement was found to be too leaky to produce a fusion reaction. Martin’s solution is to surround the cusp field with a second magnetic mirroring field — also a somewhat leaky field. However, another innovation by Lockheed Martin is to shunt escaped particles back into containment using a third field layer.

According to the, now anecdotal, reports from the initial research team, the experimental design features a viable  fusion containment field using only 1 kilowatt of power. A claim that, if it bears out, could put this new design onto the cutting edge for fusion development, but would require quite a bit more testing to reach full power loads.

From a recent article in Cosmos:

McGuire said he and five to 10 researchers have been working for four years and have built their first experimental device. They carried out 200 test shots while commissioning it. He declined to say what temperature, density or confinement time they had achieved but he said the plasma appeared stable and they had heated it with up to one kilowatt of power.

A Big Corp to Take on the Fossil Fuel Giants?

As of yet, the Lockheed Martin announcement provides no scientific proofs (Lockheed says it has a scientific paper pending). And given the history of past fusion innovation claims, this prestigious company may well be taking a substantial risk in its early and apparently confident announcement. Some publications have already pointed out that LM is putting its reputation on the line.

That said, perhaps the entry of the prestigious Lockheed Martin corporation into the fast track for attempting to provide viable fusion technologies is a sign that some of these energy sources — whether Tokamak or LENR based — are on the verge of a period of breakthrough.

If so, what I wrote last year about fusion energy in Growth Shock may well apply:

Even if the first high hurdle of commercial viability is crossed, whatever industries provide fusion systems will have to survive competition with the wealthy, influential, and politically powerful fossil fuel industry. One can expect a similar campaign of disinformation, undermining, delaying and detracting that has been waged against the world’s solar, wind and biofuel industries. Misinformation and fear mongering are most likely to arise as soon as any announcement of commercial viability goes widely public. This second hurdle may well prove to be even higher than the first and oil, coal, gas and, possibly, traditional nuclear special interest groups may well join to keep this option in its bottle.

Before becoming overly optimistic, we must remember that both wind and solar energy showed great promise early on and have taken many decades fighting both real world limitations and entrenched special interests to gain the minor foothold they have now established. And these are both proven technologies that are in a vicious competition with the established smoke-stack interests. One would not expect much difference with fusion. If viable, it poses a greater threat than any current renewable energy system, so the opposition media campaign, in the event of publicly proven viability, would likely be shrill in the extreme.

But fusion technology may have a few strikes in its favor. Though it may well be disruptive to traditional fuel suppliers, it may not be as disruptive as current alternatives to traditional utilities. Most of the applications that the new fusion producers are attempting to license would be plug and play… fusion generators could directly replace those in coal, gas, and nuclear plants. The new infrastructure, essentially, is limited to a reaction chamber or boiler. And should fusion prove viable, this ‘plug and play’ aspect of the technology may prove to be a crucial advantage.

The compact nature of Lockheed’s prospective offering — 100 MW scale truck-sized reactors — should they emerge, could well be a critical fossil fuel replacement desperately needed in an age of ramping anthropogenic climate change. So let’s hope this is not a miss-fire on Lockheed’s part.

Links:

Compact Fusion

Is Lockheed’s Fusion Project Breaking New Ground?

Lockheed Developing Truck-Sized Nuclear Fusion Reactor

Growth Shock

Could Ultra-Cheap Energy be Just Around the Corner?

Tokamak

ITER

Cold Fusion

https://robertscribbler.com/tag/lockheed-martin/

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Entre 18 mil postulantes, la NASA eligió 12 nuevos astronautas: 7 hombres y 5 mujeres

 

El proceso de elección tuvo el mayor número de solicitantes de la historia.

Selfie. Los 12 nuevos astronautas seleccionados por la NASA. AFP

 
 

  

La NASA seleccionó a siete hombres y cinco mujeres como sus nuevos astronautas, en un proceso de selección que tuvo el mayor número de solicitantes de su historia.

 
 

Los 12 nuevos astronautas seleccionados por la NASA. (Michael Ciaglo/Houston Chronicle via AP)

 

El anuncio de la promoción de astronautas del 2017 se hizo en el Centro Espacial Johnson, en Houston, que contó con la presencia del vicepresidente de los Estados Unidos, Mike Pence.

 

“​

Ustedes son lo mejor de nosotros. Con el presidente Donald Trump, Estados Unidos liderará en el espacio una vez más y el mundo se maravillará.

Mike Pence, vicepresidente de los Estados Unidos

http://eju.tv/2017/06/entre-18-mil-postulantes-la-nasa-eligio-12-nuevos-astronautas-7-hombres-y-5-mujeres/


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