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Diagram 336 WOW! Signal UFO Traversible Wormholes Nematic Liquid Crystal PLasma Elastomers Communication Neutrino Laser BEams

June 10, 2016

 

New state of liquid crystals discovered see below for more details and blog source!

Diagram 336 WOW! Signal UFO Traversible Wormholes Nematic Liquid Crystal PLasma Elastomers Communication Neutrino Laser BEams

see Diagram 336 (start with Diagram 300s, and 200s for earlier information and instructions to build the laser beam UFO crystalline super lattice Engine that can communicate from millions of light years in deep space to EARTh.

https://alienspacesciencenewsphotos.wordpress.com/2016/06/10/diagram-336-wow-signal-ufo-traversible-wormholes-nematic-liquid-crystal-plasma-elastomers-communication-neutrino-laser-beams/

the idea girl says

Diagram 336 WOW! Signal UFO Traversible Wormholes Nematic Liquid Crystal PLasma Elastomers Communication Neutrino Laser BEams

blue book notes 1, page 107, cooled plasma formula notes page 4.

Diagram 336 continues the train of thoughts and instructions from the UFO wow! signal 6EQUJ5 formula’s on how to create a plasma bridge for communication photon, plasma neutrino laser beam communications

cross reference

Line 22 7b238 Traversable Wormholes Nematic Liquid Crystal Elastomers Formula WOW SETI

159 views 10 June 2016

notes from 17 feb 2014

formula keywords:

TRaversable wormholes, create a plasma bridge, idea with CRYSTAL ELASTOMERS in OUterspace

Diagram 336

O__________________O  two traversible wormholes, left side is closed and by EARTH, the one on the right is OPEN as it travels through deep space, millions of light years away, it stays with the UFO space ship and keeps an open line of communications with EARTh with neutrino, particle, protons, higgs mixtures of laser beam signals and other instructions given in Diagrams 200. NOw in Diagrams 300 we see the type of ENGINE for the UFO component and what’s it able to ACHIEVE.

REMEMBER look OUTSIDE the box, and this type of physics, is not yet proven “publicly” on EARTH as of June 10, 2016. AIRL.

O________________O

^ up arrow

|  “with CRYSTAL PLASMA ELASTOMERS”

v down arrow

O/_________________oO

O – traversable wormholes

O/ closed end wormhole oO open end wormhole

this wormhole is Separated.

the one on the left O/ is closed and close to EARTH from the point where the UFO space ship has left our solar system, it travels through a 5th dimension in and through, then out the other end of the traversable wormhole which is attached to the UFO space ship’s base. it generates it as it travels through space into different dimensions and goes millions of light years away.

Now these instructions and the research videos that will go with this shows the FORMULA’s and algorithms to make this possible.  The alien wow! signal 6EQUJ5 also has some higher forms of math from over 3,000 years ago (MAYAN, Egyptians know of this technology but it was lost from the great floods of the ice age that happened when Earth’s poles shifted north to south, south to north) all that technology was lost or is buried, and not yet discovered, yet we do have CAVE paintings which I have shown you in the WOW! signal research videos!)

so we’ve seen BANDWIDTH being boosted through laser beams, that have certain particle mixtures attached to them as they travel in LAYERS through the two wormholes.

This shows a PLASMA BRIDGE made of crystal ELASTOMERS.

google on WIKI so you can see what I”m talking about (in case you are NOT familiar with this type of technology yet..)

quotes from a blog

Nematic elastomer in glass tube. Length changed by hot or cold air (Eugene Terentjev).
——————————————————-
Director rotation in nematic elastomer in response to a perpendicular extension Finkelmann et al).
——————————————————-
Rubber laser – colour changes with stretch (Peter Palffy-Muhoray).

Liquid Crystal Elastomers are rubbery networks composed of long, crosslinked polymer chains that are also liquid crystalline (LC) – nematic, cholesteric or smectic.

Their unique phenomena arise because the natural shape of such chains follow the LC order. They typically elongate in the presence of nematic (orientational) order, and reversibly contract when the order is lost (typically by heating, but also by illumination or absorption of solvent). The molecular shape change is mirrored in the mechanical shape changes of the solid that the chains constitute. The changes can be very large, up to 500%. [click to see the film of the rubber shown on the right lifting a weight]

Nematic order can also be re-directed rather than changed in magnitude. Redirection in nematic liquids is by electric fields (the basis of displays) or by boundary conditions. In solids this can be by electric, mechanical and optical fields. The naturally long dimension of the chain shape distribution (not individual chains) can also change. If mechanically not too constrained, and for nearly ideal networks, the macroscopic shape change can be at low energy – so called “soft elasticity”. This phenomena has been seen by many groups using mechanical, optical and electrical fields. The effect dominates most responses of LC elastomers since it is a low energy route (if necessary by the formation of textures – “quasi-convexification”). It is a large amplitude phenomenon; in fact there is a small threshold to director response, but it then extends over huge strains. It is therefore frequently misunderstood by those using linear continuum theory (small strain elasticity) or doing small strain rheology. Director rotation proceeds and concludes in a singular manner during the low energy deformation. It is through 90 degrees ultimately and cannot be treated in any linear way. A straightforward extension of classical rubber elasticity to LC rubber predicted or describes these and other phenomena

 

http://www.lcelastomer.org.uk/

quote WIKI

Because of their various properties, LCPs are useful for electrical[7] and mechanical parts, food containers, and any other applications requiring chemical inertness and high strength. LCP is particularly good for microwave frequency electronics due to low relative dielectric constants, low dissipation factors, and commercial availability of laminates. Packaging microelectromechanical systems (MEMS) is another area that LCP has recently gained more attention.

 

https://en.wikipedia.org/wiki/Liquid-crystal_polymer

quote

wiki

Microelectromechanical systems (MEMS, also written as micro-electro-mechanical, MicroElectroMechanical or microelectronic and microelectromechanical systems and the related micromechatronics) is the technology of very small devices; it merges at the nano-scale into nanoelectromechanical systems (NEMS) and nanotechnology. MEMS are also referred to as micromachines in Japan, or micro systems technology (MST) in Europe.

MEMS are separate and distinct from the hypothetical vision of molecular nanotechnology or molecular electronics. MEMS are made up of components between 1 and 100 micrometres in size (i.e. 0.001 to 0.1 mm), and MEMS devices generally range in size from 20 micrometres to a millimetre (i.e. 0.02 to 1.0 mm). They usually consist of a central unit that processes data (the microprocessor) and several components that interact with the surroundings such as microsensors.[1] At these size scales, the standard constructs of classical physics are not always useful. Because of the large surface area to volume ratio of MEMS, surface effects such as electrostaticsand wetting dominate over volume effects such as inertia or thermal mass.[citation needed]

The potential of very small machines was appreciated before the technology existed that could make them (see, for example, Richard Feynman‘s famous 1959 lecture There’s Plenty of Room at the Bottom). MEMS became practical once they could be fabricated using modified semiconductor device fabrication technologies, normally used to make electronics.[2] These include molding and plating, wet etching (KOH, TMAH) and dry etching (RIEand DRIE), electro discharge machining (EDM), and other technologies capable of manufacturing small devices.

the idea girl says

so our NODES wires change from semi conductors, to liquid crystal elastomers and then to super conductors, and yes we have formula’s to make them do so!  I’ll blog those in FUTURE. *wink*. along with their keywords… and research videos.. this is sooooo exciting! were going to learn how to re create ALIEN technology that’s over 3,000 to 10,000 years old, (or longer who knows! I don’t keep track!)… 🙂

MAKE SURE YOU ATTEND THIS NEW EVENT, I GOOGLED FOR UPDATED RESEARCH 2016

FOUND IT!

ILCC 2016

26TH INTERNATIONAL LIQUID CRYSTAL CONFERENCE

http://www.lcinet.kent.edu/conference/23/index.php?topic=tutorial

my thoughts

i will look at your online data in the FUTURE and point out what needs to be added to YOUR formula’s to achieve these goals. Give me a heads up on youtube, if you have created a “research video” I’d like to blog it along with the UFO formula’s instructions so we can make this work for our space travel vehicles (around the world, anyone working on this type of technology needs to SHARE it so we can get this done as soon as possible!)

looking at MORE DATA June 10, 2016

quote blog

Spontaneous Ferroelectric Order in a Bent-Core Smectic Liquid Crystal of Fluid Orthorhombic Layers
Science  01 Apr 2011:
Vol. 332, Issue 6025, pp. 72-77
DOI: 10.1126/science.1197248

 

http://science.sciencemag.org/content/332/6025/72

quote from blog

Control of active liquid crystals with a magnetic field

my thoughts:

(the UFO super conductors generates Higgs Electric Magnetic FIELDS around EACH NODE n the UFO engine design from the alien radio signal called WOW! 6EQUJ5)

quote from blog

Abstract

Living cells sense the mechanical features of their environment and adapt to it by actively remodeling their peripheral network of filamentary proteins, known as cortical cytoskeleton. By mimicking this principle, we demonstrate an effective control strategy for a microtubule-based active nematic in contact with a hydrophobic thermotropic liquid crystal. By using well-established protocols for the orientation of liquid crystals with a uniform magnetic field, and through the mediation of anisotropic shear stresses, the active nematic reversibly self-assembles with aligned flows and textures that feature orientational order at the millimeter scale. The turbulent flow, characteristic of active nematics, is in this way regularized into a laminar flow with periodic velocity oscillations.

source of blog quote

http://www.pnas.org/content/113/20/5498.abstract

quote blog

New state of liquid crystals discovered
November 29, 2013
New state of liquid crystals discovered
Schematics of local director arrangements in nematics. Credit: Nature Communications 4, Article number: 2635 doi:10.1038/ncomms3635
(Phys.org) —New collaborative research, carried out by Dr. Vitaly P. Panov, Research Fellow, and Jagdish K Vij, Honorary Professor of Electronic Materials of Trinity College Dublin’s School of Engineering, Department of Electronic Engineering, has found the twist bend nematic phase of liquid crystals (LCs).

The findings, are published in the leading scientific journal Nature Communications. A series of papers published by the group of Professor Vij in Physical Review Letters and Applied Physics Letters with Dr. Panov as first author formed the basis of this fascinating discovery.

source:

http://phys.org/news/2013-11-state-liquid-crystals.html

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