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Something Just Went BEZERK in the Gulf of Mexico. The US Navy just sunk a French Submarine
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[quote:Krispy71:MV8xMTEzNTg2XzMzNTU2NDc5XzkxQzVDNzkx] [quote:Anonymous Coward 24264126:MV8xMTEzNTg2XzMzNTUzNzYwX0M0OUEwMDFG] I haven't been keeping up with GLP too much but thought I'd have a peek in tonight. I don't know if this has anything to do with anything but I didn't see any mention of the discovery of a huge diamond field in Russia. http://www.businessweek.com/ap/2012-09-17/russia-boasts-of-huge-diamond-field Was also interested to read that the thread has been secretly edited. I'm pretty sure the same thing happened to the Jessica Simpson thread. What goes on? [/quote] YES ! I read about that on the internet yesterday !!! (not here in the thread) I think this is majorly important !! I was thinking about the implications regarding "holding vibrations with that field" and possibly using it like a laser-focuspoint to direct energy and frequency !!! (like we discussed before with the limestone and crystal-fields below many ancient buildings and wells) [i][color=blue]wiki: Most diamonds are [b]electrical insulators[/b] but [b]extremely efficient thermal conductors[/b]. Thermal conductivity of natural diamond was measured to be about 22 W/(cm·K), [b]five times more than copper[/b]. In April 2004, the journal Nature reported that below the superconducting transition temperature 4 K, boron-doped diamond synthesized at high temperature and high pressure is a bulk [b]superconductor[/b].[31] Superconductivity was later observed in heavily boron-doped films grown by various chemical vapor deposition techniques, and the highest reported transition temperature (by 2009) is 11.4 K.[/color][/i] Thermal conductors !! Superconductor !!!! [i][color=blue]wiki: Because diamond has such [b]high thermal conductance[/b] it is already [b]used in semiconductor manufacture to prevent silicon and other semiconducting materials from [u]overheating[/u][/b]. At [b]lower temperatures conductivity becomes even better[/b] as its Fermi electrons can match the phononic normal transport mode near the Debye point,[36] and thermal conductivity reaches 410 W/(cm·K) at 104 K (12C-enriched diamond)[/color][/i] [i][color=blue] wiki: Certain diamond enhancement techniques are commonly used to artificially produce an array of colors, including blue, green, yellow, red, and black. Color enhancement techniques usually involve irradiation, including [b]proton bombardment[/b] via cyclotrons; [b]neutron bombardment in the piles of nuclear reactors[/b]; and electron bombardment by Van de Graaff generators. These high-energy particles physically [b]alter the diamond's crystal lattice[/b], knocking carbon atoms out of place and producing color centers. The depth of color penetration depends on the technique and its duration, and in some cases the diamond may be [b]left radioactive[/b] to some degree.[/color][/i] What caught my attention in the 'artificial' way of ALTER the crystal's lattice by PROTONs and NEUTRONs and by NUCLEAR REACTORS ! (Neutrons can decay to a proton, an electron and a neutrino.) We all know that every color has its own specific frequency or tone, and effect. The ability to change color in such a hard material makes me wonder what [military] use could be achieved with this ... Used to HOLD a certain frequency ? or used to disrupt the incomming frequencies of the Alignment-energy ? This also makes me wonder about the wish and need to produce 'Nuclear reactors' in the first place. Was there possibly an other motive behind this ? [i][color=blue]wiki: Being a form of carbon, diamond oxidizes in air if heated over 700 °C.[37] In absence of oxygen, e.g. in a flow of high-purity argon gas, diamond can be heated up to about 1700 °C.[38][39] Its surface blackens, but can be recovered by re-polishing. At high pressure (~20 GPa) diamond can be heated up to 2500 °C,[40] and a report published in 2009 suggests that diamond can withstand temperatures of 3000 °C and above[/color][/i] Now we can ask ourselves if there is a need to heat up a diamond ... or a whole DIAMOND FIELD !!! .. to (such) high temperatures ? In the lines of China, we could think that it could be used to POWER-UP something, [b]a device[/b] ... or if we took it even more exotic : to open a gate ??? a wormhole ? My mind also goes to Lake Vostok and what this diamondfield-"weapon" could do to or with the Life-Giving-Water fluid ???? Also intersesting from wiki: [i][color=blue]Diamonds are carbon crystals that form deep within the Earth under high temperatures and extreme pressures. [u]At surface air pressure (one atmosphere), diamonds are not as stable as graphite[/u], and so [u]the decay of diamond[/u] is thermodynamically favorable (δH = −2 kJ / mol).[17] So, contrary to De Beers' ad campaign extending from 1948 to at least 2006 under the slogan "A diamond is forever",[42] [u]diamonds are definitely not forever[/u]. However, owing to a [b]very large kinetic energy barrier[/b], diamonds are metastable; they will not decay into graphite under normal conditions[/color][/i] In a nutshell : [color=green][i]* Diamond [b]conducts heat 5 times faster[/b] than copper, which is why it feels cold to the touch. * Pure diamond is the most transparent material known. It [b]reflects visible light, ultra-violet light, and infrared light, and all the frequencies in between[/b]. * Diamond can be an insulator or a conductor, so it can either [b]allow electricity to pass through or block it[/b]. * Diamond can [b]survive intact in environments that will destroy other materials[/b]. It can [b]survive severe physical, chemical and radioactive forces[/b]. * If you place diamonds [b]inside the human body they will not trigger an immune response[/b].[/i][/color] WOW ... Telecommunications [color=green][i]Diamond cubes [b]can allow [u]several signals[/u] at once to pass[/b] along a cable, [b]all at different wavelengths of light[/b]. This makes them useful in telecommunications. They can [b]also withstand high-energy conditions and changes in temperature[/b].[/i][/color] Heat spreaders [color=green][i]Heat passes through diamonds far more quickly than it passes through copper. This makes it [b]useful as a heat spread in places where lots of heat is generated in a small space[/b]. [u]Microelectronic devices[/u] are one example.[/i][/color] Diamond speaker domes [i][color=green]enhance the performance of high quality speakers. Diamond is a very stiff material and when [b]made into a thin dome it can vibrate rapidly without the deformation that would degrade sound quality[/b].[/color][/i] Heat sinks [i][color=green]are materials that absorb or transmit excess heat. Diamond has [b]the highest thermal conductivity of any material. It is used to conduct heat away from the heat sensitive-parts of high performance microelectronics[/b]. [/color][/i] somehow the ability to reflect light in such a pure way as it does, is triggering my intuition. It leads me back to the energy and thus LIGHT that is intensifying as we near the Galactic Alignment. [i][color=green]Diamond also has a high dispersion. [b]As white light passes through a diamond this high dispersion causes that light to separate into its component colors.[/b] [u]Dispersion is what enables a prism to separate white light into the colors of the spectrum[/u]. This property of dispersion is what gives diamonds their colorful "fire".[/color][/i] ** Source of green snips: http://geology.com/minerals/diamond.shtml [b]So ... this Diamond-Field could be used to power-up a device, to direct heat or to conduct it away ? or to direct sound (vibrate rapidly without the deformation that would degrade sound quality) ... Could it be used to focus and disperse the Galactic Light into prism colors, or... a very wild idea > could it be used to open space-portals ???[/b] :bump: :lol: Jessica Simpson thread ??? ..lol... bwahahahahaha ... :D [/quote]
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