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SCROLL DOWN FOR ENGLISH TRANSLATION
Se apropie o catastrofa ca se datorează folosirii unor tehnologii militare insuficient cunoscute, bazate în principal pe ingineria inversă realizata pe baza artefactelor și textelor vechi (așa se explica dispariția DIN Iraq a 6000 de artefactelor din muzeu din Bagdad și interesul rușilor pentru Crimeea – piramida veche de 30.000 de ani). O nefericita influenta a trei catalizatori: unul extern, CERN și o interferenta climaterica ca urmare a exesului de folosire a HAARP. Cat despre bogați se aseamănă cu șobolanii care încearcă sa părăsească corabia care ia apa…numai ca vor rezista oameni numai în locurile deja verificate și evident în spațiul extraterestru (numai ca aici locurile sunt limitate)
ENGLISH Translation from Google Translate
There’s a catastrophe that is due to the use of military technology insufficiently known, mainly based on reverse engineering performed on artifacts and ancient texts (this explains the disappearance of the 6000 Iraq Baghdad museum artifacts and interest for the Crimean Russians - old pyramid 30,000 years). An unfortunate influence of the three catalysts: one external interference CERN and climatic disasters due to the use of HAARP. As rich is like trying to leave the ship rats who will resist water … only places people already verified only evident in outer space (just as there are limited places)
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JUST SOME THOUGHTS FROM DISCLOSE T.V.
With the reopening of CERN’s ‘large hadron collider’ in March of 2015, two leading and well respected scientists, theoretical physicist and cosmologist Stephen Hawking and Astrophysicist Neil de Grasse Tyson, have recently issued independent warnings that, when looked at through the eyes of the supernatural war taking place right now upon our planet Earth between the forces of good and evil, send us a clear message: “This is it!”. The reopening of CERN will bring together scientists playing with unknown forces, attempting to re-create the ‘big bang’, as shared in the 1st video below, the moment of the creation of the universe.
Dr. Stephen Hawking recently warned that the reactivation in March of CERN’s large hadron collider could pose grave dangers to our planet…the ultimate reality check we are warned. Hawking has come straight out and said the ‘God particle’ found by CERN “could destroy the universe” leaving time and space collapsed as shared in the 2nd video. Is CERN the most dangerous thing in the cosmos that could lead to the ultimate destruction of the Earth and the entire universe? Recent developments prove to us the scientific community is no longer able to explain ‘reality’ without looking at the ‘supernatural’. Will we soon learn CERN is really the ‘ultimate stargate’ and one of the gate-keepers most closely guarded secrets? Will this be the way man attempts to break the ultimate ‘God barrier’, an attempt to encounter demi-God’s in an all-out rush towards the destruction of all creation? We understand they won’t be releasing the secrets until they’re prepared to release them.
Does CERN headquarter’s symbol of Shiva, dancing the cosmic dance of death and destruction, signal the TRUE purpose of CERN’s existence? A look at the ‘Shiva’ (the Hindu God of Destruction) symbology surrounding CERN’s headquarters gives us the beginning of what we need to know. “The men who would play God, in searching for the God particle, are truly going to find more than they bargained for as they open the gates of hell” we are warned by Stephen Quayle, “they will find inter-dimensional beings who have a taste for human flesh and humanities destruction. Most scientists, in lacking an understanding of the ‘supernatural entities’ that are going to confront them, are way beyond their ability to comprehend, let alone control, the forces of Pandora’s box that will be released.”
Astrophysicist Neil de Grasse Tyson has also sounded the alarm in a hypothetical manner by telling anyone who might want to ‘blow up a planet’ how to do so…is this CERN’s attempt to do so by attempting to ‘recreate’ the big bang within a man made structure that has frightened Stephen Hawking so much? Do they know that they know that they know what they’re doing?
Ask yourself: how much energy is keeping it together? Neil deGrasse Tyson told co-host Eugene Mirman on his Star Talk radio show. Then you put more than that amount of energy into the object. It will explode.
In the movie Star Wars, we see the Death Star blow up the planet Alderaan, Mirman said, reading the question. Setting aside the question of how [such] a thing would be possible, what would happen to our solar system if the Empire blew up, say, Mars?
First, deGrasse Tyson said, any Imperial sympathizer looking to make that happen would have to calculate the planets binding energy, in order to determine how much energy it would take to overcome the gravitational forces binding the planet together.
Now you have a device that can pump that energy into your planet and have that planet absorb the energy, rather than have the energy come out the other side, it will completely destroy the planet to smithereens, entirely, he explained. So, thats how one would go about it.
The 3rd video below is an excellent compilation called ” CERN: Supercolliders, Subliminals, & Stargates: Illuminati’s Plan for Satan’s Arrival” while the 4th video is a NOVA documentary on CERN and the final video is from FreedomFighter2127 in which the videographer offers his own evidence and opinions on CERN and its’ tie in to “2015: The International Year of Light”.
In Closing, from Steve Quayle: THE LIVING GOD, THE LORD GOD OF HEAVEN, CREATED ORDER OUT OF CHAOS -THE ANTAGONIST OF MENS EXISTENCE (SATAN), WHOM CERNS STATUE OF ‘SHIVA’ REPRESENTS IN HIS COSMIC DANCE OF CREATION AND DESTRUCTION, IS NOW IN THE PROCESS OF REVERSING THE PROCESS OF CREATION, AND IS NOW GOING FOR DESTRUCTION. “CHAOS OUT OF ORDER” AND THE ULTIMATE DESTRUCTION OF A ONCE BEAUTIFUL PLANET AND IT’S INHABITANTS IS NOW ONLY A SHORT PERIOD OF TIME AWAY!
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CERN | The European Organization for Nuclear Research (French: Organisation Européene pour la Recherche Nucléaire), known as CERN (/ˈsɜrn/; French pronunciation: [sɛʁn]; derived from “Conseil Européen pour la Recherche Nucléaire”; see History) is a European research organization that operates the largest particle physics laboratory in the world. Established in 1954, the organization is based in the northwest suburbs of Geneva on the Franco–Swiss border, (46°14′3″N 6°3′19″E) and has 21 European member states. Israel is the first (and currently only) non-European country granted full membership.
The term CERN is also used to refer to the laboratory, which in 2013 counted 2,513 staff members, and hosted some 12,313 fellows, associates, apprentices as well as visiting scientists and engineers representing 608 universities and research facilities and 113 nationalities.
CERN‘s main function is to provide the particle accelerators and other infrastructure needed for high-energy physics research – as a result, numerous experiments have been constructed at CERN following international collaborations.
CERN is also the birthplace of the World Wide Web. The main site at Meyrin has a large computer centre containing powerful data processing facilities, primarily for experimental-data analysis; because of the need to make these facilities available to researchers elsewhere, it has historically been a major wide area networking hub.
CERN’s first president was Sir Benjamin Lockspeiser. The first Director General was Edoardo Amaldi.
Soon after the laboratory’s establishment, its work went beyond the study of the atomic nucleus into higher-energy physics, which is concerned mainly with the study of interactions between particles. Therefore the laboratory operated by CERN is commonly referred to as the European laboratory for particle physics (Laboratoire européen pour la physique des particules), which better describes the research being performed there.
Scientific achievements
Several important achievements in particle physics have been made during experiments at CERN. They include:
- 1973: The discovery of neutral currents in the Gargamelle bubble chamber;
- 1983: The discovery of W and Z bosons in the UA1 and UA2 experiments;
- 1989: The determination of the number of light neutrino families at the Large Electron–Positron Collider (LEP) operating on the Z boson peak;
- 1995: The first creation of antihydrogen atoms in the PS210 experiment;
- 1999: The discovery of direct CP violation in the NA48 experiment;
- 2010: The isolation of 38 atoms of antihydrogen;
- 2011: Maintaining antihydrogen for over 15 minutes;
- 2012: A boson with mass around 125 GeV/c2 consistent with long-sought Higgs boson.
The 1984 Nobel Prize in physics was awarded to Carlo Rubbia and Simon van der Meer for the developments that led to the discoveries of the W and Z bosons. The 1992 Nobel Prize in physics was awarded to CERN staff researcher Georges Charpak “for his invention and development of particle detectors, in particular the multiwire proportional chamber.”
Computer science
The World Wide Web began as a CERN project called ENQUIRE, initiated by Tim Berners-Lee in 1989 and Robert Cailliau in 1990. Berners-Lee and Cailliau were jointly honoured by the Association for Computing Machinery in 1995 for their contributions to the development of the World Wide Web.
Based on the concept of hypertext, the project was aimed at facilitating sharing information among researchers. The first website went on-line in 1991. On 30 April 1993, CERN announced that the World Wide Web would be free to anyone. A copy of the original first webpage, created by Berners-Lee, is still published on the World Wide Web Consortium‘s website as a historical document.
Prior to the Web’s development, CERN had been a pioneer in the introduction of Internet technology, beginning in the early 1980s. A short history of this period can be found at CERN.ch.
More recently, CERN has become a centre for the development of grid computing, hosting projects including the Enabling Grids for E-sciencE (EGEE) and LHC Computing Grid. It also hosts the CERN Internet Exchange Point (CIXP), one of the two main internet exchange points in Switzerland.
Faster-than-light neutrino anomaly
On 22 September 2011, the OPERA Collaboration reported the detection of 17-GeV and 28-GeV muon neutrinos, sent 730 kilometers (450 miles) from CERN near Geneva, Switzerland to the Gran Sasso National Laboratory in Italy, traveling apparently faster than light by a factor of 2.48×10−5 (approximately 1 in 40,000), a statistic with 6.0-sigma significance.[16] However, in March 2012 it was reported by a new team of scientists for CERN, Icarus, that the previous experiment was most likely flawed and will be retested by scientists of both the Opera and Icarus teams; on 16 March, CERN stated in a press release that the results were flawed due to an incorrectly connected GPS-synchronization cable.
Particle accelerators
Current complex
CERN operates a network of six accelerators and a decelerator. Each machine in the chain increases the energy of particle beams before delivering them to experiments or to the next more powerful accelerator. Currently active machines are:
- Two linear accelerators generate low energy particles. Linac2 accelerates protons to 50 MeV for injection into the Proton Synchrotron Booster (PSB), and Linac3 provides heavy ions at 4.2 MeV/u for injection into the Low Energy Ion Ring (LEIR).
- The Proton Synchrotron Booster increases the energy of particles generated by the proton linear accelerator before they are transferred to the other accelerators.
- The Low Energy Ion Ring (LEIR) accelerates the ions from the ion linear accelerator, before transferring them to the Proton Synchrotron (PS). This accelerator was commissioned in 2005, after having been reconfigured from the previous Low Energy Antiproton Ring (LEAR).
- The 28 GeV Proton Synchrotron (PS), built in 1959 and still operating as a feeder to the more powerful SPS.
- The Super Proton Synchrotron (SPS), a circular accelerator with a diameter of 2 kilometres built in a tunnel, which started operation in 1976. It was designed to deliver an energy of 300 GeV and was gradually upgraded to 450 GeV. As well as having its own beamlines for fixed-target experiments (currently COMPASS and NA62), it has been operated as a proton–antiproton collider (the SppS collider), and for accelerating high energy electrons and positrons which were injected into the Large Electron–Positron Collider (LEP). Since 2008, it has been used to inject protons and heavy ions into the Large Hadron Collider (LHC).
- The On-Line Isotope Mass Separator (ISOLDE), which is used to study unstable nuclei. The radioactive ions are produced by the impact of protons at an energy of 1.0–1.4 GeV from the Proton Synchrotron Booster. It was first commissioned in 1967 and was rebuilt with major upgrades in 1974 and 1992.
- The Antiproton Decelerator (AD), which reduces the velocity of antiprotons to about 10% of the speed of light for research into antimatter.
- The Compact Linear Collider Test Facility, which studies feasibility issues for the future normal conducting linear collider project.
Large Hadron Collider
Most of the activities at CERN are currently directed towards operating the Large Hadron Collider (LHC), and the experiments for it. The LHC represents a large-scale, worldwide scientific cooperation project.
The LHC tunnel is located 100 metres underground, in the region between the Geneva International Airport and the nearby Jura mountains. It uses the 27 km circumference circular tunnel previously occupied by LEP which was closed down in November 2000. CERN’s existing PS/SPS accelerator complexes will be used to pre-accelerate protons which will then be injected into the LHC.
Seven experiments (CMS, ATLAS, LHCb, MoEDAL, TOTEM, LHC-forward and ALICE) will run on the collider; each of them will study particle collisions from a different point of view, and with different technologies. Construction for these experiments required an extraordinary engineering effort. For example, a special crane was rented from Belgium to lower pieces of the CMS detector into its underground cavern, since each piece weighed nearly 2,000 tons. The first of the approximately 5,000 magnets necessary for construction was lowered down a special shaft at 13:00 GMT on 7 March 2005.
The LHC has begun to generate vast quantities of data, which CERN streams to laboratories around the world for distributed processing (making use of a specialized grid infrastructure, the LHC Computing Grid). In April 2005, a trial successfully streamed 600 MB/s to seven different sites across the world. If all the data generated by the LHC is to be analysed, then scientists must achieve 1,800 MB/s before 2008.
The initial particle beams were injected into the LHC August 2008. The first attempt to circulate a beam through the entire LHC was at 8:28 GMT on 10 September 2008, but the system failed because of a faulty magnet connection, and it was stopped for repairs on 19 September 2008.
The LHC resumed operation on 20 November 2009 by successfully circulating two beams, each with an energy of 3.5 trillion electron volts. The challenge that the engineers then faced was to try to line up the two beams so that they smashed into each other. This is like “firing two needles across the Atlantic and getting them to hit each other” according to the LHC’s main engineer Steve Myers, director for accelerators and technology at the Swiss laboratory.
At 1200 BST on 30 March 2010 the LHC successfully smashed two proton particle beams travelling with 3.5 TeV (trillion electron volts) of energy, resulting in a 7 TeV event. However, this was just the start of the road toward the expected discovery of the Higgs boson. When the 7 TeV experimental period ended, the LHC revved up to 8 TeV (4 TeV acceleration in both directions) in March 2012, and soon began particle collisions at that rate. In early 2013 the LHC was shut down for a two-year maintenance period, to strengthen the huge magnets inside the accelerator. Eventually it will attempt to create 14 TeV events. In July 2012, CERN scientists announced the discovery of a new sub-atomic particle that could be the much sought after Higgs boson believed to be essential for formation of the Universe. In March 2013, CERN announced that the measurements performed on the newly found particle allowed it to conclude that this is a Higgs boson.
Decommissioned accelerators
- The original linear accelerator (LINAC 1).
- The 600 MeV Synchrocyclotron (SC) which started operation in 1957 and was shut down in 1991.
- The Intersecting Storage Rings (ISR), an early collider built from 1966 to 1971 and operated until 1984.
- The Large Electron–Positron Collider (LEP), which operated from 1989 to 2000 and was the largest machine of its kind, housed in a 27 km-long circular tunnel which now houses the Large Hadron Collider.
- The Low Energy Antiproton Ring (LEAR), commissioned in 1982, which assembled the first pieces of true antimatter, in 1995, consisting of nine atoms of antihydrogen. It was closed in 1996, and superseded by the Antiproton Decelerator.
Sites
The smaller accelerators are on the main Meyrin site (also known as the West Area), which was originally built in Switzerland alongside the French border, but has been extended to span the border since 1965. The French side is under Swiss jurisdiction and there is no obvious border within the site, apart from a line of marker stones. There are six entrances to the Meyrin site:
- A, in Switzerland, for all CERN personnel at specific times.
- B, in Switzerland, for all CERN personnel at all times. Often referred to as the main entrance.
- C, in Switzerland, for all CERN personnel at specific times.
- D, in Switzerland, for goods reception at specific times.
- E, in France, for French-resident CERN personnel at specific times. Controlled by customs personnel. Named “Porte Charles de Gaulle” in recognition of his role in the creation of CERN.
- Inter-site tunnel, in France, for equipment transfer to and from CERN sites in France by personnel with a specific permit. This is the only permitted route for such transfers. Under the CERN treaty, no taxes are payable when such transfers are made. Controlled by customs personnel.
The SPS and LEP/LHC tunnels are almost entirely outside the main site, and are mostly buried under French farmland and invisible from the surface. However, they have surface sites at various points around them, either as the location of buildings associated with experiments or other facilities needed to operate the colliders such as cryogenic plants and access shafts. The experiments are located at the same underground level as the tunnels at these sites.
Three of these experimental sites are in France, with ATLAS in Switzerland, although some of the ancillary cryogenic and access sites are in Switzerland. The largest of the experimental sites is the Prévessin site, also known as the North Area, which is the target station for non-collider experiments on the SPS accelerator. Other sites are the ones which were used for the UA1, UA2 and the LEP experiments (the latter which will be used for LHC experiments).
Outside of the LEP and LHC experiments, most are officially named and numbered after the site where they were located. For example, NA32 was an experiment looking at the production of charmed particles and located at the Prévessin (North Area) site while WA22 used the Big European Bubble Chamber (BEBC) at the Meyrin (West Area) site to examine neutrino interactions. The UA1 and UA2 experiments were considered to be in the Underground Area, i.e. situated underground at sites on the SPS accelerator.
For MORE Information about CERN, PARTICIPATING COUNTRIES, FUNDING, and Maps, and Links click on this link ~ http://en.wikipedia.org/wiki/CERN
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SCROLL DOWN FOR ENGLISH TRANSLATION
Bogatii lumii se ascund in buncare si fug in tari indepartate. Ce stiu ei si nu stim noi
Numeroși oameni foarte bogați se pregătesc discret să se retragă în spații sigure atunci când va veni momentul. Ei își cumpără proprietăți adaptate pentru supraviețuire, ferme în țări îndepărtate sau buncăre subterane.
De fapt, un participant important la Forumul Economic Mondial de la Davos spune că „oamenii foarte puternici ne spun că sunt speriați”. Acesta a șocat audiența dezvăluind că știe că „manageri de fonduri de hedging din întreaga lume cumpără piste de aterizare și ferme în locuri precum Noua Zeelandă”, scrie Zero Hedge.
Deci, ce știu ei ce restul populației lumii nu știe? De ce sunt atât de mulți super-bogați care se pregătesc să părăsească brusc locurile în care se află? Faptul că elitele mondiale încep să se pregătească pentru judecata de apoi este un semnal extrem de îngrijorător. Și chiar în această perioadă elitele par să se pregătească discret pentru un dezastru așa cum n-a făcut-o niciodată până acum.
Acel participant la Forumul de la Davos este Robert Johnson, președintele Institutului Noii Gândiri Economice (Institute of New Economic Thinking), fost președinte de fond de hedging. Acesta a mai spus că „oameni foarte puternici ne spun că sunt speriați” și că elitele „văd tot mai clar dovezile instabilității sociale și ale violenței”.
Și Robert Johnson nu este singurul care punctează aceste lucruri. Stewart Wallis, directorul executiv al Fundației Noua Economie, spune că acele persoane „dacă ar putea pleca pe o altă planetă, unele dintre ele ar face-o”.
Desigur, nu toate elitele intenționează să părăsească Pământul. Unii, însă, plănuiesc să coboare adânc sub pământ atunci când lucrurile se vor înrăutăți. De exemplu, hangar subteran pentru rachete din Kansas, construit inițial pentru protejarea de bombele nucleare, a fost transformat de către un dezvoltator imobiliar într-un complex de apartamente pentru supraviețuire de lux.
Se numește complexul Survival Condo și un singur apartament costă între 1,5 milioane de dolari și 3 milioane de dolari. Complexul poate găzdui 75 de persoane. Printre cumpărători se numără medici, oameni de știință și oameni de afaceri, a declarat dezvoltatorul Larry Hall, citat de Wall Street Journal. Construcția a fost finalizată în decembrie 2012 și, până la sfârșitul anului 2013, toate apartamentele au fost vândute.
În același timp, alți oameni foarte bogați își transformă casele în care locuiesc în adevărate fortărețe securizate cu cele mai noi tehnologii și gadgeturi, indiferent de costul acestora.
Care este motivul alarmării acestor oameni? Realitatea este că ei văd ce se întâmplă în jur. Milioane de persoane din SUA sărăcesc și ies din categoria clasei de mijloc. Societatea se distruge în mii de moduri diferite. Furia și frustrarea populației cresc la niveluri nemaiîntâlnire până în prezent. Ei se așteaptă ca lucrurile să izbucnească urât odată cu următoarea criză economică majoră.
Trăim o perioadă în care toți sărăcesc, cu excepția elitelor, cei 1% care dețin în prezent aproximativ 50% din bogăția întregii lumi. Cu fiecare an care trece, bogăția se concentrează tot mai mult în mâinile lor. Ei se așteaptă la izbucniri violente și nu vor să fie acolo când acestea vor veni.
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ENGLISH Translation from Google Translate
Many very wealthy people quietly preparing to withdraw to a safe area when the time comes. They buy properties adapted for survival, farms in distant lands or underground bunkers.
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