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Subject Terrifying scientific discovery: Strange emissions by sun are suddenly mutating matter(VIDEO)
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For months mounting fear has driven researchers to wring their hands over the approaching solar storms. Some have predicted devastating solar tsunamis that could wipe away our advanced technology, others voiced dire warnings that violent explosions on the surface of the sun could reach out to Earth, breach our magnetic field, and expose billions to high intensity X-rays and other deadly forms of cancer-causing radiation.

Now evidence has surfaced that something potentially more dangerous is happening deep within the hidden core of our life-giving star: never-before-seen particles—or some mysterious force—is being shot out from the sun and it's hitting Earth.

Whatever it is, the evidence suggests it's affecting all matter.

Strange and unknown

Alarmed physicists first became aware of this threat over the past several years. Initially dismissed as an anomaly, now frantic scientists are shooting e-mails back and forth to colleagues across the world attempting to grasp exactly what is happening to the sun.

Something impossible has happened. Yet the "impossible" has been proven to be true. Laboratories around the globe have confirmed that the rate of radioactive decay—once thought to be a constant and a bedrock of science—is no longer a constant. Something being emitted from the sun is interacting with matter in strange and unknown ways with the startling potential to dramatically change the nature of the very Earth itself.

Exactly what has scientists so on edge is the fact that the natural rate of decay of atomic particles has always been predictable. Indeed, using the decay rate of Carbon-14 has been a method to date archeological artifacts. The process, known as carbon dating, measures the quantity of Carbon-14 within organic objects. According to the numbers, Carbon-14 has a specific half-life of 5,730 years. Physicists have proven through exhaustive observation and experimentation over the course of a century that it takes 5,730 years for Carbon-14 atoms to decay into a stable Nitrogen-14.

The values don't change—or at least they never have in the past. With certain evidence that radioactive decay can be significantly affected by an unknown effect from the sun, much of science is turned on its head.

Rate of decay speeding up


Worst of all, if the decay rates of matter are being mutated then all matter on Earth is being affected including the matter that makes up life.

The mutation may go so far as to change the underlying reality of the quantum universe—and by extrapolation-the nature of life, the principles of physics, perhaps even the uniform flow of time.

In fact, some evidence of time dilation has been gleaned from close observation of the decay rate. If particles interacting with the matter are not the cause—and matter is being affected by a new force of nature-then time itself may be speeding up and there's no way to stop it.



Yes, this is a repost of an earlier thread*...The source for that thread is no longer available


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Thread: Terrifying scientific discovery: Strange emissions by sun are suddenly mutating matter

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It's a mystery that presented itself unexpectedly: The radioactive decay of some elements sitting quietly in laboratories on Earth seemed to be influenced by activities inside the sun, 93 million miles away.

Is this possible?

Researchers from Stanford and Purdue University believe it is. But their explanation of how it happens opens the door to yet another mystery.

There is even an outside chance that this unexpected effect is brought about by a previously unknown particle emitted by the sun. "That would be truly remarkable," said Peter Sturrock, Stanford professor emeritus of applied physics and an expert on the inner workings of the sun.

The story begins, in a sense, in classrooms around the world, where students are taught that the rate of decay of a specific radioactive material is a constant. This concept is relied upon, for example, when anthropologists use carbon-14 to date ancient artifacts and when doctors determine the proper dose of radioactivity to treat a cancer patient.

Random numbers


But that assumption was challenged in an unexpected way by a group of researchers from Purdue University who at the time were more interested in random numbers than nuclear decay. (Scientists use long strings of random numbers for a variety of calculations, but they are difficult to produce, since the process used to produce the numbers has an influence on the outcome.)

Ephraim Fischbach, a physics professor at Purdue, was looking into the rate of radioactive decay of several isotopes as a possible source of random numbers generated without any human input. (A lump of radioactive cesium-137, for example, may decay at a steady rate overall, but individual atoms within the lump will decay in an unpredictable, random pattern. Thus the timing of the random ticks of a Geiger counter placed near the cesium might be used to generate random numbers.)

As the researchers pored through published data on specific isotopes, they found disagreement in the measured decay rates – odd for supposed physical constants.

Checking data collected at Brookhaven National Laboratory on Long Island and the Federal Physical and Technical Institute in Germany, they came across something even more surprising: long-term observation of the decay rate of silicon-32 and radium-226 seemed to show a small seasonal variation. The decay rate was ever so slightly faster in winter than in summer.

Was this fluctuation real, or was it merely a glitch in the equipment used to measure the decay, induced by the change of seasons, with the accompanying changes in temperature and humidity?

"Everyone thought it must be due to experimental mistakes, because we're all brought up to believe that decay rates are constant," Sturrock said.

The sun speaks

On Dec 13, 2006, the sun itself provided a crucial clue, when a solar flare sent a stream of particles and radiation toward Earth. Purdue nuclear engineer Jere Jenkins, while measuring the decay rate of manganese-54, a short-lived isotope used in medical diagnostics, noticed that the rate dropped slightly during the flare, a decrease that started about a day and a half before the flare.

more..
[link to news.stanford.edu]



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[link to news.discovery.com]
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