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As low as $9/wk for car insurance

daemon@ATHENA.MIT.EDU (Cheap Auto Insurance Today Quotes)
Mon Nov 28 17:54:39 2016

Date: Mon, 28 Nov 2016 19:37:48 -0500
From: "Cheap Auto Insurance Today Quotes" <cheap.auto.insurance.today.quotes@dynamicxauto.com>
To:   <sipbv6-mtg@charon2.mit.edu>

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A team of scientists from London and Canada is set to challenge one of Albe=
rt Einstein's accepted theories regarding the classification of the speed o=
f light as constant, which means that light in a vacuum will have the same =
numerical value under any conditions.
The new theory of the scientists, described in a paper published in the jou=
rnal Physical Review, hypothesizes that the speed of light might actually b=
e a variable.
Einstein has long claimed that the speed of light is constant and it would =
be impossible for anything to travel faster than light because it would vio=
late the rules of physics. The speed of light was then treated to be a cons=
tant with a numerical value of 299,792,458 meters per second.
For many years, Einstein's theory remained to be the basis of most scientif=
ic milestones. However, Joao Magueijo, a scientist from the Imperial Colleg=
e of London, began to challenge Einstein's theory in order to solve a physi=
cs conundrum known as the "horizon problem".
"The theory, which we first proposed in the late-1990s, has now reached a m=
aturity point - it has produced a testable prediction," explained Professor=
 Magueijo in a report from Daily Galaxy. If observations in the near future=
 do find this number to be accurate, it could lead to a modification of Ein=
stein's theory of gravity."
The best way to explain the horizon problem is the inflation, suggesting th=
at the temperature after the big bang even out before the universe went thr=
ough the rapid phase of expansion. However, scientists have difficult time =
trying to explain why or how the inflation occurred and stopped.
Due to the uncertainties of the inflation theory, Magueijo proposed that li=
ght and gravity may have traveled at different speeds in the beginning of t=
he universe. In order to reach the so-called temperature equilibrium, photo=
ns need to travel faster than the gravity, giving it enough time to travel =
into all parts of the universe.
To test out his hypothesis, Magueijo, along with Dr Niayesh Afshordi of Per=
imeter Institute in Canada, used a model to put an exact figure on the spec=
tral index, or the record of early fluctuations in the speed of light that =
is imprinted on the cosmic microwave background, which commonly referred to=
 as the map of the oldest light in the universe.
The numerical figure given to the spectral index by Magueijo and Afshordi i=
s a very precise 0.96478. The current estimate of the cosmic microwave back=
ground puts it around 0.968, suggesting a close match to Magueijo and Afsho=
rdi's estimates.


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