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Monday, February 17, 2014

Monday Matrix

"So unless you've been living under a rock, you're aware that it's only a few short weeks until the premiere of the new Cosmos: A Space-Time Odyssey starring Neil de Grasse Tyson. Many have hopes (and fears) concerning what the series will (and won't) be, but this perspective — on what a 'successful' Cosmos series could mean for the future of humanity — is worth a read for anyone who hasn't given up on dreaming big."

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"Shubham Banerjee, a seventh grader in California, has developed a braille printer made from a $350 Lego Mindstorms EV3 kit and some simple hardware. He calls the science fair project the Braigo. 'The Braigo's controller is set up to scroll through the alphabet. You choose a letter and it prints it out with tactile bumps on a roll of calculator paper. The print head is actually a thumbtack, which Banerjee settled on after also testing a small drill bit and a mechanical pencil. The first prototype isn't terribly fast, but it proves the concept works. Banerjee is working on improvements that will allow it to print full pages of text.'"

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"Researchers at the US Army Natick Soldier Research, Development and Engineering Center have
created a pizza that can be stored for up to three years while still remaining edible. 'It pretty much tastes just like a typical pan pizza that you would make at home and take out of the oven or the toaster oven,' said Jill Bates who heads up the lab. 'The only thing missing from that experience would be it's not hot when you eat it. It's room temperature.'" Oh ya this has got to be good for you...not!
 
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Acts 17:28
For in him we live and move about and exist, as even some of your own poets have said, 'For we too are his offspring.'

"Mathematician Edward Frenkel writes in the NYT that one fanciful possibility that explains why mathematics seems to permeate our universe is that we live in a computer simulation based on the laws of mathematics — not in what we commonly take to be the real world. 
 
According to this theory, some highly advanced computer programmer of the future has devised this simulation, and we are unknowingly part of it. Thus when we discover a mathematical truth, we are simply discovering aspects of the code that the programmer used. 
 
This may strike you as very unlikely writes Frenkel but physicists have been creating their own computer simulations of the forces of nature for years — on a tiny scale, the size of an atomic nucleus. They use a three-dimensional grid to model a little chunk of the universe; then they run the program to see what happens. 'Oxford philosopher Nick Bostrom has
argued that we are more likely to be in such a simulation than not,' writes Frenkel.
 
 'If such simulations are possible in theory, he reasons, then eventually humans will create them — presumably many of them. If this is so, in time there will be many more simulated worlds than nonsimulated ones.
 
 Statistically speaking, therefore, we are more likely to be living in a simulated world than the real one.' The question now becomes is there any way to empirically test this hypothesis and the answer surprisingly is yes. 
 
In a recent paper, 'Constraints on the Universe as a Numerical Simulation,' the physicists Silas R. Beane, Zohreh Davoudi and Martin J. Savage outline a possible method for detecting that our world is actually a computer simulation (PDF). Savage and his colleagues assume that any future simulators would use some of the same techniques current scientists use to run simulations, with the same constraints.
 
 The future simulators, Savage indicated, would map their universe on a mathematical lattice or grid, consisting of points and lines. But computer simulations generate slight but distinctive anomalies — certain kinds of asymmetries and they suggest that a closer look at cosmic rays may reveal similar asymmetries.
 
 
 

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