sterna
๐ Joined in 2012
๐ผ 50 Karma
โ๏ธ 24 posts
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However, supporting several unit systems is a huge tax on startup companies that work in manufacturing and therefore they reduce innovation and competition, causing harm to everybody along the way.
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The ingredients needed for fusion on the other hand are thought to have been created during the some of the early stages of the Big bang so fusion is truly independent of stars.
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I think Kurtzweil has suggested going into 3D for CPU design with multiple layers of circuits, but I have seen no serious attempts to realize this so it is a bit of a long shot to depend on to keep the pace of growth intact. However, it still does not resolve the fundamental limitation of Moores law, it only extends it for some time.
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An intersting feature of the Herbertsmitihe crystals that were used for the study is that have a geometric structure that frustrates the ordering of the magnetic moments (or spins) of the atoms. The magnetic moment will try to align in opposite directions but the crystal structure has three magnetic moments in each unit cell and therefore only two of them can allign in an energetically favorable state while the last one is unable to moove into a stable equlibrium. Since there is no distinction between the three magnetic moments per se, the frustration is spread across the whole solid structure and a "large" entangled stage is formed.
Because these states are not locallized they are not constrained by the atomic properties of the cryatal atoms and therefore they are allowed to accept excitations at a continous range of engergies rather than the discrete ones that we normally see. It is a little bit similar to free electrons in metals. They can also be excited by a continous range of energies because they are free to move within the material.
An important thing to note, however, is that these experiments were carried out at 1.6 K, where thermal fluctuations play a very small role compared to room temperature. Therefore it is not likely that this effect will be portable to regular electronics devices. More likely quantum informatics applications include massive server like facilities that has the infrastructure to cool the devices down to cryogenic temperatures and the best we can hope for in terms of avaliability is some kind of cloud service.
There is an interesting press release at Phys.org: http://phys.org/news/2012-12-newly-quantum-liquid-beauty-sim...
Edit: Corrected BSC pairs to Cooper pairs, and added a bit more information after reading the actual paper which is available for those sitting behind a pay wall: http://www.nature.com/nature/journal/v492/n7429/full/nature1...
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The bottled stock you can get in regular supermarkets is also better than the cubes. I can recommend it.
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People who have tinnitus will hear the sound you describe or something similar all the time. When I was little I had the same experience as you, but now I have developed tinnitus and never get rid of that sound any more. Sometimes it also becomes rhythmical which very annoying. The only thing that helps is to ignore it.
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edit: Gmail works fine for me in Denmark, maybe it is only a regional outage?
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http://www.grontmij.com/highlights/water-and-energy/Pages/pe...
The main problem at the moment is a lack of incentives to use it at waste water treatment plants, but I guess this will come with increasing Phosphorus prices. Still it would be beneficial to start recovering more Phosphorus already now but this is a political issue rather than an Engineering issue in my opinion.
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