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Gary Edwards

Skynet rising: Google acquires 512-qubit quantum computer; NSA surveillance to be turne... - 0 views

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    "The ultimate code breakers" If you know anything about encryption, you probably also realize that quantum computers are the secret KEY to unlocking all encrypted files. As I wrote about last year here on Natural News, once quantum computers go into widespread use by the NSA, the CIA, Google, etc., there will be no more secrets kept from the government. All your files - even encrypted files - will be easily opened and read. Until now, most people believed this day was far away. Quantum computing is an "impractical pipe dream," we've been told by scowling scientists and "flat Earth" computer engineers. "It's not possible to build a 512-qubit quantum computer that actually works," they insisted. Don't tell that to Eric Ladizinsky, co-founder and chief scientist of a company called D-Wave. Because Ladizinsky's team has already built a 512-qubit quantum computer. And they're already selling them to wealthy corporations, too. DARPA, Northrup Grumman and Goldman Sachs In case you're wondering where Ladizinsky came from, he's a former employee of Northrup Grumman Space Technology (yes, a weapons manufacturer) where he ran a multi-million-dollar quantum computing research project for none other than DARPA - the same group working on AI-driven armed assault vehicles and battlefield robots to replace human soldiers. .... When groundbreaking new technology is developed by smart people, it almost immediately gets turned into a weapon. Quantum computing will be no different. This technology grants God-like powers to police state governments that seek to dominate and oppress the People.  ..... Google acquires "Skynet" quantum computers from D-Wave According to an article published in Scientific American, Google and NASA have now teamed up to purchase a 512-qubit quantum computer from D-Wave. The computer is called "D-Wave Two" because it's the second generation of the system. The first system was a 128-qubit computer. Gen two
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    Normally, I'd be suspicious of anything published by Infowars because its editors are willing to publish really over the top stuff, but: [i] this is subject matter I've maintained an interest in over the years and I was aware that working quantum computers were imminent; and [ii] the pedigree on this particular information does not trace to Scientific American, as stated in the article. I've known Scientific American to publish at least one soothing and lengthy article on the subject of chlorinated dioxin hazard -- my specialty as a lawyer was litigating against chemical companies that generated dioxin pollution -- that was generated by known closet chemical industry advocates long since discredited and was totally lacking in scientific validity and contrary to established scientific knowledge. So publication in Scientific American doesn't pack a lot of weight with me. But checking the Scientific American linked article, notes that it was reprinted by permission from Nature, a peer-reviewed scientific journal and news organization that I trust much more. That said, the InfoWars version is a rewrite that contains lots of information not in the Nature/Scientific American version of a sensationalist nature, so heightened caution is still in order. Check the reprinted Nature version before getting too excited: "The D-Wave computer is not a 'universal' computer that can be programmed to tackle any kind of problem. But scientists have found they can usefully frame questions in machine-learning research as optimisation problems. "D-Wave has battled to prove that its computer really operates on a quantum level, and that it is better or faster than a conventional computer. Before striking the latest deal, the prospective customers set a series of tests for the quantum computer. D-Wave hired an outside expert in algorithm-racing, who concluded that the speed of the D-Wave Two was above average overall, and that it was 3,600 times faster than a leading conventional comput
Gary Edwards

The True Story of How the Patent Bar Captured a Court and Shrank the Intellectual Commo... - 1 views

  • The change in the law wrought by the Federal Circuit can also be viewed substantively through the controversy over software patents. Throughout the 1960s, the USPTO refused to award patents for software innovations. However, several of the USPTO’s decisions were overruled by the patent-friendly U.S. Court of Customs and Patent Appeals, which ordered that software patents be granted. In Gottschalk v. Benson (1972) and Parker v. Flook (1978), the U.S. Supreme Court reversed the Court of Customs and Patent Appeals, holding that mathematical algorithms (and therefore software) were not patentable subject matter. In 1981, in Diamond v. Diehr, the Supreme Court upheld a software patent on the grounds that the patent in question involved a physical process—the patent was issued for software used in the molding of rubber. While affirming their prior ruling that mathematical formulas are not patentable in the abstract, the Court held that an otherwise patentable invention did not become unpatentable simply because it utilized a computer.
  • In the hands of the newly established Federal Circuit, however, this small scope for software patents in precedent was sufficient to open the floodgates. In a series of decisions culminating in State Street Bank v. Signature Financial Group (1998), the Federal Circuit broadened the criteria for patentability of software and business methods substantially, allowing protection as long as the innovation “produces a useful, concrete and tangible result.” That broadened criteria led to an explosion of low-quality software patents, from Amazon’s 1-Click checkout system to Twitter’s pull-to-refresh feature on smartphones. The GAO estimates that more than half of all patents granted in recent years are software-related. Meanwhile, the Supreme Court continues to hold, as in Parker v. Flook, that computer software algorithms are not patentable, and has begun to push back against the Federal Circuit. In Bilski v. Kappos (2010), the Supreme Court once again held that abstract ideas are not patentable, and in Alice v. CLS (2014), it ruled that simply applying an abstract idea on a computer does not suffice to make the idea patent-eligible. It still is not clear what portion of existing software patents Alice invalidates, but it could be a significant one.
  • Supreme Court justices also recognize the Federal Circuit’s insubordination. In oral arguments in Carlsbad Technology v. HIF Bio (2009), Chief Justice John Roberts joked openly about it:
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  • The Opportunity of the Commons
  • As a result of the Federal Circuit’s pro-patent jurisprudence, our economy has been flooded with patents that would otherwise not have been granted. If more patents meant more innovation, then we would now be witnessing a spectacular economic boom. Instead, we have been living through what Tyler Cowen has called a Great Stagnation. The fact that patents have increased while growth has not is known in the literature as the “patent puzzle.” As Michele Boldrin and David Levine put it, “there is no empirical evidence that [patents] serve to increase innovation and productivity, unless productivity is identified with the number of patents awarded—which, as evidence shows, has no correlation with measured productivity.”
  • While more patents have not resulted in faster economic growth, they have resulted in more patent lawsuits.
  • Software patents have characteristics that make them particularly susceptible to litigation. Unlike, say, chemical patents, software patents are plagued by a problem of description. How does one describe a software innovation in such a way that anyone searching for it will easily find it? As Christina Mulligan and Tim Lee demonstrate, chemical formulas are indexable, meaning that as the number of chemical patents grow, it will still be easy to determine if a molecule has been patented. Since software innovations are not indexable, they estimate that “patent clearance by all firms would require many times more hours of legal research than all patent lawyers in the United States can bill in a year. The result has been an explosion of patent litigation.” Software and business method patents, estimate James Bessen and Michael Meurer, are 2 and 7 times more likely to be litigated than other patents, respectively (4 and 13 times more likely than chemical patents).
  • Software patents make excellent material for predatory litigation brought by what are often called “patent trolls.”
  • Trolls use asymmetries in the rules of litigation to legally extort millions of dollars from innocent parties. For example, one patent troll, Innovatio IP Ventures, LLP, acquired patents that implicated Wi-Fi. In 2011, it started sending demand letters to coffee shops and hotels that offered wireless Internet access, offering to settle for $2,500 per location. This amount was far in excess of the 9.56 cents per device that Innovatio was entitled to under the “Fair, Reasonable, and Non-Discriminatory” licensing promises attached to their portfolio, but it was also much less than the cost of trial, and therefore it was rational for firms to pay. Cisco stepped in and spent $13 million in legal fees on the case, and settled on behalf of their customers for 3.2 cents per device. Other manufacturers had already licensed Innovatio’s portfolio, but that didn’t stop their customers from being targeted by demand letters.
  • Litigation cost asymmetries are magnified by the fact that most patent trolls are nonpracticing entities. This means that when patent infringement trials get to the discovery phase, they will cost the troll very little—a firm that does not operate a business has very few records to produce.
  • But discovery can cost a medium or large company millions of dollars. Using an event study methodology, James Bessen and coauthors find that infringement lawsuits by nonpracticing entities cost publicly traded companies $83 billion per year in stock market capitalization, while plaintiffs gain less than 10 percent of that amount.
  • Software patents also reduce innovation in virtue of their cumulative nature and the fact that many of them are frequently inputs into a single product. Law professor Michael Heller coined the phrase “tragedy of the anticommons” to refer to a situation that mirrors the well-understood “tragedy of the commons.” Whereas in a commons, multiple parties have the right to use a resource but not to exclude others, in an anticommons, multiple parties have the right to exclude others, and no one is therefore able to make effective use of the resource. The tragedy of the commons results in overuse of the resource; the tragedy of the anticommons results in underuse.
  • In order to cope with the tragedy of the anticommons, we should carefully investigate the opportunity of  the commons. The late Nobelist Elinor Ostrom made a career of studying how communities manage shared resources without property rights. With appropriate self-governance institutions, Ostrom found again and again that a commons does not inevitably lead to tragedy—indeed, open access to shared resources can provide collective benefits that are not available under other forms of property management.
  • This suggests that—litigation costs aside—patent law could be reducing the stock of ideas rather than expanding it at current margins.
  • Advocates of extensive patent protection frequently treat the commons as a kind of wasteland. But considering the problems in our patent system, it is worth looking again at the role of well-tailored limits to property rights in some contexts. Just as we all benefit from real property rights that no longer extend to the highest heavens, we would also benefit if the scope of patent protection were more narrowly drawn.
  • Reforming the Patent System
  • This analysis raises some obvious possibilities for reforming the patent system. Diane Wood, Chief Judge of the 7th Circuit, has proposed ending the Federal Circuit’s exclusive jurisdiction over patent appeals—instead, the Federal Circuit could share jurisdiction with the other circuit courts. While this is a constructive suggestion, it still leaves the door open to the Federal Circuit playing “a leading role in shaping patent law,” which is the reason for its capture by patent interests. It would be better instead simply to abolish the Federal Circuit and return to the pre-1982 system, in which patents received no special treatment in appeals. This leaves open the possibility of circuit splits, which the creation of the Federal Circuit was designed to mitigate, but there are worse problems than circuit splits, and we now have them.
  • Another helpful reform would be for Congress to limit the scope of patentable subject matter via statute. New Zealand has done just that, declaring that software is “not an invention” to get around WTO obligations to respect intellectual property. Congress should do the same with respect to both software and business methods.
  • Finally, even if the above reforms were adopted, there would still be a need to address the asymmetries in patent litigation that result in predatory “troll” lawsuits. While the holding in Alice v. CLS arguably makes a wide swath of patents invalid, those patents could still be used in troll lawsuits because a ruling of invalidity for each individual patent might not occur until late in a trial. Current legislation in Congress addresses this class of problem by mandating disclosures, shifting fees in the case of spurious lawsuits, and enabling a review of the patent’s validity before a trial commences.
  • What matters for prosperity is not just property rights in the abstract, but good property-defining institutions. Without reform, our patent system will continue to favor special interests and forestall economic growth.
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    "Libertarians intuitively understand the case for patents: just as other property rights internalize the social benefits of improvements to land, automobile maintenance, or business investment, patents incentivize the creation of new inventions, which might otherwise be undersupplied. So far, so good. But it is important to recognize that the laws that govern property, intellectual or otherwise, do not arise out of thin air. Rather, our political institutions, with all their virtues and foibles, determine the contours of property-the exact bundle of rights that property holders possess, their extent, and their limitations. Outlining efficient property laws is not a trivial problem. The optimal contours of property are neither immutable nor knowable a priori. For example, in 1946, the U.S. Supreme Court reversed the age-old common law doctrine that extended real property rights to the heavens without limit. The advent of air travel made such extensive property rights no longer practicable-airlines would have had to cobble together a patchwork of easements, acre by acre, for every corridor through which they flew, and they would have opened themselves up to lawsuits every time their planes deviated from the expected path. The Court rightly abridged property rights in light of these empirical realities. In defining the limits of patent rights, our political institutions have gotten an analogous question badly wrong. A single, politically captured circuit court with exclusive jurisdiction over patent appeals has consistently expanded the scope of patentable subject matter. This expansion has resulted in an explosion of both patents and patent litigation, with destructive consequences. "
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    I added a comment to the page's article. Patents are antithetical to the precepts of Libertarianism and do not involve Natural Law rights. But I agree with the author that the Court of Appeals for the Federal Circuit should be abolished. It's a failed experiment.
Gonzalo San Gil, PhD.

How to Update Linux Kernel for Improved System Performance - 1 views

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    " The rate of development for the Linux kernel is unprecedented, with a new major release approximately every two to three months. Each release offers several new features and improvements that a lot of people could take advantage of to make their computing experience faster, more efficient, or better in other ways."
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