Skip to main content

Home/ Future of the Web/ Group items matching "solving" in title, tags, annotations or url

Group items matching
in title, tags, annotations or url

Sort By: Relevance | Date Filter: All | Bookmarks | Topics Simple Middle
Gary Edwards

Meteor: The NeXT Web - 0 views

  •  
    "Writing software is too hard and it takes too long. It's time for a new way to write software - especially application software, the user-facing software we use every day to talk to people and keep track of things. This new way should be radically simple. It should make it possible to build a prototype in a day or two, and a real production app in a few weeks. It should make everyday things easy, even when those everyday things involve hundreds of servers, millions of users, and integration with dozens of other systems. It should be built on collaboration, specialization, and division of labor, and it should be accessible to the maximum number of people. Today, there's a chance to create this new way - to build a new platform for cloud applications that will become as ubiquitous as previous platforms such as Unix, HTTP, and the relational database. It is not a small project. There are many big problems to tackle, such as: How do we transition the web from a "dumb terminal" model that is based on serving HTML, to a client/server model that is based on exchanging data? How do we design software to run in a radically distributed environment, where even everyday database apps are spread over multiple data centers and hundreds of intelligent client devices, and must integrate with other software at dozens of other organizations? How do we prepare for a world where most web APIs will be push-based (realtime), rather than polling-driven? In the face of escalating complexity, how can we simplify software engineering so that more people can do it? How will software developers collaborate and share components in this new world? Meteor is our audacious attempt to solve all of these big problems, at least for a certain large class of everyday applications. We think that success will come from hard work, respect for history and "classically beautiful" engineering patterns, and a philosophy of generally open and collaborative development. " .............. "It is not a
  •  
    "How do we transition the web from a "dumb terminal" model that is based on serving HTML, to a client/server model that is based on exchanging data?" From a litigation aspect, the best bet I know of is antitrust litigation against the W3C and the WHATWG Working Group for implementing a non-interoperable specification. See e.g., Commission v. Microsoft, No. T-167/08, European Community Court of First Instance (Grand Chamber Judgment of 17 September, 2007), para. 230, 374, 421, http://preview.tinyurl.com/chsdb4w (rejecting Microsoft's argument that "interoperability" has a 1-way rather than 2-way meaning; information technology specifications must be disclosed with sufficient specificity to place competitors on an "equal footing" in regard to interoperability; "the 12th recital to Directive 91/250 defines interoperability as 'the ability to exchange information and mutually to use the information which has been exchanged'"). Note that the Microsoft case was prosecuted on the E.U.'s "abuse of market power" law that corresponds to the U.S. Sherman Act § 2 (monopolies). But undoubtedly the E.U. courts would apply the same standard to "agreements among undertakings" in restraint of trade, counterpart to the Sherman Act's § 1 (conspiracies in restraint of trade), the branch that applies to development of voluntary standards by competitors. But better to innovate and obsolete HTML, I think. DG Competition and the DoJ won't prosecute such cases soon. For example, Obama ran for office promising to "reinvigorate antitrust enforcement" but his DoJ has yet to file its first antitrust case against a big company. Nb., virtually the same definition of interoperability announced by the Court of First Instance is provided by ISO/IEC JTC-1 Directives, annex I ("eye"), which is applicable to all international standards in the IT sector: "... interoperability is understood to be the ability of two or more IT systems to exchange information at one or more standardised interfaces
Paul Merrell

For sale: Systems that can secretly track where cellphone users go around the globe - The Washington Post - 0 views

  • Makers of surveillance systems are offering governments across the world the ability to track the movements of almost anybody who carries a cellphone, whether they are blocks away or on another continent. The technology works by exploiting an essential fact of all cellular networks: They must keep detailed, up-to-the-minute records on the locations of their customers to deliver calls and other services to them. Surveillance systems are secretly collecting these records to map people’s travels over days, weeks or longer, according to company marketing documents and experts in surveillance technology.
  • The world’s most powerful intelligence services, such as the National Security Agency and Britain’s GCHQ, long have used cellphone data to track targets around the globe. But experts say these new systems allow less technically advanced governments to track people in any nation — including the United States — with relative ease and precision.
  • It is unclear which governments have acquired these tracking systems, but one industry official, speaking on the condition of anonymity to share sensitive trade information, said that dozens of countries have bought or leased such technology in recent years. This rapid spread underscores how the burgeoning, multibillion-dollar surveillance industry makes advanced spying technology available worldwide. “Any tin-pot dictator with enough money to buy the system could spy on people anywhere in the world,” said Eric King, deputy director of Privacy International, a London-based activist group that warns about the abuse of surveillance technology. “This is a huge problem.”
  • ...9 more annotations...
  • Security experts say hackers, sophisticated criminal gangs and nations under sanctions also could use this tracking technology, which operates in a legal gray area. It is illegal in many countries to track people without their consent or a court order, but there is no clear international legal standard for secretly tracking people in other countries, nor is there a global entity with the authority to police potential abuses.
  • tracking systems that access carrier location databases are unusual in their ability to allow virtually any government to track people across borders, with any type of cellular phone, across a wide range of carriers — without the carriers even knowing. These systems also can be used in tandem with other technologies that, when the general location of a person is already known, can intercept calls and Internet traffic, activate microphones, and access contact lists, photos and other documents. Companies that make and sell surveillance technology seek to limit public information about their systems’ capabilities and client lists, typically marketing their technology directly to law enforcement and intelligence services through international conferences that are closed to journalists and other members of the public.
  • Yet marketing documents obtained by The Washington Post show that companies are offering powerful systems that are designed to evade detection while plotting movements of surveillance targets on computerized maps. The documents claim system success rates of more than 70 percent. A 24-page marketing brochure for SkyLock, a cellular tracking system sold by Verint, a maker of analytics systems based in Melville, N.Y., carries the subtitle “Locate. Track. Manipulate.” The document, dated January 2013 and labeled “Commercially Confidential,” says the system offers government agencies “a cost-effective, new approach to obtaining global location information concerning known targets.”
  • (Privacy International has collected several marketing brochures on cellular surveillance systems, including one that refers briefly to SkyLock, and posted them on its Web site. The 24-page SkyLock brochure and other material was independently provided to The Post by people concerned that such systems are being abused.)
  • Verint, which also has substantial operations in Israel, declined to comment for this story. It says in the marketing brochure that it does not use SkyLock against U.S. or Israeli phones, which could violate national laws. But several similar systems, marketed in recent years by companies based in Switzerland, Ukraine and elsewhere, likely are free of such limitations.
  • The tracking technology takes advantage of the lax security of SS7, a global network that cellular carriers use to communicate with one another when directing calls, texts and Internet data. The system was built decades ago, when only a few large carriers controlled the bulk of global phone traffic. Now thousands of companies use SS7 to provide services to billions of phones and other mobile devices, security experts say. All of these companies have access to the network and can send queries to other companies on the SS7 system, making the entire network more vulnerable to exploitation. Any one of these companies could share its access with others, including makers of surveillance systems.
  • Companies that market SS7 tracking systems recommend using them in tandem with “IMSI catchers,” increasingly common surveillance devices that use cellular signals collected directly from the air to intercept calls and Internet traffic, send fake texts, install spyware on a phone, and determine precise locations. IMSI catchers — also known by one popular trade name, StingRay — can home in on somebody a mile or two away but are useless if a target’s general location is not known. SS7 tracking systems solve that problem by locating the general area of a target so that IMSI catchers can be deployed effectively. (The term “IMSI” refers to a unique identifying code on a cellular phone.)
  • Verint can install SkyLock on the networks of cellular carriers if they are cooperative — something that telecommunications experts say is common in countries where carriers have close relationships with their national governments. Verint also has its own “worldwide SS7 hubs” that “are spread in various locations around the world,” says the brochure. It does not list prices for the services, though it says that Verint charges more for the ability to track targets in many far-flung countries, as opposed to only a few nearby ones. Among the most appealing features of the system, the brochure says, is its ability to sidestep the cellular operators that sometimes protect their users’ personal information by refusing government requests or insisting on formal court orders before releasing information.
  • Another company, Defentek, markets a similar system called Infiltrator Global Real-Time Tracking System on its Web site, claiming to “locate and track any phone number in the world.” The site adds: “It is a strategic solution that infiltrates and is undetected and unknown by the network, carrier, or the target.”
  •  
    The Verint company has very close ties to the Iraeli government. Its former parent company Comverse, was heavily subsidized by Israel and the bulk of its manufacturing and code development was done in Israel. See https://en.wikipedia.org/wiki/Comverse_Technology "In December 2001, a Fox News report raised the concern that wiretapping equipment provided by Comverse Infosys to the U.S. government for electronic eavesdropping may have been vulnerable, as these systems allegedly had a back door through which the wiretaps could be intercepted by unauthorized parties.[55] Fox News reporter Carl Cameron said there was no reason to believe the Israeli government was implicated, but that "a classified top-secret investigation is underway".[55] A March 2002 story by Le Monde recapped the Fox report and concluded: "Comverse is suspected of having introduced into its systems of the 'catch gates' in order to 'intercept, record and store' these wire-taps. This hardware would render the 'listener' himself 'listened to'."[56] Fox News did not pursue the allegations, and in the years since, there have been no legal or commercial actions of any type taken against Comverse by the FBI or any other branch of the US Government related to data access and security issues. While no real evidence has been presented against Comverse or Verint, the allegations have become a favorite topic of conspiracy theorists.[57] By 2005, the company had $959 million in sales and employed over 5,000 people, of whom about half were located in Israel.[16]" Verint is also the company that got the Dept. of Homeland Security contract to provide and install an electronic and video surveillance system across the entire U.S. border with Mexico.  One need not be much of a conspiracy theorist to have concerns about Verint's likely interactions and data sharing with the NSA and its Israeli equivalent, Unit 8200. 
Gary Edwards

XML Production Workflows? Start with the Web and XHTML - 0 views

  • Challenges: Some Ugly Truths The challenges of building—and living with—an XML workflow are clear enough. The return on investment is a long-term proposition. Regardless of the benefits XML may provide, the starting reality is that it represents a very different way of doing things than the one we are familiar with. The Word Processing and Desktop Publishing paradigm, based on the promise of onscreen, WYSIWYG layout, is so dominant as to be practically inescapable. It has proven really hard to get from here to there, no matter how attractive XML might be on paper. A considerable amount of organizational effort and labour must be expended up front in order to realize the benefits. This is why XML is often referred to as an “investment”: you sink a bunch of time and money up front, and realize the benefits—greater flexibility, multiple output options, searching and indexing, and general futureproofing—later, over the long haul. It is not a short-term return proposition. And, of course, the returns you are able to realize from your XML investment are commensurate with what you put in up front: fine-grained, semantically rich tagging is going to give you more potential for searchability and recombination than a looser, more general-purpose approach, but it sure costs more. For instance, the Text Encoding Initiative (TEI) is the grand example of pouring enormous amounts of energy into the up-front tagging, with a very open-ended set of possibilities down the line. TEI helpfully defines a level to which most of us do not have to aspire.[5] But understanding this on a theoretical level is only part of the challenge. There are many practical issues that must be addressed. Software and labour are two of the most critical. How do you get the content into XML in the first place? Unfortunately, despite two decades of people doing SGML and XML, this remains an ugly question.
  • Practical Challenges In 2009, there is still no truly likeable—let alone standard—editing and authoring software for XML. For many (myself included), the high-water mark here was Adobe’s FrameMaker, substantially developed by the late 1990s. With no substantial market for it, it is relegated today mostly to the tech writing industry, unavailable for the Mac, and just far enough afield from the kinds of tools we use today that its adoption represents a significant hurdle. And FrameMaker was the best of the breed; most of the other software in decent circulation are programmers’ tools—the sort of things that, as Michael Tamblyn pointed out, encourage editors to drink at their desks. The labour question represents a stumbling block as well. The skill-sets and mind-sets that effective XML editors need have limited overlap with those needed by literary and more traditional production editors. The need to think of documents as machine-readable databases is not something that comes naturally to folks steeped in literary culture. In combination with the sheer time and effort that rich tagging requires, many publishers simply outsource the tagging to India, drawing a division of labour that spans oceans, to put it mildly. Once you have XML content, then what do you do with it? How do you produce books from it? Presumably, you need to be able to produce print output as well as digital formats. But while the latter are new enough to be generally XML-friendly (e-book formats being largely XML based, for instance), there aren’t any straightforward, standard ways of moving XML content into the kind of print production environments we are used to seeing. This isn’t to say that there aren’t ways of getting print—even very high-quality print—output from XML, just that most of them involve replacing your prepress staff with Java programmers.
  • Why does this have to be so hard? It’s not that XML is new, or immature, or untested. Remember that the basics have been around, and in production, since the early 1980s at least. But we have to take account of a substantial and long-running cultural disconnect between traditional editorial and production processes (the ones most of us know intimately) and the ways computing people have approached things. Interestingly, this cultural divide looked rather different in the 1970s, when publishers were looking at how to move to digital typesetting. Back then, printers and software developers could speak the same language. But that was before the ascendancy of the Desktop Publishing paradigm, which computerized the publishing industry while at the same time isolating it culturally. Those of us who learned how to do things the Quark way or the Adobe way had little in common with people who programmed databases or document-management systems. Desktop publishing technology isolated us in a smooth, self-contained universe of toolbars, grid lines, and laser proofs. So, now that the reasons to get with this program, XML, loom large, how can we bridge this long-standing divide?
  • ...44 more annotations...
  • Using the Web as a Production Platform The answer, I think, is right in front of you. The bridge is the Web, a technology and platform that is fundamentally based on XML, and which many publishers are by now comfortably familiar with. Perhaps not entirely comfortably, but at least most publishers are already working with the Web; they already either know or have on staff people who understand it and can work with it. The foundation of our argument is this: rather than looking at jumping to XML in its full, industrial complexity, which seems to be what the O'Reilly-backed StartWithXML initiative[6] is suggesting, publishers instead leverage existing tools and technologies—starting with the Web—as a means of getting XML workflows in place. This means making small investments and working with known tools rather than spending tens of thousands of dollars on XML software and rarefied consultants. It means re-thinking how the existing pieces of the production toolchain fit together; re-thinking the existing roles of software components already in use. It means, fundamentally, taking the Web seriously as a content platform, rather than thinking of it as something you need to get content out to, somehow. If nothing else, the Web represents an opportunity to think about editorial and production from outside the shrink-wrapped Desktop Publishing paradigm.
  • Is the Web made of Real XML? At this point some predictable objections can be heard: wait a moment, the Web isn’t really made out of XML; the HTML that makes up most of the Web is at best the bastard child of SGML, and it is far too flaky/unstructured/underpowered to be taken seriously. We counter by arguing that although HTML on the Web exists in a staggering array of different incarnations, and that the majority of it is indeed an unstructured mess, this does not undermine the general principle that basic, ubiquitous Web technologies can make a solid platform for content management, editorial process, and production workflow.
  • With the advent of a published XML standard in the late 1990s came the W3C’s adoption of XHTML: the realization of the Web’s native content markup as a proper XML document type. Today, its acceptance is almost ubiquitous, even while the majority of actual content out there may not be strictly conforming. The more important point is that most contemporary Web software, from browsers to authoring tools to content management systems (from blogs to enterprise systems), are capable of working with clean, valid XHTML. Or, to put the argument the other way around, clean, valid XHTML content plays absolutely seamlessly with everything else on the Web.[7]
  • The objection which follows, then, will be that even if we grant that XHTML is a real XML document type, that it is underpowered for “serious” content because it is almost entirely presentation (formatting) oriented; it lacks any semantic depth. In XHTML, a paragraph is a paragraph is a paragraph, as opposed to a section or an epigraph or a summary.
  • n contrast, more “serious” XML document types like DocBook[8] or DITA-derived schemas[9] are capable of making semantic distinctions about content chunks at a fine level of granularity and with a high degree of specificity.
  • So there is an argument for recalling the 80:20 rule here. If XHTML can provide 80% of the value with just 20% of the investment, then what exactly is the business case for spending the other 80% to achieve that last 20% of value? We suspect the ratio is actually quite a bit steeper than 80:20 for most publishers.
  • Furthermore, just to get technical for a moment, XHTML is extensible in a fairly straightforward way, through the common “class” attribute on each element. Web developers have long leveraged this kind of extensibility in the elaboration of “microformats” for semantic-web applications.[10] There is no reason why publishers shouldn’t think to use XHTML’s simple extensibility in a similar way for their own ends.
  • XHTML, on the other hand, is supported by a vast array of quotidian software, starting with the ubiquitous Web browser. For this very reason, XHTML is in fact employed as a component part of several more specialized document types (ONIX and ePub among them).
  • Why re-invent a general-purpose prose representation when XHTML already does the job?
  • It is worth pausing for a moment to consider the role of XHTML in the ePub standard for ebook content. An ePub file is, anatomically, a simply disguised zip archive. Inside the zip archive are a few standard component parts: there are specialized files that declare metadata about the book, and about the format of the book. And then there is the book’s content, represented in XHTML. An ePub book is a Web page in a wrapper.
  • To sum up the general argument: the Web as it already exists presents incredible value to publishers, as a platform for doing XML content management with existing (and often free) tools, and without having to go blindly into the unknown. At this point, we can offer a few design guidelines: prefer existing and/or ubiquitous tools over specialized ones wherever possible; prefer free software over proprietary systems where possible; prefer simple tools controlled and coordinated by human beings over fully automated (and therefore complex) systems; play to our strengths: use Web software for storing and managing content, use layout software for layout, and keep editors and production people in charge of their own domains.
  • Putting the Pieces Together: A Prototype
  • At the SFU Master of Publishing Program, we have been chipping away at this general line of thinking for a few years. Over that time, Web content management systems have been getting more and more sophisticated, all the while getting more streamlined and easier to use. (NB: if you have a blog, you have a Web content management system.) The Web is beginning to be recognized as a writing and editing environment used by millions of people. And the ways in which content is represented, stored, and exchanged online have become increasingly robust and standardized.
  • The missing piece of the puzzle has been print production: how can we move content from its malleable, fluid form on line into the kind of high-quality print production environments we’ve come to expect after two decades of Desktop Publishing?
  • Anyone who has tried to print Web content knows that the existing methods leave much to be desired (hyphenation and justification, for starters). In the absence of decent tools for this, most publishers quite naturally think of producing the print content first, and then think about how to get material onto the Web for various purposes. So we tend to export from Word, or from Adobe, as something of an afterthought.
  • While this sort of works, it isn’t elegant, and it completely ignores the considerable advantages of Web-based content management.
  • Content managed online is stored in one central location, accessible simultaneously to everyone in your firm, available anywhere you have an Internet connection, and usually exists in a much more fluid format than Word files. If only we could manage the editorial flow online, and then go to print formats at the end, instead of the other way around. At SFU, we made several attempts to make this work by way of the supposed “XML import” capabilities of various Desktop Publishing tools, without much success.[12]
  • In the winter of 2009, Adobe solved this part of the problem for us with the introduction of its Creative Suite 4. What CS4 offers is the option of a complete XML representation of an InDesign document: what Adobe calls IDML (InDesign Markup Language).
  • The IDML file format is—like ePub—a simply disguised zip archive that, when unpacked, reveals a cluster of XML files that represent all the different facets of an InDesign document: layout spreads, master pages, defined styles, colours, and of course, the content.
  • IDML is a well thought-out XML standard that achieves two very different goals simultaneously: it preserves all of the information that InDesign needs to do what it does; and it is broken up in a way that makes it possible for mere mortals (or at least our Master of Publishing students) to work with it.
  • What this represented to us in concrete terms was the ability to take Web-based content and move it into InDesign in a straightforward way, thus bridging Web and print production environments using existing tools and skillsets, with a little added help from free software.
  • We would take clean XHTML content, transform it to IDML-marked content, and merge that with nicely designed templates in InDesign.
  • The result is an almost push-button publication workflow, which results in a nice, familiar InDesign document that fits straight into the way publishers actually do production.
  • Tracing the steps To begin with, we worked backwards, moving the book content back to clean XHTML.
  • The simplest method for this conversion—and if you want to create Web content, this is an excellent route—was to use Adobe’s “Export to Digital Editions” option, which creates an ePub file.
  • Recall that ePub is just XHTML in a wrapper, so within the ePub file was a relatively clean XHTML document. It was somewhat cleaner (that is, the XHTML tagging was simpler and less cluttered) than InDesign’s other Web-oriented exports, possibly because Digital Editions is a well understood target, compared with somebody’s website.
  • In order to achieve our target of clean XHTML, we needed to do some editing; the XHTML produced by InDesign’s “Digital Editions” export was presentation-oriented. For instance, bulleted list items were tagged as paragraphs, with a class attribute identifying them as list items. Using the search-and-replace function, we converted such structures to proper XHTML list and list-item elements. Our guiding principle was to make the XHTML as straightforward as possible, not dependent on any particular software to interpret it.
  • We broke the book’s content into individual chapter files; each chapter could then carry its own basic metadata, and the pages conveniently fit our Web content management system (which is actually just a wiki). We assembled a dynamically generated table of contents for the 12 chapters, and created a cover page. Essentially, the book was entirely Web-based at this point.
  • When the book chapters are viewed online, they are formatted via a CSS2 stylesheet that defines a main column for content as well as dedicating screen real estate for navigational elements. We then created a second template to render the content for exporting; this was essentially a bare-bones version of the book with no navigation and minimal styling. Pages (or even the entire book) can be exported (via the “Save As...” function in a Web browser) for use in either print production or ebook conversion. At this point, we required no skills beyond those of any decent Web designer.
  • Integrating with CS4 for Print Adobe’s IDML language defines elements specific to InDesign; there is nothing in the language that looks remotely like XHTML. So a mechanical transformation step is needed to convert the XHTML content into something InDesign can use. This is not as hard as it might seem.
  • Both XHTML and IDML are composed of straightforward, well-documented structures, and so transformation from one to the other is, as they say, “trivial.” We chose to use XSLT (Extensible Stylesheet Language Transforms) to do the work. XSLT is part of the overall XML specification, and thus is very well supported in a wide variety of tools. Our prototype used a scripting engine called xsltproc, a nearly ubiquitous piece of software that we found already installed as part of Mac OS X (contemporary Linux distributions also have this as a standard tool), though any XSLT processor would work.
  • In other words, we don’t need to buy InCopy, because we just replaced it with the Web. Our wiki is now plugged directly into our InDesign layout. It even automatically updates the InDesign document when the content changes. Credit is due at this point to Adobe: this integration is possible because of the open file format in the Creative Suite 4.
  • We wrote an XSLT transformation script[18] that converted the XHTML content from the Web into an InCopy ICML file. The script itself is less than 500 lines long, and was written and debugged over a period of about a week by amateurs (again, the people named at the start of this article). The script runs in a couple of seconds, and the resulting .icml file can then be “placed” directly into an InDesign template. The ICML file references an InDesign stylesheet, so the template file can be set up with a house-styled layout, master pages, and stylesheet definitions for paragraphs and character ranges.
  • The result is very simple and easy to use. Our demonstration requires that a production editor run the XSLT transformation script manually, but there is no reason why this couldn’t be built directly into the Web content management system so that exporting the content to print ran the transformation automatically. The resulting file would then be “placed” in InDesign and proofed.
  • It should be noted that the Book Publishing 1 proof-of-concept was artificially complex; we began with a book laid out in InDesign and ended up with a look-alike book laid out in InDesign. But next time—for instance, when we publish Book Publishing 2—we can begin the process with the content on the Web, and keep it there throughout the editorial process. The book’s content could potentially be written and edited entirely online, as Web content, and then automatically poured into an InDesign template at proof time. “Just in time,” as they say. This represents an entirely new way of thinking of book production. With a Web-first orientation, it makes little sense to think of the book as “in print” or “out of print”—the book is simply available, in the first place online; in the second place in derivative digital formats; and third, but really not much more difficult, in print-ready format, via the usual InDesign CS print production system publishers are already familiar with.
  • Creating Ebook Files Creating electronic versions from XHTML source is vastly simpler than trying to generate these out of the existing print process. The ePub version is extremely easy to generate; so is online marketing copy or excerpts for the Web, since the content begins life Web-native.
  • Since an ePub file is essentially XHTML content in a special wrapper, all that is required is that we properly “wrap” our XHTML content. Ideally, the content in an ePub file is broken into chapters (as ours was) and a table of contents file is generated in order to allow easy navigation within an ebook reader. We used Julian Smart’s free tool eCub[19] to simply and automatically generate the ePub wrapper and the table of contents. The only custom development we did was to create a CSS stylesheet for the ebook so that headings and paragraph indents looked the way we wanted. Starting with XHTML content, creating ePub is almost too easy.
  • Such a workflow—beginning with the Web and exporting to print—is surely more in line with the way we will do business in the 21st century, where the Web is the default platform for reaching audiences, developing content, and putting the pieces together. It is time, we suggest, for publishers to re-orient their operations and start with the Web.
  • Our project demonstrates that Web technologies are indeed good enough to use in an XML-oriented workflow; more specialized and expensive options are not necessarily required. For massive-scale enterprise publishing, this approach may not offer enough flexibility, and the challenge of adding and extracting extra semantic richness may prove more trouble than it's worth.
  • But for smaller firms who are looking at the straightforward benefits of XML-based processes—single source publishing, online content and workflow management, open and accessible archive formats, greater online discoverability—here is a way forward.
  • Rather than a public-facing website, our system relies on the Web as a content management platform—of course a public face could easily be added.
  • The final piece of our puzzle, the ability to integrate print production, was made possible by Adobe's release of InDesign with an open XML file format. Since the Web's XHTML is also XML, is can be easily and confidently transformed to the InDesign format.
  • today, we are able to put the process together using nothing but standard, relatively ubiquitous Web tools: the Web itself as an editing and content management environment, standard Web scripting tools for the conversion process, and the well-documented IDML file format to integrate the layout tool.
  • Using the Web as a Production Platform
  •  
    I was looking for an answer to a problem Marbux had presented, and found this interesting article.  The issue was that of the upcoming conversion of the Note Case Pro (NCP) layout engine to the WebKit layout engine, and what to do about the NCP document format. My initial reaction was to encode the legacy NCP document format in XML, and run an XSLT to a universal pivot format like TEI-XML.  From there, the TEI-XML community would provide all the XSLT transformation routines for conversion to ODF, OOXML, XHTML, ePUB and HTML/CSS. Researching the problems one might encounter with this approach, I found this article.  Fascinating stuff. My take away is that TEI-XML would not be as effective a "universal pivot point" as XHTML.  Or perhaps, if NCP really wants to get aggressive; IDML - InDesign Markup Language. The important point though is that XHTML is a browser specific version of XML, and compatible with the Web Kit layout engine Miro wants to move NCP to. The concept of encoding an existing application-specific format in XML has been around since 1998, when XML was first introduced as a W3C standard, a "structured" subset of SGML. (HTML is also a subset of SGML). The multiplatform StarOffice productivity suite became "OpenOffice" when Sun purchased the company in 1998, and open sourced the code base. The OpenOffice developer team came out with a XML encoding of their existing document formats in 2000. The application specific encoding became an OASIS document format standard proposal in 2002 - also known as ODF. Microsoft followed OpenOffice with a XML encoding of their application-specific binary document formats, known as OOXML. Encoding the existing NCP format in XML, specifically targeting XHTML as a "universal pivot point", would put the NCP Outliner in the Web editor category, without breaking backwards compatibility. The trick is in the XSLT conversion process. But I think that is something much easier to handle then trying to
  •  
    I was looking for an answer to a problem Marbux had presented, and found this interesting article.  The issue was that of the upcoming conversion of the Note Case Pro (NCP) layout engine to the WebKit layout engine, and what to do about the NCP document format. My initial reaction was to encode the legacy NCP document format in XML, and run an XSLT to a universal pivot format like TEI-XML.  From there, the TEI-XML community would provide all the XSLT transformation routines for conversion to ODF, OOXML, XHTML, ePUB and HTML/CSS. Researching the problems one might encounter with this approach, I found this article.  Fascinating stuff. My take away is that TEI-XML would not be as effective a "universal pivot point" as XHTML.  Or perhaps, if NCP really wants to get aggressive; IDML - InDesign Markup Language. The important point though is that XHTML is a browser specific version of XML, and compatible with the Web Kit layout engine Miro wants to move NCP to. The concept of encoding an existing application-specific format in XML has been around since 1998, when XML was first introduced as a W3C standard, a "structured" subset of SGML. (HTML is also a subset of SGML). The multiplatform StarOffice productivity suite became "OpenOffice" when Sun purchased the company in 1998, and open sourced the code base. The OpenOffice developer team came out with a XML encoding of their existing document formats in 2000. The application specific encoding became an OASIS document format standard proposal in 2002 - also known as ODF. Microsoft followed OpenOffice with a XML encoding of their application-specific binary document formats, known as OOXML. Encoding the existing NCP format in XML, specifically targeting XHTML as a "universal pivot point", would put the NCP Outliner in the Web editor category, without breaking backwards compatibility. The trick is in the XSLT conversion process. But I think that is something much easier to handle then trying to
Gonzalo San Gil, PhD.

Solving The Bandwidth Problem - Forbes - 0 views

  •  
    "Ed Sperling, None 1/04/2010 @ 6:00AM Solving The Bandwidth Problem For every giant step forward in technology there is a bottleneck that needs to be solved. It isn't exactly a step backward, but it does slow down the rate of progress."
Gary Edwards

Microsoft Office Sharepoint Server: a next generation of deeper, wider content silos? | Collaboration 2.0 | ZDNet.com - 0 views

  • Some of the next generation collaboration platforms are succeeding precisely because they are silo bunker busters. The problem of dozens of digital filing cabinets full of thousands of iterations of hard to find documents within enterprise environments is arguably being solved by the new generation of nimble project contextual tools. Taxonomies and tagging, threaded discussion, wikis and other ‘Enterprise 2.0‘ tools are an alternative solution to the problem of generating mountains of hard to find silo’d information and associated email. Microsoft have a fabulously lucrative franchise with their Office suite of Word, PowerPoint, Excel et al desktop products. A huge issue in the enterprise space is blizzards of email containing links to documents created with these products on shared drives, or iterations actually attached to the mail messages. Add mobile users on laptops with intermittent connection and you also have serious synch headaches.
  •  
    Discussion about the impact SharePoint is having: based on Boston 2008 Enterprise 2.0 Conference
  •  
    Most quality online stores. Know whether you are a trusted online retailer in the world. Whatever we can buy very good quality. and do not hesitate. Everything is very high quality. Including clothes, accessories, bags, cups. Highly recommended. This is one of the trusted online store in the world. View now www.retrostyler.com
Gary Edwards

The new UI wars: Why there's no Flash on iPhone 2.0 « counternotions - 0 views

  • - publishers of Flash apps have to port their apps to native Web apps if they want to run inside a Web browser going forward because the Web has moved off the PC, you can’t accessorize it with PC software anymore, WebKit is so small and light and cross-platform that it is the plug-in now, inside iPhone, iPod, Nokia, Android, iTunes and other Mac and Windows apps - publishers of Flash video have to deploy MPEG-4 H.264/AAC if they want to run inside an audio-video player (on any device) going forward, the decoder chips for this are already in EVERYTHING, from iPod to Blu-Ray to NVIDIA GPU’s Most of the world has already done both of the above, including Google and Apple. This is not the beginning of the end for Flash, it is the end of the end.
  • Notice he doesn’t say at all that Flash is running natively on the ARM CPU inside the iPhone. And once again, as I point out in the article above, technical problems may be solved by Adobe, but cross-platform runtime compatibility and multi-touch UI frameworks remain as serious impediments.
  • the direction Apple is taking in WebKit with canvas, downloadable fonts, SVG, CSS animation, CSS transformations, faster JavaScript, HTML5 audio/video embedding, exposure of multi-touch to JS and so on is precisely to create an open source alternative to the Flash runtime engine, without having to download a proprietary plugin:
  •  
    this article takes the RiA discussion to an entirely new level - the battle between Apple, Adobe and Microsoft to control the future user interface (UI). Adobe Flash extends the aging WiMP model, trying to create a "UI Convergence" across many platforms through the Flash RiA. With iPhone, Apple introduces the patented "gestures UI", running off the WebKit RiA. Microsoft presumably is copying the Flash RiA with the XAML rich WPF Silverlight RiA. Unfortunately, counternotions doe snot cover Silverlight. This incredible discussion is limited to Adobe and Apple.
  •  
    Most quality online stores. Know whether you are a trusted online retailer in the world. Whatever we can buy very good quality. and do not hesitate. Everything is very high quality. Including clothes, accessories, bags, cups. Highly recommended. This is one of the trusted online store in the world. View now www.retrostyler.com
Gary Edwards

Skynet rising: Google acquires 512-qubit quantum computer; NSA surveillance to be turned over to AI machines Alex Jones' Infowars: There's a war on for your mind! - 0 views

  •  
    "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
  •  
    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
Paul Merrell

Smartphone innovation: Where we're going next (Smartphones Unlocked) | Dialed In - CNET Blogs - 0 views

  • With his shaggy, sandy blond hair and a 5-o'clock shadow, Mark Rolston, the creative director for Frog Design, has studied technology for the better part of two decades. As he sees it, smartphones are just about out of evolutionary advances. Sure, form factors and materials might alter as manufacturers grasp for differentiating design, but in terms of innovative leaps, Rolston says, "we're at the end of gross innovation for smartphones." That isn't to say smartphones are dead or obsolete. Just the contrary. As Rolston and other future thinkers who study the mobile space conclude, smartphones will become increasingly impactful in interacting with our surrounding world, but more as one smaller piece of a much large, interconnected puzzle abuzz with data transfer and information. We'll certainly see more crazy camera software and NFC features everywhere, but there's much, much more to look forward to besides.
  • You may have never given two thoughts to the sensors that come on you smartphone. They don't mind. They're still there anyway, computing data on your phone's movement and speed, rotation, and lighting conditions. These under-appreciated components -- the gyroscope, accelerometer, magnetometer, and so forth -- are starting to get more friends in the neighborhood. Samsung, for instance, slipped pressure, temperature, and humidity sniffers into the Galaxy S4. They may not be the sexiest feature in your phone, but in the future, sensors like accelerometers will be able to collect and report much more detailed information.
  • If you've made it here, you'll start seeing a general theme: in the forward-looking smartphone environment of our future, our devices are anything but isolated. Instead, smartphones will come with more components and communications tools to interact more than ever before with people and other devices. We already see some communication with Wi-Fi Direct, Bluetooth, and NFC communications protocols, plus newcomers like the Miracast standard. In short, the kind of innovation we see in the mobile space may have more to do with getting your smartphone to communicate with other computing devices in the ecosystem than it will have with how many megapixels or ultrapixels your camera lens possesses or what kind of leather was used to finish the chassis.
  • ...5 more annotations...
  • An extension of the smartphone as medical device is what Ideo's Blakely terms "appcessories," a set of highly specialized peripheral software that fulfills very targeted needs, stuff that most people wouldn't want their everyday phone.
  • . Let's say you're in a bar or at a conference and you want to meet people, he says. Extremely precise sensors track exactly where you are indoors. Point the phone toward a person in the crowd and her pertinent information pops onto the screen: who she is, what she does, and maybe some backgrou
  • Into the coffee shop of tomorrow walks a techie of tomorrow. He or she is decked out in wearable tech from head to toe -- the Bluetooth earring or ear cuff tucked into a lobe; Google glasses beaming up maps and directions; a smartwatch that takes your vitals, deals with mobile payments, and serves as a console for the most important functions. Then there's the smartphone slipped into the pocket for more complicated tasks or to serve as a "big" screen, and the smart shoes that calculate distance, underfoot conditions, and analyze your gait. Your smartphone is still there, still essential for communicating with your environment, but it becomes only one device in a collection of other, even more personal or convenient gadgets, that solve some of the same sorts of problems in different or complimentary ways.
  • The scenario above isn't all that outlandish, especially given the rise of smartwatches, which still have a ways to go before becoming truly well-rounded devices. Crazy tech that interacts with your body has been in development for some time. To illustrate the point, Frog's Rolston brought a pair of Necomimi Brainwave Cat Ears to our interview. The fuzzy "ears," which have been on sale for about two years, sit atop a headband. A sensor protrudes from the band onto your forehead and a dangling clip closes the circuit when you attach it to your earlobe. The cat ears swivel and twitch in concert with your brain waves, a bizarre and surprisingly giddy sensation. Necomimi's contraption isn't particularly useful or flattering, but its brain-reading sensors underscore the kind of close, personal interaction that can occur when tech "talks." Paired with a smartphone app, what could this contraption share about our brains when we wake or sleep?
  • The point is this: smartphones aren't going anywhere. But instead of a focusing on the world within the phone's screen, the smartphone will be tuned more than ever before to the world around you.
thinkahol *

Citizen Scientist 2.0 - 4 views

  •  
    What does the future of science look like? About a year ago, I was asked this question. My response then was: Transdisciplinary collaboration. Researchers from a variety of domains-biology, philosophy, psychology, neuroscience, economics, law-all coming together, using inputs from each specialized area to generate the best comprehensive solutions to society's more persistent problems. Indeed, it appears as if I was on the right track, as more and more academic research departments, as well as industries, are seeing the value in this type of partnership. Now let's take this a step further. Not only do I think we will be relying on inputs from researchers and experts from multiple domains to solve scientific problems, but I see society itself getting involved on a much more significant level as well. And I don't just mean science awareness. I'm talking about actually participating in the research itself. Essentially, I see a huge boom in the future for Citizen Science.
Joelle Nebbe-Mornod

Intro - flattr.com - 4 views

  •  
    Flattr solves this issue. When you're registered to flattr, you pay a small monthly fee. You set the amount yourself. At the end of the month, that fee is divided between all the things you flattered. You're always logged in to the account. That means that giving someone some flattr-love is just a button away. And you should! Clicking one more button doesn't add to your fee, it just divides the fee between more people! Flattr tries to encourage people to share. Not only pieces of content, but also some money to support the people who created them. With love! Flattr has no different user types. We know that everybody that create also uses other content. And vice versa. In order to have a button on your page, you need to have an active account as well, where you share your monthly fee as everybody else. We make no difference between people.
Paul Merrell

Learning from our Mistakes: The Failure of OpenID, AtomPub and XML on the Web - 1 views

  • At the turn of the last decade, XML could do no wrong. There was no problem that couldn’t be solved by applying XML to it and every technology was going to be replaced by it. XML was going to kill HTML. XML was going to kill CORBA, EJB and DCOM as we moved to web services. XML was a floor wax and a dessert topping. Unfortunately, after over a decade it is clear that XML has not and is unlikely to ever be the dominant way we create markup for consumption by browsers or how applications on the Web communicate. James Clark has XML vs the Web where he talks about this grim realization
Paul Merrell

Open letter to Google: free VP8, and use it on YouTube - Free Software Foundation - 0 views

  •  
    With your purchase of On2, you now own both the world's largest video site (YouTube) and all the patents behind a new high performance video codec -- VP8. Just think what you can achieve by releasing the VP8 codec under an irrevocable royalty-free license and pushing it out to users on YouTube? You can end the web's dependence on patent-encumbered video formats and proprietary software (Flash). This ability to offer a free format on YouTube, however, is only a tiny fraction of your real leverage. The real party starts when you begin to encourage users' browsers to support free formats. There are lots of ways to do this. Our favorite would be for YouTube to switch from Flash to free formats and HTML, offering users with obsolete browsers a plugin or a new browser (free software, of course). Apple has had the mettle to ditch Flash on the iPhone and the iPad -- albeit for suspect reasons and using abhorrent methods (DRM) -- and this has pushed web developers to make Flash-free alternatives of their pages. You could do the same with YouTube, for better reasons, and it would be a death-blow to Flash's dominance in web video. If you care about free software and the free web (a movement and medium to which you owe your success) you must take bold action to replace Flash with free standards and free formats. Patented video codecs have already done untold harm to the web and its users, and this will continue until we stop it. Because patent-encumbered formats were costly to incorporate into browsers, a bloated, ill-suited piece of proprietary software (Flash) became the de facto standard for online video. Until we move to free formats, the threat of patent lawsuits and licensing fees hangs over every software developer, video creator, hardware maker, web site and corporation -- including you. You can use your purchase of On2 merely as a bargaining chip to achieve your own private solution to the problem, but that's both a cop-out and a strategic mistake. Without making VP
Gary Edwards

Developing a Universal Markup Solution For Web Content - 0 views

  •  
    KODAXIL To Replace XML?

    File this one under the Universal Interoperability label. Very interesting. Especially since XML document formats have proven to fall short on the two primary expectations of users: interoperability and Web ready. Like HTML+ :) Maybe KODAXIL will work?

    The recent Web 2.0 Conference was filled with new web services , portals and wiki efforts trying their best to mash data into document objects. iCloud, MindTouch, AppLogic, 3Tera, Caspio and Gazoodle all deserve attention. although each took a rather different approach towards solving the problem. MindTouch in particular was excellent.

    "A Montreal-based software and research development company has developed a markup solution and language-neutral asset-descriptor that when fully developed, could result in a universal computer language for representing information in databases, web and document contents and business objects."

    "While still at a seminal stage of development, the company Gnoesis, aims to address the problem of data fragmentation caused by semantic differences between developers and users from different linguistic backgrounds."

    Gnoesis, the company that has developed the language called KODAXIL (Knowledge, Object, Data, Action, and eXtensible Interoperable Language), a data and information representation language, says the new language will replace the XML function of consolidating semantically identical data streams from different languages, by creating a common language to do this.

    The extensible semantic markup associated with this language will be understood worldwide and is three times shorter than XML.
Gary Edwards

The Open Web: Next-Generation Standards Support in WebKit/ Safari - 0 views

  •  
    Apple has posted an interesting page describing Safari technologies. Innovations and support for existing standards as well as the ACID3 test are covered.

    Many people think that the Apple WebKit-Safari-iPhone innovations are pushing Open Web Standards beyond beyond the limits of "Open", and deep into the verboten realm of vendor specific extensions. Others, myself included, believe that the WebKit community has to do this if Open Web technologies are to be anyway competitive with Microsoft's RiA (XAML-Silverlight-WPF).

    Adobe RiA (AiR-Flex-Flash) is also an alternative to WebKit and Microsoft RiA; kind of half Open Web, half proprietary though. Adobe Flash is of course proprietary. While Adobe AiR implements the WebKit layout engine and visual document model. I suspect that as Adobe RiA loses ground to Microsoft Silverlight, they will open up Flash. But that's not something the Open Web can afford to wait for.

    In many ways, WebKit is at the cutting edge of Ajax Open Web technologies. The problems of Ajax not scaling well are being solved as shared JavaScript libraries continue to amaze, and the JavaScript engines roar with horsepower. Innovations in WebKit, even the vendor-device specific ones, are being picked up by the JS Libraries, Firefox, and the other Open Web browsers.

    At the end of the day though, it is the balance between the ACiD3 test on one side and the incredible market surge of WebKit smartphones, countertops, and netbook devices at the edge of the Web that seem to hold things together.

    The surge at the edge is washing back over the greater Web, as cross-browser frustrated Web designers and developers roll out the iPhone welcome. Let's hope the ACiD3 test holds. So far it's proving to be a far more important consideration for maintaining Open Web interop, without sacrificing innovation, than anything going on at the stalled W3C.

    "..... Safari continues to lead the way, implementing
Gary Edwards

Coding In Paradise: Fixing the Web, Part I - 0 views

  •  
    Must read: "This blog post is part of a new, semi-regular series called Fixing the Web. The goal is to highlight these issues, identify potential solutions, and have a dialogue. I don't claim to have the answers for the situation we are in. However, I do know this -- if there is any community that potentially has what it takes to solve these issues I believe it's the Ajax and JavaScript communities, which is why this is a perfect place to have these discussions. To start, I see four areas that are broken that must be fixed: ..... "
Gary Edwards

Fighting Government Waste One Google App At a Time - CIO.com - Business Technology Leadership - 0 views

  • Vivek Kundra, CTO of the District of Columbia, says he found two compelling reasons to switch the D.C. government over to Gmail and Google Apps: first, its cheap cost would save the taxpayer money by avoiding bloated software contracts. Second, he believes Google technology will help ensure business continuity and the safety of data in the event of a disaster or disruption.
  •  
    Vivek Kundra, CTO of the District of Columbia, says he found two compelling reasons to switch the D.C. government over to Gmail and Google Apps: first, its cheap cost would save the taxpayer money by avoiding bloated software contracts. Second, he believes Google technology will help ensure business continuity and the safety of data in the event of a disaster or disruption. ......... Now we know why Google needs Chrome: they have the killer apps but are in need of a high end Web-App browser to run them in. Otherwise they can't begin to solve the problems of security and business continuity.
Gary Edwards

Why Google Isn't Enough - Forbes.com - 0 views

  • There are three key ways that successful implementations of enterprise search differ from the search we use on the Web: richer user interfaces, business process context and heterogeneous content.
  •  
    One key refrain that expresses this trend is heard in companies around the world: "Why can't we have a Google inside the four walls of our company?" While at first this seems like a good idea, the problem of using search inside a company is much more complicated than just indexing documents, throwing up a search box and asking people if they feel lucky. This week, JargonSpy explores just what "enterprise search" means and why it is a complicated challenge that is becoming increasingly urgent for most companies to solve.
Gary Edwards

Zoho Blogs » Firefox 3.1 & Google Chrome: Javascript Wins, Flash/Silverlight Lose - 0 views

  •  
    ZOHO Speaks about Chrome: "The biggest losers in Google's announcement are not really competing browsers, but competing rich client engines like Flash and Silverlight. As Javascript advances rapidly, it inevitably encroaches on the territory currently held by Flash. Native browser video is likely the last nail in the coffin - and Google needs native browser based video for its own YouTube, so we can be confident Google Chrome and Firefox will both have native video support, with Javascript-accessible VOM (video object model) APIs for web applications to manipuate video. As for Silverlight, let me just say that if Silverlight is the future of web computing, companies like us might as well find another line of work - and I suspect Google and Yahoo probably see it the same way too. More speculatively, I believe we will witness the emergence of Javascript as the dominant language of computing, as it sweeps the client side and starts encroaching on the server. The server landscape today is split between "enterprise" platforms like Java and .NET on the one side (we ourselves are in the Java camp on the server side), and "scripting" languages like PHP, Python, Ruby on the other, with Javascript firmly entrenched on the client. Languages like Ruby promise tremendous dynamism and flexibility to the developer, but their relatively weak execution environments have held them back. It is telling that both Java and .NET come with state of the art just-in-time compilers, while none of the major scripting languages do......" Interestingly, ZOHO already has a prototype running on Chrome! Solves tons of performance problems for them, as well as givign them an on-line / off-line story (Gears). The success of Chrome depends on Chrome "killer apps"; Not browser surfing features! And we already have a number of killer apps that will immediately take advantage of Chrome: gMail, gReader, gMaps and Google Docs! ZOHO will no doubt use Chrome to put themselves squarely i
Gary Edwards

Less Talk, More Code: The four rules of the web and compound documents - 0 views

  •  
    The four rules of the web and compound documents A real quirk that truly interests me is the difference in aims between the way documents are typically published and the way that the information within them is reused. A published document is normally in a single 'format' - a paginated layout, and this may comprise text, numerical charts, diagrams, tables of data and so on. My assumption is that, to support a given view or argument, a reference to the entirety of an article is not necessary; The full paper gives the context to the information, but it is much more likely that a small part of this paper contains the novel insight being referenced. In the paper-based method, it is difficult to uniquely identify parts of an article as items in their own right. You could reference a page number, give line numbers, or quote a table number, but this doesn't solve this issue that the author hadn't put time to considering that a chart, a table or a section of text would be reused.
‹ Previous 21 - 39 of 39
Showing 20 items per page