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Charles van der Haegen

‪The Most IMPORTANT Video You'll Ever See‬‏ - YouTube - 3 views

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    "2 million views for an old codger giving a lecture about arithmetic? What's going on? You'll just have to watch to see what's so damn amazing about what he (Prof. Albert Bartlett) has to say. When I saw this lecture at a conference in 1995, I came out blasted, thinking "This needs to be required listening for every person on the planet. Nothing else will matter if we don't understand this." The presenter is Albert Bartlett, a retired Physics prof. at U of Colorado-Boulder. The presentation is titled "Arithmetic, Population, and Energy," and I introduce it to my students as "The most boring video you'll ever see, and the most important." But then again, after viewing it most said that if you followed along with what Bartlett is saying, it's quite easy to pay attention, because the content is so damn compelling. If you forward this to everyone you know, we might actually stand a chance in staving off disaster in the global finance system, peak oil, climate change, and every other resource issue you can think of. Without a widespread understanding of what Bartlett's talking about, I think we won't be able to dodge ANY of those issues. BE ABSOLUTELY SURE you catch the parts about "the bacteria in the bottle" (in Part 3) and the list comparing things that add to the problem and things that address the problem. If we don't choose from that right-hand column, nature will choose for us. I for one, would rather we be the ones making the choice."
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    I suppose many of you have seen this video, at least the first one... The question is: will growth save humanity? Than answer is.... : Wrong question! Maybe it should be: What kind of growth should save humanity? Will pondering on this question bring us further? Einstein said once: The mere formulation of a problem is far more often essential than its solution, which may be merely a matter of mathematical or experimental skill. To raise new questions, new possibilities, to regard old problems from a new angle requires creative imagination and marks real advances in science. Albert Einstein, (1879 - 1955) Physicist & Nobel Laureate How do we formulate Humanities Problem?
shai edrote

Troubleshooting and Fixing Computers - 2 views

My computer often experiences network trouble. It does not only cause me inconvenience but, it also causes delays in my work as well. I often hire computer technicians to help me troubleshoot my co...

Fix Computer

started by shai edrote on 12 Sep 11 no follow-up yet
David McGavock

Making Science by Serendipity. A review of Robert K. Merton and Elinor Barber's The Tra... - 1 views

  •  It is worth now turning our attention to the theoretical aspects of serendipity and examining the sociological and philosophical implications of this idea.
    • David McGavock
       
      New theme
  • As Mario Bunge (1998: 232) remarks, “Merton, a sociologist and historian of ideas by training, is the real founding father of the sociology of knowledge as a science and a profession; his predecessors had been isolated scholars or amateurs.”
  •  It is true that the American sociologist studies mainly institutions of science, not laboratory life and the products of science (e.g., theories). But he never said that sociologists cannot or should not study other aspects of science.
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  • His attention to the concept of serendipity is the best evidence
  • Some scientists seem to have been aware of the fact that the elegance and parsimony prescribed for the presentation of the results of scientific work tend to falsify retrospectively the actual process by which the results were obtained” (Merton and Barber 2004: 159)
  • Indeed if you are clever enough to take advantage of the opportunity, you may capture a fox thanks to accidental circumstances while searching for hares.
  • Colombus’ discovery of America, Fleming’s discovery of penicillin, Nobel’s discovery of dynamite, and other similar cases, prove that serendipity has always been present in research. Merton (1973: 164)
  • “Intuition, scriptures, chance experiences, dreams, or whatever may be the psychological source of an idea.
  • This descriptive model has many important implications for the politics of science, considering that the administration and organization of scientific research have to deal with the balance between investments and performance. To recognize that a good number of scientific discoveries are made by accident and sagacity may be satisfactory for the historian of science, but it raises further problems for research administrators.
  • If this is true, it is necessary to create the environment, the social conditions for serendipity. These aspects are explored in Chapter 10 of The Travels and Adventures of Serendipity.
    • David McGavock
       
      Key to the Mindamp group is finding ways to create this environment
  • The solution appears to be a Golden Mean between total anarchy and authoritarianism. Too much planning in science is harmful.
    • David McGavock
       
      balance - a good idea
  • Whitney supervised the evolution of the inquiry everyday but limited himself to asking: “Are you having fun today?” It was a clever way to make his presence felt, without exaggerating with pressure. The moral of the story is that you cannot plan discoveries, but you can plan work that will probably lead to discoveries:
    • David McGavock
       
      Applied Serendipity at GE - "having fun?"
  • If scientists are determined by social factors (language, conceptual frames, interests, etc.) to find certain and not other “answers,” why are they often surprised by their own observations? A rational and parsimonious explanation of this phenomenon is that the facts that we observe are not necessarily contained in the theories we already know. Our faculty of observation is partly independent from our conceptual apparatus. In this independence lies the secret of serendipity.
    • David McGavock
       
      Perhaps an example of embodied cognition. Our senses know something our brains don't.
David McGavock

How Technology Evolves | Digital Tonto - 0 views

  • Perhaps what we fear most about technology is ourselves.  For better or worse, technology’s evolution and our own are inseparable.
    • David McGavock
       
      I think this is spot on. Technology tempts us, pulls us to go one way or the other. We are concerned about it taking control of us, isolating us from other things and relationships we value, corrupting us. To eat the apple or not, that is the questions.
  • the work of Diamond, Jacobs and Florida all have in common is that they describe technology very much like Heidegger – as an uncovering.   However, they all argue, quite rightly, that the work of uncovering technological principles requires an environment conducive to creativity; including prosperity, leisure time and opportunities for a diversity of ideas to mix.
  • What Does Technology Want? So is technology more worthy of our admiration or our fear?  Kevin Kelly, in his book What Technology Wants, argues for both.  He describes a neverending chain of solutions to problems that create still newer problems.
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  • Technology, therefore, is somewhat dependent on precursors. What you start out with will help to determine what you end up with.
  • Sometimes it’s hard to tell if technology is something to love or to fear. Are computers making us smarter or dumbing us down? Are genetically modified foods a miracle or a menace? What’s really scary is how little control we have over it.
  • Whatever we might think or feel, technology will progress and we need to decide for ourselves how we will interact with it. Yet before we can do that, we need to understand how it evolves into being.
    • David McGavock
       
      This is an important purpose for the Mindamp group. While the name sounds like a call for amplifying our minds, much of our talk is about managing our minds; understanding (and using) tools to understand the evolution of the tools.
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