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Charles van der Haegen

Skeptic » About Us » A Brief Introduction - 1 views

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    "A Brief Introduction All our science, measured against reality, is primitive and childlike - and yet it is the most precious thing we have. -Albert Einstein The Skeptics Society is a scientific and educational organization of scholars, scientists, historians, magicians, professors and teachers, and anyone curious about controversial ideas, extraordinary claims, revolutionary ideas, and the promotion of science. Our mission is to serve as an educational tool for those seeking clarification and viewpoints on those controversial ideas and claims. Under the direction of Dr. Michael Shermer, the Society engages in discussions with leading experts and investigates fringe science and paranormal claims. It is our hope that our efforts go a long way in promoting critical thinking and lifelong inquisitiveness in all individuals. I have made a ceaseless effort not to ridicule, not to bewail, not to scorn human actions, but to understand them. -Baruch Spinoza Some people believe that skepticism is the rejection of new ideas, or worse, they confuse "skeptic" with "cynic" and think that skeptics are a bunch of grumpy curmudgeons unwilling to accept any claim that challenges the status quo. This is wrong. Skepticism is a provisional approach to claims. It is the application of reason to any and all ideas - no sacred cows allowed. In other words, skepticism is a method, not a position. Ideally, skeptics do not go into an investigation closed to the possibility that a phenomenon might be real or that a claim might be true. When we say we are "skeptical," we mean that we must see compelling evidence before we believe. Skepticism has a long historical tradition dating back to ancient Greece, when Socrates observed: "All I know is that I know nothing." But this pure position is sterile and unproductive and held by virtually no one. If you were skeptical about everything, you would have to be skeptical of your own skepticism. Like the dec
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    a nice source of curated uncomfortable knowledge
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

The Problem of Consciousness - 1 views

  • The Problem of Consciousness* John R. Searle (copyright John R. Searle) Abstract: This paper attempts to begin to answer four questions. 1. What is consciousness? 2. What is the relation of consciousness to the brain? 3. What are some of the features that an empirical theory of consciousness should try to explain? 4. What are some common mistakes to avoid? The most important scientific discovery of the present era will come when someone -- or some group -- discovers the answer to the following question: How exactly do neurobiological processes in the brain cause consciousness? This is the most important question facing us in the biological sciences, yet it is frequently evaded, and frequently misunderstood when not evaded. In order to clear the way for an understanding of this problem. I am going to begin to answer four questions: 1. What is consciousness? 2. What is the relation of consciousness to the brain? 3. What are some of the features that an empirical theory of consciousness should try to explain? 4. What are some common mistakes to avoid?
  • If science is supposed to give an account of how the world works and if subjective states of consciousness are part of the world, then we should seek an (epistemically) objective account of an (ontologically) subjective reality, the reality of subjective states of consciousness. What I am arguing here is that we can have an epistemically objective science of a domain that is ontologically subjective.
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    The Problem of Consciousness* John R. Searle (copyright John R. Searle) Abstract: This paper attempts to begin to answer four questions. 1. What is consciousness? 2. What is the relation of consciousness to the brain? 3. What are some of the features that an empirical theory of consciousness should try to explain? 4. What are some common mistakes to avoid? The most important scientific discovery of the present era will come when someone -- or some group -- discovers the answer to the following question: How exactly do neurobiological processes in the brain cause consciousness? This is the most important question facing us in the biological sciences, yet it is frequently evaded, and frequently misunderstood when not evaded. In order to clear the way for an understanding of this problem. I am going to begin to answer four questions: 1. What is consciousness? 2. What is the relation of consciousness to the brain? 3. What are some of the features that an empirical theory of consciousness should try to explain? 4. What are some common mistakes to avoid?
Charles van der Haegen

Overview | Research | Institute of Noetic Sciences - 0 views

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    Research at IONS From its inception, the Institute of Noetic Sciences has blazed new trails in exploring big questions: Who are we? What is consciousness, and how does it impact the physical world? What are our human potentials, and how can we achieve those potentials? What leads to personal and societal healing and transformation? Because limitations in our human consciousness underlie many of the problems we face as a global community, research at IONS focuses on exploring the fundamental nature of consciousness, investigating how it interacts with the physical world, and studying how consciousness can dramatically transform in beneficial ways.
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    Consciousness research with impact on societal and personal healing, worldview transformation with what personal and sociatal transformation effects and how extended human capoacities interact with the physical world... all good themes in our thinking about mind amplification, learning communities, and cooperation... What would you think?
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    I was the staff writer for IONS in the earl 1980s. An interesting outfit.
Charles van der Haegen

The International Society for Ecological Economics - 0 views

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    "ISEE is a not-for-profit, member-governed, organization dedicated to advancing understanding of the relationships among ecological, social, and economic systems for the mutual well-being of nature and people. Ecological economics exists because a hundred years of disciplinary specialization in scientific inquiry has left us unable to understand or to manage the interactions between the human and environmental components of our world. While none would dispute the insights that disciplinary specialization has brought, many now recognize that it has also turned out to be our Achilles heel. In an interconnected evolving world, reductionist science has pushed out the envelope of knowledge in many different directions, but it has left us bereft of ideas as to how to formulate and solve problems that stem from the interactions between humans and the natural world. How is human behaviour connected to changes in hydrological, nutrient or carbon cycles? What are the feedbacks between the social and natural systems, and how do these influence the services we get from ecosystems? Ecological economics as a field attempts to answer questions such as these."
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    ISEE's Dedication: Advancing understanding of the relationships among ecological, social, and economic systems for the mutual well-being of nature and people: My question: Did this understanding ever exist. If yes, why was this understanding lost ??? If not: How come?
David McGavock

Upaya News » Blog Archive » Zen Brain: Exploring The Connection Between Neuro... - 1 views

  • In the Zen Brain retreats, prominent scientists and Zen practitioners explore Buddhist, neuro-scientific and clinical science perspectives on topics like altruism, compassion and consciousness. Lectures and discussions with participants are embedded within zazen (meditation) practice throughout each day.
  • In these unusual programs, participants explore constructs like “affective stickiness,” a phrase coined by Dr. Richard Davidson, Research Professor of Psychology and Psychiatry at the University of Wisconsin-Madison. This is the phenomenon by which we interpret an experience as negative and then become so strongly identified with it that it becomes a fixed part of “us.”
  • The particular kind of misinterpreation of self-identification can prevent us from accessing our full range of consciousness and often limits our capacity to make choices regarding a situation.
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    In the Zen Brain retreats, prominent scientists and Zen practitioners explore Buddhist, neuro-scientific and clinical science perspectives on topics like altruism, compassion and consciousness. Lectures and discussions with participants are embedded within zazen (meditation) practice throughout each day.
David McGavock

Multitasking, social media and distraction: Research review Journalist's Resource: Rese... - 0 views

  • researchers have tried to assess how humans are coping in this highly connected environment and how “chronic multitasking” may diminish our capacity to function effectively.
  • Clifford Nass, notes that scholarship has remained firm in the overall assessment: “The research is almost unanimous, which is very rare in social science, and it says that people who chronically multitask show an enormous range of deficits. They’re basically terrible at all sorts of cognitive tasks, including multitasking.”
  • Below are more than a dozen representative studies in these areas:
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  • The researchers conclude that the experiments “suggest that heavy media multitaskers are distracted by the multiple streams of media they are consuming, or, alternatively, that those who infrequently multitask are more effective at volitionally allocating their attention in the face of distractions.”
  • Members of the ‘Net Generation’ reported more multitasking than members of ‘Generation X,’ who reported more multitasking than members of the ‘Baby Boomer’ generation. The choices of which tasks to combine for multitasking were highly correlated across generations, as were difficulty ratings of specific multitasking combinations.
  • same time, these experts predicted that the impact of networked living on today’s young will drive them to thirst for instant gratification, settle for quick choices, and lack patience
  • similar mental limitations in the types of tasks that can be multitasked.
  • survey about the future of the Internet, technology experts and stakeholders were fairly evenly split as to whether the younger generation’s always-on connection to people and information will turn out to be a net positive or a net negative by 2020.
  • said many of the young people growing up hyperconnected to each other and the mobile Web and counting on the Internet as their external brain will be nimble, quick-acting multitaskers who will do well in key respects.
  • The educational implications include allowing students short ‘technology breaks’ to reduce distractions and teaching students metacognitive strategies regarding when interruptions negatively impact learning.”
  • The data suggest that “using Facebook and texting while doing schoolwork were negatively predictive of overall GPA.” However, “emailing, talking on the phone, and using IM were not related to overall GPA.”
  • Regression analyses revealed that increased media multitasking was associated with higher depression and social anxiety symptoms, even after controlling for overall media use and the personality traits of neuroticism and extraversion.
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    Clifford Nass, notes that scholarship has remained firm in the overall assessment: "The research is almost unanimous, which is very rare in social science, and it says that people who chronically multitask show an enormous range of deficits. They're basically terrible at all sorts of cognitive tasks, including multitasking." - See more at: http://journalistsresource.org/studies/society/social-media/multitasking-social-media-distraction-what-does-research-say#sthash.I21dv2wV.dpuf
srgupta

http://www.ach.lit.ulaval.ca/Gratis/Evans_Electronic.pdf - 0 views

  • What is the effect of online availability ofjournal issues? It is possible that by makingmore research more available, online searchingcould conceivably broaden the work cited andlead researchers, as a collective, away from the“core”journals of their fields and to dispersedbut individually relevant work. I will show,however, that even as deeper journal back is-sues became available online, scientists andscholars cited more recent articles; even asmore total journals became available online,fewer were cited
    • srgupta
       
      Thesis
  • Figure 1 shows the speed of the shift toward commercial and free electronic provision of articles, and how deepening backfiles have made more early science readily available in recent years.
    • srgupta
       
      Clear evidence of increase in accessibility and availability of articles.
  • Panel regression models were used to explore the relation between online article availability and citation activity—average historical depth of citations, number of distinct articles and journals cited, and Herfindahl concentration of citations to particular articles and journals—over time (details on methods are in the Supporting Online Material)
    • srgupta
       
      Methodology
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  • The graphs in Fig. 2 trace the influence of online access, estimated from the entire sample of articles, and illustrated for journals and subfields with the mean number of citations. Figure 2A shows the simultaneous effect of commercial and free online availability on the average age of citations
  • The first question was whether depth of citation—years between articles and the work they reference—is predicted by the depth of journal issues online—how many years back issues were electronically available during the previous year when scientists presumably drafted them into their papers.
  • Collectively, the models presented illustrate that as journal archives came online, either through commercial vendors or freely, citation patterns shifted. As deeper backfiles became available, more recent articles were referenced; as more articles became available, fewer were cited and citations became more concentrated within fewer articles. These changes likely mean that the shift from browsing in print to searching online facilitates avoidance of older and less relevant literature. Moreover, hyperlinking through an online archive puts experts in touch with consensus about what is the most important prior work—what work is broadly discussed and referenced. With both strategies, experts online bypass many of the marginally related articles that print researchers skim. If online researchers can more easily find prevailing opinion, they are more likely to follow it, leading to more citations referencing fewer articles. Research on the extreme inequality of Internet hyperlinks (14), scientific citations (15, 16), and other forms of “preferential attachment” (17, 18) suggests that near-random differences in quality amplify when agents become aware of each other’s choices. Agents view others’ choices as relevant information—a signal of quality—and factor them into their own reading and citation selections. By enabling scientists to quickly reach and converge with prevailing opinion, electronic journals hasten scientific consensus. But haste may cost more than the subscription to an online archive: Findings and ideas that do not become consensus quickly will be forgotten quickly .
    • srgupta
       
      Conclusion and possible explanation
  • This research ironically intimates that one of the chief values of print library research is poor indexing. Poor indexing—indexing by titles and authors, primarily within core journals— likely had unintended consequences that assisted the integration of science and scholarship. By drawing researchers through unrelated articles, print browsing and perusal may have facilitated broader comparisons and led researchers into the past. Modern graduate education parallels this shift in publication—shorter in years, more specialized in scope, culminating less frequently in a true dissertation than an album of articles (19)
    • srgupta
       
      I have a hard time accepting this. A hint of nostalgia for the "old way" of doing things?
  • As 21st-century scientists and scholars use online searching and hyperlinking to frame and publish their arguments more efficiently, they weave them into a more focused—and more narrow—past and present.
    • srgupta
       
      Empirical results are convincing, but this isn't a given. New medium enables new forms of knowledge, and requires new forms of know-how.
    • srgupta
       
      Filter bubble
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    An empirical study of how the shift from print to online publication of journals has changed citation, research, and reading habits. Compelling use of data, though I find the some of the explanations somewhat tenuous.
David McGavock

Q&A: David Eagleman, Director, Initiative on Neuroscience and the Law | SmartPlanet - 1 views

  • David Eagleman is about as close to a rock star that a neuroscientist can be.
  • Eagleman was excited to talk to SmartPlanet about his work at both the Initiative on Neuroscience and Law, a national, interdisciplinary organization he founded that’s looking at how to remake the U.S. legal system; and the Laboratory for Perception and Action, at Baylor College of Medicine. The former initiative tackles topics such as how brain imaging and analyses of “Big Data” on crime patterns can help communities better understand and prevent violent behavior in new ways. The latter looks broadly at how individual brains are not at all alike — and how the differences might be significant for how we construct and manage our societies.
  • His work is particularly relevant in policy-related discussions in the aftermath of the Sandy Hook Elementary School tragedy in Connecticut.
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  • “To the newsreaders who feel that mental illness is best viewed as an excuse, let me suggest instead that we might more effectually recognize it as a national priority for social policy,” he wrote on his blog shortly after the shootings.  “If we care to prevent the next mass shooting, we should concentrate our efforts on getting meaningful diagnoses and resources to the next Adam Lanza.”
  • Because we are able now to measure things we have never been able to measure before, this allows us potentially to customize sentencing and rehabilitation. The goal is to have the whole system be more just and have more utility.
  • Our system is built on the assumption that if you’re over 18 and over the IQ of 70, you’re a practical reasoner, free to choose how you act. But modern neuroscience suggests that those are not good assumptions.
  • I have to emphasize, though, that this is not about exculpation. I have to be very clear that this is really about customized sentencing and rehab that works.
  • It’s helpful to be able to talk about science in basic ways that anyone can understand. What I tell my students in my lab is that they need to be able explain their research to an 8th grader.
  • I’m an amateur history buff, and if I want to read about the Roman Empire, I don’t want to read an academic debate, but instead a narrative by a trusted guide who’s done their homework, who will offer the filter of how they understand the Roman Empire, to shepherd me through its history in only 200 pages.
  • Rather than “playful,” I’d say that my approach is simply the opposite of boring. It’s about looking for and then trying to answer questions that are poweful enough to get you out of bed at 5AM.
  • My intuition on this idea: being a good scientist or creative writer is about maintaining the wide-eyed wonder of a child and asking questions all the time. That’s what really makes discovery happen in any field.
  • Science is changing really rapidly. One way is that lots of scientists are moving into Big Data
  • Right now we’re involved with serious crunching to pull out statistical info on recidivism and crime. Our first challenge is visualizing it. So in this sense, creativity and art also relevant. Data visualization is really valuable stuff; you can discover a trend when you see, wow, I didn’t realize that bump would be there. To be able to tie together data in beautiful ways allows us to see and discover patterns.
  • I don’t have any fear about losing the mystery of creativity. If I explain every single chemical piece in the process of why you enjoy the taste of a soy latte, it wouldn’t diminish your enjoyment of a soy latte. It might even enhance it
  • Neuroscientists work on how to understand how brains construct reality in general, but we are in the position of fish trying to understand water. What I mean by that is that we only know one way of seeing the world very well, like a fish only knows water.  Learning about how synesthesia works allows us to get out of our fishbowl,
  • You don’t need to know anything about the brain to understand what shape or style will be appealing. We may come scrambling up behind advertisers and product designers and validate them. If Apple wanted to hire me, sure, I’d say yes immediately and do the best job I could! But honestly, they already know how to do it. They’re the design experts. We neuroscientists would in come with our fancy machines and theories and explain why what they do is already true.
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     "To the newsreaders who feel that mental illness is best viewed as an excuse, let me suggest instead that we might more effectually recognize it as a national priority for social policy," he wrote on his blog shortly after the shootings.  "If we care to prevent the next mass shooting, we should concentrate our efforts on getting meaningful diagnoses and resources to the next Adam Lanza."
David McGavock

Are Babies Born Good? | Science | Smithsonian - 0 views

  • The study of babies and young toddlers is a perplexing business. Even the most perceptive observers can be tempted to see what isn’t there.
  • “When our infant was only four months old I thought that he tried to imitate sounds; but I may have deceived myself,” Charles Darwin wrote in “A Biographical Sketch of an Infant,” his classic study of his own son.
  • Even well-behaved babies are notoriously tough to read: Their most meditative expressions are often the sign of an impending bowel movement.
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  • “People who’ve spent their whole careers studying perception are now turning toward social life, because that’s where the bio-behavioral rubber meets the evolutionary road,” Konner says. “Natural selection has operated as much or more on social behavior as on more basic things like perception. In our evolution, survival and reproduction depended more and more on social competence as you went from basic mammals to primates to human ancestors to humans.”
  • The lab’s initial study along these lines, published in 2007 in the journal Nature, startled the scientific world by showing that in a series of simple morality plays, 6- and 10-month-olds overwhelmingly preferred “good guys” to “bad guys.” “This capacity may serve as the foundation for moral thought and action,” the authors wrote. It “may form an essential basis for...more abstract concepts of right and wrong.”
  • spate of related studies hinting that, far from being born a “perfect idiot,” as Jean-Jacques Rousseau argued, or a selfish brute, as Thomas Hobbes feared, a child arrives in the world provisioned with rich, broadly pro-social tendencies and seems predisposed to care about other people.
  • No seasoned parent can believe that nurture doesn’t make a difference, or that nature trumps all. The question is where the balance lies.
    • David McGavock
       
      Key thought - where is the balance?
  • Wynn and her husband, the psychologist Paul Bloom, collaborated on much of Hamlin’s research, and Wynn remembers being a bit more optimistic: “Do babies have attitudes, render judgments? I just found that to be a very intuitively gripping question,” she says.
  • Infant morality studies are so new that the field’s grand dame is 29-year-old J. Kiley Hamlin, who was a graduate student at the Yale lab in the mid-2000s.
  • she stumbled on animated presentations that one of her predecessors had made, in which a “climber” (say, a red circle with goggle eyes) attempted to mount a hill, and a “helper” (a triangle in some trials) assisted him, or a “hinderer” (a square) knocked him down.
  • When I visited, Tasimi was recreating versions of Hamlin’s puppet shows as background work for a new project.
  • The child shot her a woebegone look before dutifully hauling himself out of the ball pit, picking up the pen and returning it to the researcher.
  • When babies at the Yale lab turn 2, their parents are tactfully invited to return to the university after the child’s third birthday.
  • The next lab I visited was at Harvard University in Cambridge, Massachusetts, and it has made this age group something of a specialty, through work on toddler altruism (a phrase that, admittedly, rings rather hollow in parental ears).
  • One advantage of testing slightly older babies and children is that they are able to perform relatively complicated tasks. In the Laboratory for Developmental  Studies, the toddlers don’t watch puppets help: They themselves are asked to help.
  • Warneken was initially interested in how little children read the intentions of others, and the question of whether toddlers would assist others in reaching their goals. He wanted to sound out these behaviors in novel helping experiments—“accidentally” dropping a hat, for instance, and seeing if the kids would return it.
  • prominent psychologists had previously argued that children are selfish until they are socialized; they acquire altruistic behaviors only as childhood progresses and they are rewarded for following civilization’s rules, or punished for breaking them.
  • One day he and a toddler were bouncing a ball together. Truly by accident, the ball rolled away—“the moment of serendipity,” as Warneken now calls it. His first impulse was to retrieve the toy and carry on, but he stopped himself.
  • The little boy watched him struggle, then after a moment heaved himself up, waddled over to the toy and—defying the scientific community’s uncharitable expectations—stretched out his own chubby little arm to hand the ball to his gigantic playmate.
  • In the following months, Warneken designed experiments for 18-month-olds, in which a hapless adult (often played by him) attempted to perform a variety of tasks, to no avail, as the toddlers looked on. The toddlers gallantly rescued Warneken’s dropped teaspoons and clothespins, stacked his books and pried open stubborn cabinet doors so he could reach inside.
  • videotaped experiment of a toddler wallowing in a wading pool full of plastic balls.
  • But the elements that underpin morality—altruism, sympathy for others, the understanding of other people’s goals—are in place much earlier than we thought, and clearly in place before children turn 2.”
  • Because they were manifested in 18-month-olds, Warneken believed that the helping behaviors might be innate, not taught or imitated. To test his assumption, he turned to one of our two nearest primate relatives, the chimpanzee.
  • The first chimps Warneken studied, nursery-raised in a German zoo
  • as the caretaker dropped the first object: As if on cue, the chimp bounded over and breezily handed it back.
  • Warneken wondered if perhaps human-reared chimps had been conditioned to be helpful to their food providers
  • They would consistently help when the person was reaching for the object,” even in the absence of any payoff.
  • The final step was to see if chimps would assist each other. So Warneken rigged apparatuses where one caged chimp could help a neighbor reach an inaccessible banana or piece of watermelon. There was no hope of getting a bite for themselves, yet the empowered chimps fed their fellow apes regardless.
  • But under what circumstances are toddlers altruistic?
  • Some recent chimp studies suggest that chimps won’t help others unless they witness the dismay of the creature in need. Are human children likewise “reactive” helpers, or can they come to another’s assistance without social cues?
  • “You can see the birth of this proactive helping behavior from around 1.5 to 2.5 years of age,” Warneken explains. “The children don’t need solicitation for helping. They do it voluntarily.” Proactive helping may be a uniquely human skill.
  • Criticisms of the “nice baby” research are varied, and the work with the youngest kids is perhaps the most controversial.
  • such method­o­­­logical worries are never far from baby researchers’ minds.
  • Other critics, meanwhile, fault the developmental philosophy behind the experiments.
  • these researchers argue, but actually they start from scratch with only senses and reflexes, and, largely through interaction with their mothers, learn about the social world in an astonishingly short period of time.
  • And still other scientists think the baby studies underestimate the power of regional culture.
  • Ideas of the public good and appropriate punishment, for instance, are not fixed across societies: Among the Matsigenka people of the Peruvian Amazon, where Henrich works, helping rarely occurs outside of the immediate household, if only because members of the tribe tend to live with relatives.
  • Plenty of bleak observations complicate the discovery of children’s nobler impulses. Kids are intensely tribal: 3-month-olds like people of their own race more than others, experiments have shown, and 1-year-olds prefer native speakers to those of another tongue.
  • Babies, in addition, are big fans of punishment. Hamlin likes to show a video of a young vigilante who doesn’t just choose between the good and bad puppets; he whacks the bad guy over the head.
  • Perhaps babies are not really trying to help in a particular moment, per se, as much as they are expressing their obliging nature to the powerful adults who control their worlds—behaving less like Mother Teresa, in a sense, than a Renaissance courtier. Maybe parents really would invest more in a helpful child, who as an adult might contribute to the family’s welfare, than they would in a selfish loafer—or so the evolutionary logic goes.
  • A different interpretation, Warneken says, is that in a simpler world maybe toddlers really could help, pitching in to the productivity of a hunter-gatherer group in proportion to their relatively meager calorie intake.
  • For many researchers, these complexities and contradictions make baby studies all the more worthwhile.
  • “I’m trying to think of a lesser-of-two evils study,” he says. “Yes, we have our categories of good and bad, but those categories involve many different things—stealing $20 versus raping versus killing. Clearly I can’t use those sorts of cases with, you know, 13-month-olds. But you can come up with morality plays along a continuum to see...whether they form preferences about whether they like the guy who wasn’t as bad as the other bad guy.”
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    "The study of babies and young toddlers is a perplexing business. Even the most perceptive observers can be tempted to see what isn't there."
Charles van der Haegen

Shareable: About Us - 0 views

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    About Us Shareable is a nonprofit online magazine that tells the story of sharing. We cover the people, places, and projects bringing a shareable world to life. And we share how-tos so you can make a shareable world real in your life. In a shareable world, things like car sharing, clothing swaps, childcare coops, potlucks, and cohousing make life more fun, green, and affordable. When we share, not only is a better life possible, but so is a better world. The remarkable successes of Zipcar, Wikipedia, Kiva, open source software, Freecycle, and Creative Commons show this. They tell a hopeful story about human nature and our future, one we don't hear enough in the mainstream media. They show what's possible when we share. They show that we don't act merely for our own good, but go out of our way to contribute to the common good. They show that we can solve the social and environmental crises we face, and thrive as never before. They show that a new world is emerging where the more you share the more respect you get, and where life works because everyone is motivated to help each other. We tell this story because a shareable world might be just what's needed to enjoy life to the fullest today while creating a better tomorrow. And it's being built by people from all walks of life right now. Shareable is your invitation to join these innovators today. Want to start sharing? Check out our top 20 how-to share posts and our complete index of how-to share posts. Want to get involved in Shareable? You can contribute stories, feedback, and money. You can follow us on Twitter Facebook, and Identi.ca and share our stories with friends. You can register and join discussions about your favorite posts. You can subscribe to our e-mail list. We have more ideas for getting involved here. Want to know more about sharing? For the big picture on sharing, check out the following features: "Four Degrees of Sharing," by Janelle Orsi; "Ten Ways our World is Becoming More Share
Charles van der Haegen

Meary Douglas retraces the origins of the Theory od Socio-cultural Viability - 1 views

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    IThis article, written at the end of her life, presents the Historical Origins of The theory of Socio-cultural Viability by Mary Douglas, who is to be seen as the inspirator of the theory, and to have established the foundational ideas who have been further developped by her students, and later further developped and applied by many scholars across a wide range of disciplines. The first paragraph will hopefully provide some incentive to dig further: Introduction: What is Grid and Group Cultural Theory? How Useful can it be in the Modern World? It is a pleasure for me to reflect on the history of Grid-Group. I first described the idea in Natural Symbols ( Douglas 1970), a kind of necessary sequel to Purity and Danger (1966). I now realise that it was a simple idea presented in a complicated way. After a late start it has been radically redesigned by creative collaborators whose work I will describe. Back in the 1960's social anthropologists still felt it was necessary to vindicate the intelligence of colonial peoples, then known as "natives" or "primitives." A major objective of teaching and writing in anthropology was to attack something described by Levy Bruhl as "primitive mentality," which seemed to mean "primitive irrationality." Malinowski had started in the 1920's showing that the Trobrianders had rational customs and laws. In the 1930's Raymond Firth was original in focusing on the "primitive economics" of the Polynesians and found that the basic laws of supply, demand, and price applied in the rustic economies he studied. Evans-Pritchard made a frontal defence of Azande rationality. After World War II, Nadel and Gluckman followed up with the complexities of Nubian and Barotse legal systems. The very idea that the concept of "jurisprudence" could apply to "the natives" was innovative. In the 1950's and 60's we continued to dismantle intellectual barriers assumed to distinguish "Them" from "Us." The following ex
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    I believe this to be a helpfull introduction to the study od the Theory od Socio-cultural viability, which, it seems to me, is a usefull framework to look from a new angle to cooperation theory, institutional decision making, democracy and many other fields of social sciences
Charles van der Haegen

Geoff Mulgan: A short intro to the Studio School - YouTube - 2 views

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    "Some kids learn by listening; others learn by doing. Geoff Mulgan gives a short introduction to the Studio School, a new kind of school in the UK where small teams of kids learn by working on projects that are, as Mulgan puts it, "for real." TEDTalks is a daily video podcast of the best talks and performances from the TED Conference, where the world's leading thinkers and doers give the talk of their lives in 18 minutes. Featured speakers have included Al Gore on climate change, Philippe Starck on design, Jill Bolte Taylor on observing her own stroke, Nicholas Negroponte on One Laptop per Child, Jane Goodall on chimpanzees, Bill Gates on malaria and mosquitoes, Pattie Maes on the "Sixth Sense" wearable tech, and "Lost" producer JJ Abrams on the allure of mystery. TED stands for Technology, Entertainment, Design, and TEDTalks cover these topics as well as science, business, development and the arts. Closed captions and translated subtitles in a variety of languages are now available on TED.com, at http://www.ted.com/translate. Category: People & Blogs Tags: TED TEDTalks TEDGlobal Geoff Mulgan Creativity Culture Design Education Work learning learn Studio School projects active learning participatory License: Standard YouTube License 223 likes, 4 dislikes Top Comments 1) 0:15 (to skip intro) 2) I'm sending this to my all my professors and even my old high school teachers too! More people need to hear about this idea! It may not be perfect now, but with more minds working together, it can be fine-tuned into something to suite ALL students (not just those in Media and Arts). Thanks TED! jerrylittlemars 14 hours ago 28 @merkowaty1 additional: just about ANYTHING is going to be more fun than traditional school as we have them today. ion010101 13 hours ago 6 see all All Comments (58) Reactions (2) Respond to this video... we do indeed learn by doing yet we are watchin
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    This is a really great initiative, worth watching. Sometimes I feel a bit unsettled, so much things happening in every corner of society at large... accelerating at such a fast pace... Whare, When, will this lead us towards... What can I do?
B.L. Ochman

Virtual Reality Technologies for Research and Education in Obesity and Diabetes - Spons... - 3 views

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    don't know if you've seen this research, supporting social learning.
Charles van der Haegen

Robert Thurman | Professor of Buddhist Studies, Columbia University; President, Tibet H... - 0 views

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    "Robert Thurman is Professor of Indo-Tibetan Buddhist Studies in the Department of Religion at Columbia University, President of Tibet House US, a non-profit organization dedicated to the preservation and promotion of Tibetan civilization, and President of the American Institute of Buddhist Studies. The New York Times recently hailed him as "the leading American expert on Tibetan Buddhism." The first American to have been ordained a Tibetan Buddhist monk and a personal friend of the Dalai Lama for over 40 years, Professor Thurman is a passionate advocate and spokesperson for the truth regarding the current Tibet-China situation and the human rights violations suffered by the Tibetan people under Chinese rule. His commitment to finding a peaceful, win-win solution for Tibet and China inspired him to write his latest book, Why the Dalai Lama Matters: His Act of Truth as the Solution for China, Tibet and the World, published in June of 2008. Professor Thurman also translates important Tibetan and Sanskrit philosophical writings and lectures and writes on Buddhism, particularly Tibetan Buddhism; on Asian history, particularly the history of the monastic institution in the Asian civilization; and on critical philosophy, with a focus on the dialogue between the material and inner sciences of the world's religious traditions."
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    I believe this is a great interview... and video set
David McGavock

As Above, So Below: The Worldview of Lynn Margulis | Reality Sandwich - 2 views

  • This journey led her to emphasize in all her scientific work two phenomena -- the fusing of distinct beings into a single being: symbiosis; and the interaction of organisms and their environments to create relational "loops" that led to regulation of many Earth systems: Gaia Theory.
  • Bacteria were here first and are with us still, comprising a major part of the biosphere.  They are unseen with the naked eye, they lack nuclei (for this reason, they are called prokaryotes -- "pro" = before,  "karyon" = nucleus). Their forms were legion and their metabolisms were (and continue to be) strange.
  • What is known is that the spirochete didn't digest the thermoplasmid and the thermoplasmid did not digest the spirochete.  As Margulis was fond of saying, "1 + 1 = 1."  There was a union of the two, resulting in an entirely new being.  They were inseparable, literally.  The thermoplasmid had a rotor now, and the spirochete had a "head".
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  • Margulis, inspired by the work of little-known biologists, revealed and proved these mergers for us.  At first, her worked was rejected and scoffed at.  It did not fit the still-dominant neo-Darwinian paradigm that tells us all evolutionary novelty comes from natural selection acting on genes and the gradual accumulation of random genetic mutation.  But eventually these symbioses were accepted because they could not be ignored
  • our physical selves are universes composed of the movemenst, biological agreements, and interactions of these beings.
  • "Identity is not an object; it is a process with addresses for all the different directions and dimensions in which it moves..." Margulis once stated, with her colleague Ricardo Guerrero.
  • Indeed, symbiogenesis has been observed in the lab.  An amoeba population, accidentally infected with bacteria was observed over long periods of time, and soon enough, the infecting bacteria could not be removed from the infected amoeba without killing the organism. 
  • Gaia is the work of the relational loops of push and pull between bacteria, other organisms, and the environment
  • But Lovelock came up with an understandable and accesible metaphor in the form of a computer program called Daisyworld.  Daisyworld is not the "proof" of Gaia: Lovelock and his colleague Andrew Watson devised the program to see if living and environmental factors could theoretically interact without intention. 
  • "Gaia," Margulis's former student Greg Hinkle said, "is just symbiosis as seen from space."
  • Gaia processes are real and observable (and sometimes referred to as "biogeochemistry", a term more acceptable to mainstream science).  Furthermore, the five kingdoms (bacteria, protoctists, fungi, plants, animals) of life are all touched by symbiosis
  • After she found James Lovelock, they worked on making those processes known.  Their collaboration resulted in Gaia Theory, which was a disciplinary symbiosis -- the theoretical expression of Margulis's interdisciplinary life.
  • All animals have symbiotic partners in their guts.  Remove these symbionts and the animals die.
  • Microcosmos show us a bacterial view of the world.  Bacteria exchange their genes laterally.  This means they don't pass their genomic information only when they reproduce (though this can happen), but also  through their simple existence.
  • Along with the many detailed examples of bacterial mergers at varying levels of cellular complexity, the world revealed by Acquiring Genomes is also a world of mating between distinct phyla
  • What is definite is that the merging of beings is key, and symbiogenesis offers a clearly observable alternative to the consistent but woefully incomplete neo-Darwinian paradigm.
  • David Bohm, who said
  • "Science is the search for truth...whether we like it or not."
  • Many neo-Darwinist concerns circled nervously around words like "Gaia" and "cooperation" (which Margulis did not like to use).  They were, perhaps rightly, concerned that these terms were ripe for religious appropriation.  But Margulis herself was outspoken against such mishandling of her research. 
    • David McGavock
       
      Cooperation - not God - meets Gaia
  • it's much more complex than that -- there is something "in it" for every symbiont,
  • "Gaia is not merely an organism."  The Earth is beyond stale conception.  It is more magnificent and active than we can imagine.  Gaia is object and process.
  • this complexity is impossible to incorporate in a linear and reductive understanding.
    • David McGavock
       
      This is a question that I often wonder - how different thinkers (using different modes of understanding) come to different conclusions.  What is it that separates the linear (reductive) thinker from the holistic (systemic) thinker?
  • If Gaia is conscious, it possesses a consciousness of a different magnitude, probably of a different order all together.
  • Perhaps as we -- in the newly and deeply connected world of the internet, social profiles, and globalization -- witness the dissolution of the cult of isolated individuality and embark on understanding a clearer and more nuanced view of individuality, so to will we ready ourselves for a clearer view of evolution and life.
    • David McGavock
       
      This is a good question; how does this connected world reframe our conception of ourselves as individuals? Can we, at once, become humbled while we contribute? Can we imagine ourselves as less important while we excel in our pursuits?
  • Dawkins, who claims to be an atheist, relies on a host of selfish angels within us and the possibility for meme-salvation to justify his theory.  He substantiates his magical worldview on a meager past of scientific work.
  • To encompass complex systems with our thinking, we must imagine a model that is less like "cause-effect" more like "being-manifestation."  That is, multiple layers and numerous agents of forces unconsciously conspire together, and their conspiring is so intermingled, that it is simultaneously cause and effect, and thus beyond both. 
  • Now that Margulis has died, it remains our choice to catch up with what she and her life's work have set in motion.  To do so, we must bring together the many fields of knowledge she embodied.  Biologists must talk to physicists, virologists must talk to geologists, cosmologists must talk to microbiologists, and scientists musty talk to non-scientists.  This motion of meeting and exchanging ideas, if we act with it, will evolve our thinking.
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    " Now that Margulis has died, it remains our choice to catch up with what she and her life's work have set in motion.  To do so, we must bring together the many fields of knowledge she embodied.  Biologists must talk to physicists, virologists must talk to geologists, cosmologists must talk to microbiologists, and scientists musty talk to non-scientists.  This motion of meeting and exchanging ideas, if we act with it, will evolve our thinking. "
David McGavock

The Myth Of AI | Edge.org - 1 views

  • what I'm proposing is that if AI was a real thing, then it probably would be less of a threat to us than it is as a fake thing.
  • it adds a layer of religious thinking to what otherwise should be a technical field.
  • we can talk about pattern classification.
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  • But when you add to it this religious narrative that's a version of the Frankenstein myth, where you say well, but these things are all leading to a creation of life, and this life will be superior to us and will be dangerous
  • I'm going to go through a couple of layers of how the mythology does harm.
  • this overall atmosphere of accepting the algorithms as doing a lot more than they do. In the case of Netflix, the recommendation engine is serving to distract you from the fact that there's not much choice anyway.
  • If a program tells you, well, this is how things are, this is who you are, this is what you like, or this is what you should do, we have a tendency to accept that.
  • our economy has shifted to what I call a surveillance economy, but let's say an economy where algorithms guide people a lot, we have this very odd situation where you have these algorithms that rely on big data in order to figure out who you should date, who you should sleep with, what music you should listen to, what books you should read, and on and on and on
  • people often accept that
  • all this overpromising that AIs will be about to do this or that. It might be to become fully autonomous driving vehicles instead of only partially autonomous, or it might be being able to fully have a conversation as opposed to only having a useful part of a conversation to help you interface with the device.
  • other cases where the recommendation engine is not serving that function, because there is a lot of choice, and yet there's still no evidence that the recommendations are particularly good.
  • there's no way to tell where the border is between measurement and manipulation in these systems.
  • if the preponderance of those people have grown up in the system and are responding to whatever choices it gave them, there's not enough new data coming into it for even the most ideal or intelligent recommendation engine to do anything meaningful.
  • it simply turns into a system that measures which manipulations work, as opposed to which ones don't work, which is very different from a virginal and empirically careful system that's trying to tell what recommendations would work had it not intervened
  • What's not clear is where the boundary is.
  • If you ask: is a recommendation engine like Amazon more manipulative, or more of a legitimate measurement device? There's no way to know.
  • we don't know to what degree they're measurement versus manipulation.
  • If people are deciding what books to read based on a momentum within the recommendation engine that isn't going back to a virgin population, that hasn't been manipulated, then the whole thing is spun out of control and doesn't mean anything anymore
  • not so much a rise of evil as a rise of nonsense.
  • because of the mythology about AI, the services are presented as though they are these mystical, magical personas. IBM makes a dramatic case that they've created this entity that they call different things at different times—Deep Blue and so forth.
  • Cortana or a Siri
  • This pattern—of AI only working when there's what we call big data, but then using big data in order to not pay large numbers of people who are contributing—is a rising trend in our civilization, which is totally non-sustainable
    • David McGavock
       
      Key relationship between automation of tasks, downsides, and expectation for AI
  • If you talk about AI as a set of techniques, as a field of study in mathematics or engineering, it brings benefits. If we talk about AI as a mythology of creating a post-human species, it creates a series of problems that I've just gone over, which include acceptance of bad user interfaces, where you can't tell if you're being manipulated or not, and everything is ambiguous.
  • It creates incompetence, because you don't know whether recommendations are coming from anything real or just self-fulfilling prophecies from a manipulative system that spun off on its own, and economic negativity, because you're gradually pulling formal economic benefits away from the people who supply the data that makes the scheme work.
  • I'm going to give you two scenarios.
  • let's suppose somebody comes up with a way to 3-D print a little assassination drone that can go buzz around and kill somebody. Let's suppose that these are cheap to make.
  • Having said all that, let's address directly this problem of whether AI is going to destroy civilization and people, and take over the planet and everything.
  • some disaffected teenagers, or terrorists, or whoever start making a bunch of them, and they go out and start killing people randomly
  • This idea that some lab somewhere is making these autonomous algorithms that can take over the world is a way of avoiding the profoundly uncomfortable political problem, which is that if there's some actuator that can do harm, we have to figure out some way that people don't do harm with it.
    • David McGavock
       
      Another key - focus on the actuator, not the agent that exploits it.
  • the part that causes the problem is the actuator. It's the interface to physicality
  • not so much whether it's a bunch of teenagers or terrorists behind it or some AI
  • The sad fact is that, as a society, we have to do something to not have little killer drones proliferate.
  • What we don't have to worry about is the AI algorithm running them, because that's speculative.
  • another one where there's so-called artificial intelligence, some kind of big data scheme, that's doing exactly the same thing, that is self-directed and taking over 3-D printers, and sending these things off to kill people.
  • There's a whole other problem area that has to do with neuroscience, where if we pretend we understand things before we do, we do damage to science,
  • You have to be able to accept what your ignorances are in order to do good science. To reject your own ignorance just casts you into a silly state where you're a lesser scientist.
  • To my mind, the mythology around AI is a re-creation of some of the traditional ideas about religion, but applied to the technical world.
  • The notion of this particular threshold—which is sometimes called the singularity, or super-intelligence, or all sorts of different terms in different periods—is similar to divinity.
  • In the history of organized religion, it's often been the case that people have been disempowered precisely to serve what were perceived to be the needs of some deity or another, where in fact what they were doing was supporting an elite class that was the priesthood for that deity.
    • David McGavock
       
      Technical priesthood.
  • If AI means this mythology of this new creature we're creating, then it's just a stupid mess that's confusing everybody, and harming the future of the economy. If what we're talking about is a set of algorithms and actuators that we can improve and apply in useful ways, then I'm very interested, and I'm very much a participant in the community that's improving those things.
  • A lot of people in the religious world are just great, and I respect and like them. That goes hand-in-hand with my feeling that some of the mythology in big religion still leads us into trouble that we impose on ourselves and don't need.
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    "The idea that computers are people has a long and storied history. It goes back to the very origins of computers, and even from before. There's always been a question about whether a program is something alive or not since it intrinsically has some kind of autonomy at the very least, or it wouldn't be a program. There has been a domineering subculture-that's been the most wealthy, prolific, and influential subculture in the technical world-that for a long time has not only promoted the idea that there's an equivalence between algorithms and life, and certain algorithms and people, but a historical determinism that we're inevitably making computers that will be smarter and better than us and will take over from us."
David McGavock

How the brain creates the 'buzz' that helps ideas spread - 1 views

  • UCLA psychologists have taken a significant step toward answering these questions, identifying for the first time the brain regions associated with the successful spread of ideas, often called "buzz."
  • "Our study suggests that people are regularly attuned to how the things they're seeing will be useful and interesting, not just to themselves but to other people,"
  • We always seem to be on the lookout for who else will find this helpful, amusing or interesting, and our brain data are showing evidence of that.
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  • The study findings are published in the online edition of the journal Psychological Science, with print publication to follow later this summer.
  • "Now we have mapped the brain regions associated with ideas that are likely to be contagious and are associated with being a good 'idea salesperson.' In the future, we would like to be able to use these brain maps to forecast what ideas are likely to be successful and who is likely to be effective at spreading them."
  • the interns who were especially good at persuading the producers showed significantly more activation in a brain region known as the temporoparietal junction, or TPJ, at the time they were first exposed to the pilot ideas they would later recommend.
  • We found that increased activity in the TPJ was associated with an increased ability to convince others to get on board with their favorite ideas.
  • Thinking about what appeals to others may be even more important."
  • The TPJ, located on the outer surface of the brain, is part of what is known as the brain's "mentalizing network," which is involved in thinking about what other people think and feel.
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    Interesting findings. The emphasis here is on identifying activity of the brain that indicates a person's effectiveness with passing on (sharing) information. While that is notable, it would be great to know what activity indicates that the information has merit in and of itself. We have plenty of buzz in our world. What we need are authoritative sources.
David McGavock

A New Culture of Learning | Social Media Classroom - 3 views

  • A New Culture of Learning
  • what strikes me is the second part of the title Cultivating the Imagination for a World of Constant Change.
  • I love seeing a child's imagination being captivated
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  • I am challenged by many who see social-media as the next project rather than a shift in the paradigm of existence.
  • I believe that dissatisfaction with the factory model of school, along with the growing number, ubiquity, and accessiblity, of tools (for connection, collaboration and creation) will tip the balance toward new models and cultures of learning.
  • I love to see teachers and student figuring out how to use technology together; asking questions, trying stuff, "messing around" as Brown would say.
  • The Social Life of Information by John Seely Brown and Paul Duguid
  • Can I just say that it is amazingly prescient and still relevant even a decade later? I'm interested in comparing it to his more recent book in discussion here.
  • Howard reponds with an idea on assignments (and the power of assignments). I found the questions (or in other courses the assignements) to really good at directing my brain. 1.Read the question 2. go to sleep 3. stare at the ceiling for hours 4. brush teeth 5. eurekaThese methods are also used in action learning and action research
  • I'm reading the book "the myth of management" (which is not related to learning), and I found out that finding "faults" is actually a dirty consultant trick, as it expands the window through which you can sell your solution. I hacked that idea and replaced solution with learning.
  •  The role of the instructor in balancing freedom and structure -- setting enough structure so that the unlimited freedom doesn't become vertiginous and overwhelming -- resonates with my experiences with Rheingold U. so far. Assignments seem to help, but they can't be too onerous.
  •  Very nice article comparing Thomas/JSB ideas to John Dewey's:
  •  http://charlestkerchner.com/wp-content/uploads/2011/04/DeweyThomas.pdf
  • Ernst - I am particularly interested in Action Research of the "plan, act, observe,reflect" variety where we never really arrive at conclusions but start again in a new cycle of teaching and learning.
  • that idea of teaching people to fail is very important - I notice that this is acceptable very often in business especially in the contexts of 'start-ups' but unacceptable in most schools. Here in Europe, the work of the Finnish educationalist Pasi Sahlberg gets a lot of attention - one of his motifs is learning to be wrong.
  • Knowing who to listen to in the 'noise' of all the information overload is important - I'm looking forward to our continuing review of how we all re-imagine that new culture of learning.
  • Can You, and if yes, How,  Change a system from within? This is one of the key issues of our time. Learning, PLN, Community support structures, activism, Social media, cooperation.. are all part of that... so it is realIy at the heart of our SMC Alumni topics. 
  • I would suggest, we should be dialoguing in depth about the question, and how to formulate it, before jumping to solutions...
  • The work of social and developmental psychologist, Carol Dweck can inform our discussion about failure,
  • Her book, Mindset, posits that some students have growth mindsets and some have fixed mindsets.
  • Ernst, I adore your description of problem-solving (especially the enumerated part). Downtime is essential for processing information and I agree, even subtle shifts within group dynamics can cause huge internal vistas to open up.
  • The idea of structuring for failure in itself is a whole new take on creative thinking.
  • Schools reward success.  That's our measurement system, our "leaderboard".  Some winners at school go on to run schools. Schools punish failure deeply, systematically.  Remember dunce caps? So taking failure as a good thing is, at the very least, weird and defamiliarizing!
  • Chapter Two of Thomas and Seely-Brown's book  is so short - just five pages - They conclude with the idea ....the point is to embrace what we don't know, come up with better questions about it, and continue asking those questions in order to learn more and more, both incrementally and exponentially. I wonder do the authors want us to reflect repeatedly on the contents of the chapter given its brevity.
  • is it certain type of people who fail, who are subsequently allowed to start again?
  • book's first chapter
  • Two key elements: network ("a massive information network that provides almost unlimited access and resources", sounds like mobile + Web) and environments ("bounded and structural") (19).
  • what do you make of the examples they present?  What do they suggest about the theory they exemplify?
  • ohn Seely Brown is particularly interested in the idea of tinkering. He suggests one of the best 'tinkering' models is the architectural studio -- the place where students work together trying to solve each others' problems, and a mentor or master can also take part in open criticism. Find out why this is a model for us all.  http://www.abc.net.au/rn/bydesign/stories/2011/3147776.htm
  • The first chapter is a pretty rosy, and might I say westernized, view of the power of Internet access + play in learning.* It manages to enlighten and engage using a few choice narratives (I imagine we will get to the power of those at some point in the book, too) and sets us up for the rationale to come.
  • * I'm looking for some reaction with regards to that comment
  • based on WEIRD (Western Educated Industrialized Rich Democratic) concepts. (An aside, here's a truly wonderful post unpacking of the idea of WEIRD in social science research.)
  • I can only talk for myself but there are contradictions between what I think is best to do with the students I teach and what I actually do. This "living contradiction" is something I consider in my own studies - I noticed a Tweet last night from Howard: Online and blended learning is NOT about automating delivery of knowledge, but about encouraging peer learning, inquiry, discourse.
  • The sentence I liked most from Chapter One reads "One of the metaphors we adopt to describe this process is cultivation. A farmer for example takes the nearly unlimited resources of sunlight, wind, water, earth, and biology and consolidates them into the bounded and structured environment of garden or farm. We see a new culture of learning as a similar kind of process - but cultivating minds instead of plants"
  • Everyone - you may have seen the piece below - if not please take 12 minutes to view it - it fits nicely with our current discussion
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    This is the first capture of the conversation from the thread "A New Culture of Learning". We'll see how this goes
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    I read the book almost cover to cover. It led me to think more about pushing what I've been doing closer to pure p2p. One of the co-learners in the latest Mindamp told me about "paragogy." That one is worth bookmarking.
David McGavock

From Brain to Mind: Using Neuroscience to Guide Change in Education « Learnin... - 0 views

  • Zull begins his journey with sensory-motor learning, and how that leads to discovery, and discovery to emotion. He then describes how deeper learning develops, how symbolic systems such as language and numbers emerge as tools for thought, how memory builds a knowledge base, and how memory is then used to create ideas and solve problems. Along the way he prompts us to think of new ways to shape educational experiences from early in life through adulthood, informed by the insight that metacognition lies at the root of all learning.
  • he argues that self-knowledge, awareness of how and why we think as we do, and the ability to adapt and learn, are critical to our survival as individuals; and that the transformation of education,
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    "This book offers the reader an engrossing and coherent introduction to what neuroscience can tell us about cognitive development through experience, and its implications for education."
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