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The Structure of Scientific Revolutions av…
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The Structure of Scientific Revolutions (urspr publ 1962; utgåvan 1996)

av Thomas S. Kuhn

MedlemmarRecensionerPopularitetGenomsnittligt betygOmnämnanden
8,073921,076 (3.99)40
A good book may have the power to change the way we see the world, but a great book actually becomes part of our daily consciousness, pervading our thinking to the point that we take it for granted, and we forget how provocative and challenging its ideas once were--and still are. The Structure of Scientific Revolutions is that kind of book. When it was first published in 1962, it was a landmark event in the history and philosophy of science. Fifty years later, it still has many lessons to teach. With The Structure of Scientific Revolutions, Kuhn challenged long-standing linear notions of scientific progress, arguing that transformative ideas don't arise from the day-to-day, gradual process of experimentation and data accumulation but that the revolutions in science, those breakthrough moments that disrupt accepted thinking and offer unanticipated ideas, occur outside of "normal science," as he called it. Though Kuhn was writing when physics ruled the sciences, his ideas on how scientific revolutions bring order to the anomalies that amass over time in research experiments are still instructive in our biotech age. This new edition of Kuhn's essential work in the history of science includes an insightful introduction by Ian Hacking, which clarifies terms popularized by Kuhn, including paradigm and incommensurability, and applies Kuhn's ideas to the science of today. Usefully keyed to the separate sections of the book, Hacking's introduction provides important background information as well as a contemporary context.  Newly designed, with an expanded index, this edition will be eagerly welcomed by the next generation of readers seeking to understand the history of our perspectives on science.… (mer)
Medlem:breadhat
Titel:The Structure of Scientific Revolutions
Författare:Thomas S. Kuhn
Info:University of Chicago Press (1996), Edition: 3rd, Paperback, 226 pages
Samlingar:Ditt bibliotek
Betyg:****
Taggar:philosophy-theory

Verksinformation

De vetenskapliga revolutionernas struktur av Thomas S. Kuhn (1962)

  1. 10
    Human Understanding: The Collective Use and Evolution of Concepts av Stephen Toulmin (thcson)
    thcson: Toulmin gives a good critique of Kuhn and discusses the history of scientific concepts from an evolutionary point of view. He utilizes the history of science in much the same way.
  2. 11
    Vår sinnrika kropp och hur den utforskats av Jonathan Miller (Thruston)
    Thruston: The nature of the scientific process set out in Kuhn's masterly account, is one of the central themes in Miller's entertaining history of medicine and the way humans perceive themselves.
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» Se även 40 omnämnanden

engelska (85)  spanska (2)  ungerska (1)  tyska (1)  svenska (1)  italienska (1)  Alla språk (91)
Relativt lättläst om hur en ny världsbild slår igenom. Hur gick det till när Newton och Einsteins teorier förändrade världen. ( )
  moia | May 22, 2006 |
The lasting value of Kuhn’s thesis in The Structure of Scientific Revolutions is that it reminds us that any science, however apparently purified of the taint of philosophical speculation, is nevertheless embedded in a philosophical framework — and that the great success of physics and biology is due not to their actual independence from philosophy but rather to physicists’ and biologists’ dismissal of it. Those who are inclined to take this dismissal as meaning that philosophy is dead altogether, or has been replaced by science, will do well to recognize the force by which Kuhn’s thesis opposes this stance: History has repeatedly demonstrated that periods of progress in normal science — when philosophy seems to be moot — may be long and steady, but they lead to a time when non-scientific, philosophical questions again become paramount. ...

Kuhn deserves the respect of the rigorous criticism that has come his way. It is fitting that his provocative thesis has faced blistering scrutiny — and remarkable that it has survived to instruct and vex us five decades later.
 

» Lägg till fler författare (81 möjliga)

Författarens namnRollTyp av författareVerk?Status
Kuhn, Thomas S.primär författarealla utgåvorbekräftat
Hacking, IanInledningmedförfattarevissa utgåvorbekräftat
Sautoy, Marcus duFörordmedförfattarevissa utgåvorbekräftat
Solís Santos, CarlosÖversättaremedförfattarevissa utgåvorbekräftat
Vetter, HermannÜbersetzermedförfattarevissa utgåvorbekräftat
Willink, BastiaanÖversättaremedförfattarevissa utgåvorbekräftat
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History, if viewed as a repository for more than anecdote or chronology, could produce a decisive transformation in the image of science by which we are now possessed.
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A good book may have the power to change the way we see the world, but a great book actually becomes part of our daily consciousness, pervading our thinking to the point that we take it for granted, and we forget how provocative and challenging its ideas once were--and still are. The Structure of Scientific Revolutions is that kind of book. When it was first published in 1962, it was a landmark event in the history and philosophy of science. Fifty years later, it still has many lessons to teach. With The Structure of Scientific Revolutions, Kuhn challenged long-standing linear notions of scientific progress, arguing that transformative ideas don't arise from the day-to-day, gradual process of experimentation and data accumulation but that the revolutions in science, those breakthrough moments that disrupt accepted thinking and offer unanticipated ideas, occur outside of "normal science," as he called it. Though Kuhn was writing when physics ruled the sciences, his ideas on how scientific revolutions bring order to the anomalies that amass over time in research experiments are still instructive in our biotech age. This new edition of Kuhn's essential work in the history of science includes an insightful introduction by Ian Hacking, which clarifies terms popularized by Kuhn, including paradigm and incommensurability, and applies Kuhn's ideas to the science of today. Usefully keyed to the separate sections of the book, Hacking's introduction provides important background information as well as a contemporary context.  Newly designed, with an expanded index, this edition will be eagerly welcomed by the next generation of readers seeking to understand the history of our perspectives on science.

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