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  1. Serendipity Science.Samantha Copeland, Wendy Ross & Martin Sand (eds.) - 2023 - Cham: Springer.
    Serendipity is fundamental to science. This quirky and intriguing phenomenon permeates across scientific disciplines, including the medical sciences, psychological sciences, management and organizational sciences, innovation science, philosophy and library and information sciences. Why is it so ubiquitous? Because of what it facilitates and catalyzes: scientific discoveries from velcro to Viagra, innovation of all forms, unexpected encounters of useful information, novel and important ideas, and deep reflection on how we, as individuals, organizations, communities and societies can take leaps forwards by seizing (...)
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  • Becoming Attuned.Christian Busch - 2020 - In The Serendipity Mindset: The Art and Science of Creating Good Luck. New York, USA: Penguin. pp. 1-45.
    Breaking Down the Barriers to Serendipity Life is what happens to us while we are making other plans. ALLEN SAUNDERS, AMERICAN WRITER, JOURNALIST, AND CARTOONIST.
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  • The Serendipity Mindset: The Art and Science of Creating Good Luck.Christian Busch (ed.) - 2020 - New York, USA: Penguin.
    Good luck isn’t just chance—it can be learned and leveraged—and The Serendipity Mindset explains how you can use serendipity to make life better at work, at home—everywhere. Many of us believe that the great turning points and opportunities in our lives happen by chance, that they’re out of our control. Often we think that successful people—and successful companies and organizations—are simply luckier than the rest of us. Good fortune—serendipity—just seems to happen to them. Is that true? Or are some people (...)
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  • Did Alexander Fleming Deserve the Nobel Prize?Martin Sand - 2020 - Science and Engineering Ethics 26 (2):899-919.
    Penicillin is a serendipitous discovery par excellence. But, what does this say about Alexander Fleming’s praiseworthiness? Clearly, Fleming would not have received the Nobel Prize, had not a mould accidently entered his laboratory. This seems paradoxical, since it was beyond his control. The present article will first discuss Fleming’s discovery of Penicillin as an example of moral luck in science and technology and critically assess some common responses to this problem. Second, the Control Principle that says that people are not (...)
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  • Did Alexander Fleming Deserve the Nobel Prize?Martin Sand - 2020 - Science and Engineering Ethics 26 (2):899-919.
    Penicillin is a serendipitous discovery par excellence. But, what does this say about Alexander Fleming’s praiseworthiness? Clearly, Fleming would not have received the Nobel Prize, had not a mould accidently entered his laboratory. This seems paradoxical, since it was beyond his control. The present article will first discuss Fleming’s discovery of Penicillin as an example of moral luck in science and technology and critically assess some common responses to this problem. Second, the Control Principle that says that people are not (...)
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  • Decentring the discoverer: how AI helps us rethink scientific discovery.Elinor Clark & Donal Khosrowi - 2022 - Synthese 200 (6):1-26.
    This paper investigates how intuitions about scientific discovery using artificial intelligence can be used to improve our understanding of scientific discovery more generally. Traditional accounts of discovery have been agent-centred: they place emphasis on identifying a specific agent who is responsible for conducting all, or at least the important part, of a discovery process. We argue that these accounts experience difficulties capturing scientific discovery involving AI and that similar issues arise for human discovery. We propose an alternative, collective-centred view as (...)
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  • The Discovery of the Expanding Universe: Philosophical and Historical Dimensions.Patrick M. Duerr & Abigail Holmes - manuscript
    What constitutes a scientific discovery? What role do discoveries play in science, its dynamics and social practices? Must every discovery be attributed to an individual discoverer (or a small number of discoverers)? The paper explores these questions by first critically examining extant philosophical explications of scientific discovery—the models of scientific discovery, propounded by Kuhn, McArthur, Hudson, and Schindler. As a simple, natural and powerful alternative, we proffer the “change-driver model”: in a nutshell, it takes discoveries to be cognitive scientific results (...)
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