科学家的科学哲学:科学的概率解释

S. Ishikawa
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引用次数: 2

摘要

最近我们提出了“量子语言”(或者“量子力学的哥本哈根语言解释”、“测量理论”)作为科学的语言。这一理论主张科学的概率解释(=语言量子力学世界观),是对玻恩量子力学的概率解释的一种数学推广。本文研究了与测量密切相关的科学哲学中最基本的问题,如亨佩尔的雷文悖论、休谟的归纳法问题、古德曼的格鲁悖论、皮尔斯的溯因法、旗杆问题等。我们认为,没有基本的科学理论和公理,这些问题永远无法解决。由于我们的世界观(=量子语言)有关于测量的公理,这些问题可以很容易地解决。因此,我们认为量子语言是科学哲学的中心理论。因此,我们有理由断言,量子语言为科学提供了数学基础。
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Philosophy of Science for Scientists: The Probabilistic Interpretation of Science
Recently we proposed “quantum language” (or, “the linguistic Copenhagen interpretation of quantum mechanics”, “measurement theory”) as the language of science. This theory asserts the probabilistic interpretation of science (=the linguistic quantum mechanical worldview), which is a kind of mathematical generalization of Born’s probabilistic interpretation of quantum mechanics. In this paper, we consider the most fundamental problems in philosophy of science such as Hempel’s raven paradox, Hume’s problem of induction, Goodman’s grue paradox, Peirce’s abduction, flagpole problem, which are closely related to measurement. We believe that these problems can never be solved without the basic theory of science with axioms. Since our worldview (=quantum language) has the axiom concerning measurement, these problems can be solved easily. Thus we believe that quantum language is the central theory in philosophy of science. Hence there is a reason to assert that quantum language gives the mathematical foundations to science.
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