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The quantum-like approach to modeling classical rationality violations: an introduction

机译:模拟经典理性违规的类量子方法:简介

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Psychological empirical research has shown that human choice behavior often violates the assumptions of classical rational choice models. In the last few decades a new research field has emerged which aims to account for the observed choice behavior by resorting to the concepts and mathematical techniques developed in the realm of quantum physics, such as the "mental state vector" defined in a Hilbert space and the interference of quantum probability. This article is a short introduction to the quantum-like approach to the description of cognitive processes. I argue that the mathematical apparatus of quantum physics can account for the observed violations of classical logic and can help develop effective models of psychological and cognitive phenomena. This is illustrated through the so-called conjunction and disjunction fallacies by providing an alternative interpretation of the results of Linda test and Hawaii test. No-fallacy configurations are made possible in the quantumlike approach by sequential modeling of mental states transitions.
机译:心理学的经验研究表明,人类的选择行为经常违反经典理性选择模型的假设。在过去的几十年中,出现了一个新的研究领域,旨在通过诉诸于量子物理学领域中发展起来的概念和数学技术来解释观察到的选择行为,例如希尔伯特中定义的“心理状态矢量”。空间和量子概率的干扰。本文是对描述认知过程的类量子方法的简短介绍。我认为,量子物理学的数学仪器可以解决观察到的违反经典逻辑的问题,并且可以帮助开发有效的心理和认知现象模型。通过对林达测试和夏威夷测试的结果提供另一种解释,可以通过所谓的合取和析取谬误来说明这一点。通过对精神状态转换进行顺序建模,可以在类量子方法中实现无谬误的配置。

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