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协调碰撞物体的直觉物理和牛顿力学。

Reconciling intuitive physics and Newtonian mechanics for colliding objects.

机构信息

Department of Psychology, University of Warwick, Coventry, England.

出版信息

Psychol Rev. 2013 Apr;120(2):411-37. doi: 10.1037/a0031912. Epub 2013 Mar 4.

Abstract

People have strong intuitions about the influence objects exert upon one another when they collide. Because people's judgments appear to deviate from Newtonian mechanics, psychologists have suggested that people depend on a variety of task-specific heuristics. This leaves open the question of how these heuristics could be chosen, and how to integrate them into a unified model that can explain human judgments across a wide range of physical reasoning tasks. We propose an alternative framework, in which people's judgments are based on optimal statistical inference over a Newtonian physical model that incorporates sensory noise and intrinsic uncertainty about the physical properties of the objects being viewed. This noisy Newton framework can be applied to a multitude of judgments, with people's answers determined by the uncertainty they have for physical variables and the constraints of Newtonian mechanics. We investigate a range of effects in mass judgments that have been taken as strong evidence for heuristic use and show that they are well explained by the interplay between Newtonian constraints and sensory uncertainty. We also consider an extended model that handles causality judgments, and obtain good quantitative agreement with human judgments across tasks that involve different judgment types with a single consistent set of parameters.

摘要

当物体发生碰撞时,人们对于它们之间相互影响的直觉非常强烈。由于人们的判断似乎与牛顿力学相偏离,心理学家认为人们依赖于各种特定于任务的启发式方法。这就留下了一个问题,即这些启发式方法如何被选择,以及如何将它们整合到一个统一的模型中,该模型可以解释人们在广泛的物理推理任务中的判断。我们提出了一个替代框架,其中人们的判断是基于对包含感官噪声和对所观察物体物理特性内在不确定性的牛顿物理模型的最佳统计推断。这个带有噪声的牛顿框架可以应用于多种判断,人们的答案由他们对物理变量的不确定性和牛顿力学的约束决定。我们研究了大量的质量判断效应,这些效应被认为是启发式使用的有力证据,并且表明它们很好地解释了牛顿力学约束和感官不确定性之间的相互作用。我们还考虑了一个扩展的模型,用于处理因果判断,并在涉及不同判断类型的任务中获得了与人类判断的良好定量一致性,这些任务使用的是一组一致的参数。

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