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朝向困难的通用编码:导航一个狭窄的间隙就像记住一个额外的数字。

Towards a common code for difficulty: Navigating a narrow gap is like memorizing an extra digit.

机构信息

Department of Psychology, University of California, Riverside, CA, USA.

出版信息

Atten Percept Psychophys. 2021 Nov;83(8):3275-3284. doi: 10.3758/s13414-021-02356-4. Epub 2021 Jul 30.

Abstract

What makes a task hard or easy? The question seems easy, but answering it has been hard. The only consensus has been that, all else being equal, easy tasks can be performed by more individuals than hard tasks, and easy tasks are usually preferred over hard tasks. Feghhi and Rosenbaum (Journal of Experimental Psychology: Human Perception and Performance, 45, 983-994, 2019) asked whether task difficulty might reflect a single amodal quantity. Based on their subjects' two-alternative forced-choice data from tasks involving choices of tasks with graded physical and mental challenges, the authors showed that the difficulty of passing through a narrow gap rather than a wide gap was psychologically equivalent to memorizing an extra .55 digits. In the present study, we extended this approach by adding new arguments for the hypothesis that task difficulty might reflect a single amodal quantity (inspired by considerations of physics, economics, and the common code hypothesis for the study of perception and action), and we tested narrower gaps than before to see whether we would find a larger equivalent memory-digit. Consistent with our prediction, we obtained a value of .95. We suggest that our multi-modal two-alternative forced-choice procedure can pave the way toward a better understanding of task difficulty.

摘要

一项任务是困难还是容易?这个问题看似简单,但回答起来却很困难。唯一的共识是,在其他条件相同的情况下,简单的任务比困难的任务可以由更多的个体来完成,而且简单的任务通常比困难的任务更受欢迎。Feghhi 和 Rosenbaum(《实验心理学杂志:人类知觉与绩效》,45, 983-994, 2019)探讨了任务难度是否可能反映单一的非模态数量。基于他们的被试在涉及物理和心理挑战程度分级任务的二择一强制选择数据,作者表明,穿过狭窄间隙而不是宽阔间隙的难度在心理上相当于额外记忆 0.55 个数字。在本研究中,我们通过增加新的论据扩展了这种方法,这些论据支持了任务难度可能反映单一非模态数量的假设(受物理学、经济学和感知与动作研究的通用代码假说的启发),并且我们测试了比以前更窄的间隙,以观察我们是否会发现更大的等效记忆数字。与我们的预测一致,我们得到了 0.95 的值。我们建议,我们的多模态二择一强制选择程序可以为更好地理解任务难度铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3173/8550038/94bf93ab8c87/13414_2021_2356_Fig1_HTML.jpg

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