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Comparative estimation systems perform under severely limited workload capacity

机译:比较估计系统在严重限制的工作量容量下执行

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Like many species, humans can perform non-verbal estimates of quantity through our innate approximate number system. However, the cognitive mechanisms that govern how we compare these estimates are not well understood. Little research has addressed how the human estimation-system evaluates multiple quantities, and fewer studies have considered the cost to cognitive workload when undertaking such a task. Here, we provide a novel application of Systems Factorial Technology (SFT; Townsend and Nozawa, 1995) to a comparative estimation task. Across a series of four experiments, we assess whether quantities i.e. non-overlapping red and blue discs, are estimated simultaneously (in parallel) or sequentially (in serial), and under what restrictions to cognitive workload. Our findings reveal that two item-sets may be estimated simultaneously through a parallel estimation system, under severe restrictions to cognitive workload capacity. These restrictions were so severe, as to make the parallel estimation of two quantities less efficient than the estimation of each quantity in succession. While the estimation of a single item-set may be colloquially considered an effortless process, our results show that the estimation of multiple item-sets is a rather demanding feat. (C) 2019 Elsevier Inc. All rights reserved.
机译:像许多物种一样,人类可以通过先天近似数字系统执行数量的非口头估计。然而,控制我们如何比较这些估计的认知机制并不充分了解。很少的研究已经解决了人类估算系统如何评估多种数量,并且在进行这样的任务时,更少的研究将考虑到认知工作量的成本。在这里,我们提供了一种新颖的系统因子技术(SFT; Townsend和Nozawa,1995)的应用程序。在一系列四个实验中,我们评估是否同时(并行)或顺序估计不重叠的红色和蓝色光盘的数量。我们的研究结果表明,在严重限制的严重限制下,可以通过并行估计系统同时估计两个项目集。这些限制是如此严重的,其平行估计比连续估计每种数量的估计减少。虽然单个项目集的估计可以巧妙地被认为是一种轻松的过程,但我们的结果表明多个项目集的估计是一个相当苛刻的壮举。 (c)2019 Elsevier Inc.保留所有权利。

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