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Crupi, Vincenzo; Nelson, Jonathan D.; Meder, Björn; Cevolani, Gustavo; Tentori, Katya – Cognitive Science, 2018
Searching for information is critical in many situations. In medicine, for instance, careful choice of a diagnostic test can help narrow down the range of plausible diseases that the patient might have. In a probabilistic framework, test selection is often modeled by assuming that people's goal is to reduce uncertainty about possible states of the…
Descriptors: Information Theory, Cognitive Processes, Information Seeking, Probability
Çöltekin, Çagri – Cognitive Science, 2017
This study investigates a strategy based on predictability of consecutive sub-lexical units in learning to segment a continuous speech stream into lexical units using computational modeling and simulations. Lexical segmentation is one of the early challenges during language acquisition, and it has been studied extensively through psycholinguistic…
Descriptors: Speech Communication, Phonemes, Prediction, Computational Linguistics
Rafferty, Anna N.; LaMar, Michelle M.; Griffiths, Thomas L. – Cognitive Science, 2015
Watching another person take actions to complete a goal and making inferences about that person's knowledge is a relatively natural task for people. This ability can be especially important in educational settings, where the inferences can be used for assessment, diagnosing misconceptions, and providing informative feedback. In this paper, we…
Descriptors: Inferences, Knowledge Level, Educational Games, Computer Simulation
Lerner, Itamar; Bentin, Shlomo; Shriki, Oren – Cognitive Science, 2012
Localist models of spreading activation (SA) and models assuming distributed representations offer very different takes on semantic priming, a widely investigated paradigm in word recognition and semantic memory research. In this study, we implemented SA in an attractor neural network model with distributed representations and created a unified…
Descriptors: Priming, Memory, Models, Word Recognition
Moller, Ralf; Schenck, Wolfram – Cognitive Science, 2008
We show that simple perceptual competences can emerge from an internal simulation of action effects and are thus grounded in behavior. A simulated agent learns to distinguish between dead ends and corridors without the necessity to represent these concepts in the sensory domain. Initially, the agent is only endowed with a simple value system and…
Descriptors: Prediction, Schemata (Cognition), Computer Simulation, Models
Jones, Gary; Gobet, Fernand; Pine, Julian M. – Cognitive Science, 2008
Increasing working memory (WM) capacity is often cited as a major influence on children's development and yet WM capacity is difficult to examine independently of long-term knowledge. A computational model of children's nonword repetition (NWR) performance is presented that independently manipulates long-term knowledge and WM capacity to determine…
Descriptors: Short Term Memory, Computer Simulation, Child Development, Models
Salvucci, Dario D. – Cognitive Science, 2005
As cognitive architectures move to account for increasingly complex real-world tasks, one of the most pressing challenges involves understanding and modeling human multitasking. Although a number of existing models now perform multitasking in real-world scenarios, these models typically employ customized executives that schedule tasks for the…
Descriptors: Cognitive Processes, Models, Behavior Patterns, Computer Simulation
Scheutz, Matthias J.; Eberhard, Kathleen M. – Cognitive Science, 2004
A central issue in bilingual research concerns the extent to which linguistic representations in the two languages are processed independently of each other. This paper reports the results of an empirical study and a model stimulation, which provide evidence for the interactive view, which holds that processing is not independent. Specifically, a…
Descriptors: Morphology (Languages), Syntax, Bilingual Education, Bilingualism

Rumelhart, David E.; Zipser, David – Cognitive Science, 1985
Reports results of studies with an unsupervised learning paradigm called competitive learning which is examined using computer simulation and formal analysis. When competitive learning is applied to parallel networks of neuron-like elements, many potentially useful learning tasks can be accomplished. (Author)
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Simulation, Input Output

LeBlanc, Mark D.; Weber-Russell, Sylvia – Cognitive Science, 1996
A growing body of empirical and theoretical work indicates that young children (grades K-3) have difficulties solving word problems because of deficient language and text comprehension strategies. Describes a computer simulation designed to model working memory demands in "bottom-up" comprehension of arithmetic word problems, offering a…
Descriptors: Children, Cognitive Processes, Computer Simulation, Elementary School Mathematics