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Nicholas D. Duran; Amie Paige; Sidney K. D'Mello – Cognitive Science, 2024
Cocreating meaning in collaboration is challenging. Success is often determined by people's abilities to coordinate their language to converge upon shared mental representations. Here we explore one set of low-level linguistic behaviors, linguistic alignment, that both emerges from, and facilitates, outcomes of high-level convergence. Linguistic…
Descriptors: Task Analysis, Semantics, Syntax, Problem Solving
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Adriana Chee Jing Chieng; Camille J. Wynn; Tze Peng Wong; Tyson S. Barrett; Stephanie A. Borrie – Cognitive Science, 2024
Lexical alignment, a communication phenomenon where conversational partners adapt their word choices to become more similar, plays an important role in the development of language and social communication skills. While this has been studied extensively in the conversations of preschool-aged children and their parents in Western, Educated,…
Descriptors: Interpersonal Relationship, Adults, Children, Interpersonal Communication
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William P. McCarthy; David Kirsh; Judith E. Fan – Cognitive Science, 2023
The ability to reason about how things were made is a pervasive aspect of how humans make sense of physical objects. Such reasoning is useful for a range of everyday tasks, from assembling a piece of furniture to making a sandwich and knitting a sweater. What enables people to reason in this way even about novel objects, and how do people draw…
Descriptors: Abstract Reasoning, Scientific Concepts, Manipulative Materials, Task Analysis
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Król, Michal; Król, Magdalena E. – Cognitive Science, 2022
Existing research demonstrates that pre-decisional information sampling strategies are often stable within a given person while varying greatly across people. However, it remains largely unknown what drives these individual differences, that is, why in some circumstances we collect information more idiosyncratically. In this brief report, we…
Descriptors: Spatial Ability, Information Seeking, Sampling, Decision Making
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Schatz, Jule; Jones, Steven J.; Laird, John E. – Cognitive Science, 2022
The Remote Associates Test (RAT) is a word association retrieval task that consists of a series of problems, each with three seemingly unrelated prompt words. The subject is asked to produce a single word that is related to all three prompt words. In this paper, we provide support for a theory in which the RAT assesses a person's ability to…
Descriptors: Association Measures, Associative Learning, Recall (Psychology), Long Term Memory
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Weis, Patrick P.; Wiese, Eva – Cognitive Science, 2019
When incorporating the environment into mental processing (cf., "cognitive offloading"), one creates novel cognitive strategies that have the potential to improve task performance. Improved performance can, for example, mean faster problem solving, more accurate solutions, or even higher grades at university. Although cognitive…
Descriptors: Problem Solving, Goal Orientation, Performance, Cognitive Processes
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Dewi, Jasinta D. M.; Bagnoud, Jeanne; Thevenot, Catherine – Cognitive Science, 2021
As a theory of skill acquisition, the instance theory of automatization posits that, after a period of training, algorithm-based performance is replaced by retrieval-based performance. This theory has been tested using alphabet-arithmetic verification tasks (e.g., is A + 4 = E?), in which the equations are necessarily solved by counting at the…
Descriptors: Skill Development, Training, Task Analysis, Learning Theories
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Brooks, Neon B.; Barner, David; Frank, Michael; Goldin-Meadow, Susan – Cognitive Science, 2018
People frequently gesture when problem-solving, particularly on tasks that require spatial transformation. Gesture often facilitates task performance by interacting with internal mental representations, but how this process works is not well understood. We investigated this question by exploring the case of mental abacus (MA), a technique in which…
Descriptors: Nonverbal Communication, Problem Solving, Computation, Schemata (Cognition)
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Cohen, Dale J.; Blanc-Goldhammer, Daryn; Quinlan, Philip T. – Cognitive Science, 2018
Current understanding of the development of quantity representations is based primarily on performance in the number-line task. We posit that the data from number-line tasks reflect the observer's underlying representation of quantity, together with the cognitive strategies and skills required to equate line length and quantity. Here, we specify a…
Descriptors: Mathematical Models, Mathematics Skills, Problem Solving, Mathematical Concepts
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Simms, Nina K.; Richland, Lindsey E. – Cognitive Science, 2019
Relational reasoning is a hallmark of human higher cognition and creativity, yet it is notoriously difficult to encourage in abstract tasks, even in adults. Generally, young children initially focus more on objects, but with age become more focused on relations. While prerequisite knowledge and cognitive resource maturation partially explains this…
Descriptors: Thinking Skills, Schemata (Cognition), Age Differences, Correlation
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Ritter, Frank E.; Bibby, Peter A. – Cognitive Science, 2008
We have developed a process model that learns in multiple ways while finding faults in a simple control panel device. The model predicts human participants' learning through its own learning. The model's performance was systematically compared to human learning data, including the time course and specific sequence of learned behaviors. These…
Descriptors: Problem Solving, Artificial Intelligence, Comparative Analysis, Task Analysis
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Prather, Richard W.; Alibali, Martha W. – Cognitive Science, 2008
Previous work has investigated adults' knowledge of principles for arithmetic with positive numbers (Dixon, Deets, & Bangert, 2001). The current study extends this past work to address adults' knowledge of principles of arithmetic with a negative number, and also investigates links between knowledge of principles and problem representation.…
Descriptors: Numbers, Problem Solving, Word Problems (Mathematics), Equations (Mathematics)
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Trickett, Susan Bell; Trafton, J. Gregory – Cognitive Science, 2007
The term "conceptual simulation" refers to a type of everyday reasoning strategy commonly called "what if" reasoning. It has been suggested in a number of contexts that this type of reasoning plays an important role in scientific discovery; however, little "direct" evidence exists to support this claim. This article proposes that conceptual…
Descriptors: Logical Thinking, Scientists, Inferences, Models