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Radvansky, Gabriel A.; Doolen, Abigail C.; Pettijohn, Kyle A.; Ritchey, Maureen – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
The forgetting curve is one of the most well known and established findings in memory research. Knowing the pattern of memory change over time can provide insight into underlying cognitive mechanisms. The default understanding is that forgetting follows a continuous, negatively accelerating function, such as a power function. We show that this…
Descriptors: Memory, Retention (Psychology), Short Term Memory, Long Term Memory
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Elisabeth C. McLane; S. Kyle Hatcher; Diana Selmeczy – Child Development, 2025
Prioritizing what information to learn based on value is a critical developmental skill. Across two studies, value-based memory was assessed predominately in White children aged 6- to 7-years-old and 9- to 10-years-old using a nationwide sample collected between 2020 and 2023. Children learned cue-target associations worth varying point values.…
Descriptors: Memory, Learning Strategies, Whites, Children
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Yadi Yu; Wenbo Zhao; Anran Li; David R. Shanks; Xiao Hu; Liang Luo; Chunliang Yang – Educational Psychology Review, 2025
Retrieval practice is well-established as a powerful tool for reinforcing long-term learning. Most previous research has concentrated on the effectiveness of overt retrieval, involving recalling information from memory and generating overt responses by writing, typing, or speaking aloud the retrieved information. Here we ask whether covert…
Descriptors: Recall (Psychology), Cognitive Processes, Learning Strategies, Meta Analysis
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Shruthi Sukhadev Jarali – Journal on Educational Psychology, 2024
The various ways in which forgetting, an inherent component of the human memory process, occurs are essential for understanding cognitive function and memory control. This paper investigates the main categories of forgetting, including retrieval failure, decay, interference, motivated or conscious forgetting, and encoding failures. Retrieval…
Descriptors: Memory, Mnemonics, Cognitive Processes, Recall (Psychology)
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Cyr, Véronique; Poirier, Marie; Yearsley, James M.; Guitard, Dominic; Harrigan, Isabelle; Saint-Aubin, Jean – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
The production effect is a well-established finding: If some words within a list are read aloud, that is, produced, they are better remembered than their silently read neighbors. The effect has been extensively studied with long-term memory tasks. Recently, using immediate serial recall and short-term order reconstruction, Saint-Aubin et al.…
Descriptors: Long Term Memory, Short Term Memory, Recall (Psychology), Retention (Psychology)
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Dillon H. Murphy; Shawn T. Schwartz; Alan D. Castel – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2024
Value-directed remembering refers to the tendency to best remember important information at the expense of less valuable information, and this ability may draw on strategic attentional processes. In six experiments, we investigated the role of attention in value-directed remembering by examining memory for important information under conditions of…
Descriptors: Attention Control, Memory, Cognitive Processes, Recall (Psychology)
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Wuji Lin; Chenxi Lv; Jiejie Liao; Yuan Hu; Yutong Liu; Jingyuan Lin – npj Science of Learning, 2024
The debate about whether the capacity of working memory (WM) varies with the complexity of memory items continues. This study employed novel experimental materials to investigate the role of complexity in WM capacity. Across seven experiments, we explored the relationship between complexity and WM capacity. The results indicated that the…
Descriptors: Short Term Memory, Difficulty Level, Retention (Psychology), Test Items
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Ruoyu Lu; Yinuo Xu; Jiyu Xu; Tengfei Wang; Zhi Li – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2024
Free time in a working memory task often improves the recall performances of the to-be-remembered items. It is still debated whether the free-time effect in working memory is purely proactive, purely retroactive, or both proactive and retroactive. In the present study, we used the single-gap paradigm to explore this question. In Experiment 1, we…
Descriptors: Bayesian Statistics, Foreign Countries, Short Term Memory, Time Perspective
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Taewon Kim; Hakjoo Kim; Benjamin A. Philip; David L. Wright – npj Science of Learning, 2024
The primary motor cortex (M1) is crucial for motor skill learning. We examined its role in interleaved practice, which enhances retention (vs. repetitive practice) through M1-dependent consolidation. We hypothesized that cathodal transcranial direct current stimulation (ctDCS) to M1 would disrupt retention. We found that ctDCS reduced retention…
Descriptors: Perceptual Motor Learning, Brain Hemisphere Functions, Cognitive Processes, Retention (Psychology)
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Pratte, Michael S.; Green, Marshall L. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2023
People vary in their performance on visual working memory tasks, and these individual differences covary with a wide range of higher-level cognitive processes including fluid intelligence. Performance also varies across study displays, purportedly driven by both low- and higher-level processes. Understanding what causes these sources of systematic…
Descriptors: Short Term Memory, Visual Perception, Individual Differences, Cognitive Processes
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Chen, Shuang; Wang, Yuejuan; Yan, Weiwei – Journal of Psycholinguistic Research, 2023
There is a heated debate on a learning paradigm known as "fast mapping" for its early neocortical dependence and retained memory over time for amnesic patients with hippocampal system damage. Whether the fast mapping allows hippocampus independent learning and induces rapid integration is poorly understood. The present study aims to…
Descriptors: Memory, Retention (Psychology), Vocabulary Development, Neurological Impairments
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Yicong Zheng; Pengyuan Sun; Xiaonan L. Liu – npj Science of Learning, 2023
Numerous studies have shown that learned information practiced by testing is better retained than that practiced by restudying (the testing effect). However, results are inconsistent regarding the effect of working memory (WM) capacity on the testing effect. Here, we hypothesize that the effect of WM only emerges when task demands challenge WM…
Descriptors: Short Term Memory, Retention (Psychology), Cognitive Processes, Undergraduate Students
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Wang, Serene Y.; Baker, Kirsten C.; Culbreth, Jessica L.; Tracy, Olivia; Arora, Madison; Liu, TingTong; Morris, Sydney; Collins, Megan B.; Wamsley, Erin J. – Learning & Memory, 2021
Sleep following learning facilitates the consolidation of memories. This effect has often been attributed to sleep-specific factors, such as the presence of sleep spindles or slow waves in the electroencephalogram (EEG). However, recent studies suggest that simply resting quietly while awake could confer a similar memory benefit. In the current…
Descriptors: Sleep, Memory, Learning, Recall (Psychology)
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Jazbutis, Olivia R.; Wiseheart, Melody; Radvansky, Gabriel A.; McNeil, Nicole M. – Journal of Numerical Cognition, 2023
Arithmetic is commonly taught through timed practice and drill, yet little research exists to guide optimal practice structure. This study investigated the effects of distributed practice and time pressure on the acquisition and retention of arithmetic facts. Following a pretest, adult participants (n = 211) were randomly assigned to learn…
Descriptors: Arithmetic, Mathematics Skills, Time Factors (Learning), Retention (Psychology)
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Yang, Chunliang; Zhao, Wenbo; Luo, Liang; Sun, Bukuan; Potts, Rosalind; Shanks, David R. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
An emerging body of studies demonstrates that practicing retrieval of studied information, by comparison with restudying or no treatment, can facilitate subsequent learning and retrieval of new information, a phenomenon termed the 'forward testing effect' (FTE) or 'test-potentiated new learning." Several theoretical explanations have been…
Descriptors: Cognitive Processes, Learning Processes, Memory, Retention (Psychology)
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