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  1. Learning Linear Spatial-Numeric Associations Improves Accuracy of Memory for Numbers.Clarissa A. Thompson & John E. Opfer - 2016 - Frontiers in Psychology 7.
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  • Core multiplication in childhood.Elizabeth S. Spelke - 2010 - Cognition 116 (2):204-216.
  • Developmental change in numerical estimation.Emily B. Slusser, Rachel T. Santiago & Hilary C. Barth - 2013 - Journal of Experimental Psychology: General 142 (1):193.
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  • From continuous magnitudes to symbolic numbers: The centrality of ratio.Pooja G. Sidney, Clarissa A. Thompson, Percival G. Matthews & Edward M. Hubbard - 2017 - Behavioral and Brain Sciences 40.
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  • Free versus anchored numerical estimation: A unified approach.John E. Opfer, Clarissa A. Thompson & Dan Kim - 2016 - Cognition 149 (C):11-17.
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  • From “sense of number” to “sense of magnitude”: The role of continuous magnitudes in numerical cognition.Tali Leibovich, Naama Katzin, Maayan Harel & Avishai Henik - 2017 - Behavioral and Brain Sciences 40.
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  • Estimating Large Numbers.David Landy, Noah Silbert & Aleah Goldin - 2013 - Cognitive Science 37 (5):775-799.
    Despite their importance in public discourse, numbers in the range of 1 million to 1 trillion are notoriously difficult to understand. We examine magnitude estimation by adult Americans when placing large numbers on a number line and when qualitatively evaluating descriptions of imaginary geopolitical scenarios. Prior theoretical conceptions predict a log-to-linear shift: People will either place numbers linearly or will place numbers according to a compressive logarithmic or power-shaped function (Barth & Paladino, ; Siegler & Opfer, ). While about half (...)
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  • The mental representation of parity and number magnitude.Stanislas Dehaene, Serge Bossini & Pascal Giraux - 1993 - Journal of Experimental Psychology: General 122 (3):371.