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Individual Differences in Inhibitory Control, Not Non-Verbal Number Acuity, Correlate with Mathematics Achievement
by
Attridge, Nina
, Cragg, Lucy
, Gilmore, Camilla
, Inglis, Matthew
, Clayton, Sarah
, Johnson, Samantha
, Marlow, Neil
, Simms, Victoria
in
Achievement
/ Achievement tests
/ Acuity
/ Arrays
/ Child
/ Child, Preschool
/ Cognitive ability
/ Core curriculum
/ Entrance examinations
/ Female
/ Health sciences
/ Humans
/ Individuality
/ Male
/ Mathematical analysis
/ Mathematical Concepts
/ Mathematics education
/ Number systems
/ Preschool education
/ Researchers
/ Skills
/ Studies
/ Task Performance and Analysis
2013
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Individual Differences in Inhibitory Control, Not Non-Verbal Number Acuity, Correlate with Mathematics Achievement
by
Attridge, Nina
, Cragg, Lucy
, Gilmore, Camilla
, Inglis, Matthew
, Clayton, Sarah
, Johnson, Samantha
, Marlow, Neil
, Simms, Victoria
in
Achievement
/ Achievement tests
/ Acuity
/ Arrays
/ Child
/ Child, Preschool
/ Cognitive ability
/ Core curriculum
/ Entrance examinations
/ Female
/ Health sciences
/ Humans
/ Individuality
/ Male
/ Mathematical analysis
/ Mathematical Concepts
/ Mathematics education
/ Number systems
/ Preschool education
/ Researchers
/ Skills
/ Studies
/ Task Performance and Analysis
2013
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Individual Differences in Inhibitory Control, Not Non-Verbal Number Acuity, Correlate with Mathematics Achievement
by
Attridge, Nina
, Cragg, Lucy
, Gilmore, Camilla
, Inglis, Matthew
, Clayton, Sarah
, Johnson, Samantha
, Marlow, Neil
, Simms, Victoria
in
Achievement
/ Achievement tests
/ Acuity
/ Arrays
/ Child
/ Child, Preschool
/ Cognitive ability
/ Core curriculum
/ Entrance examinations
/ Female
/ Health sciences
/ Humans
/ Individuality
/ Male
/ Mathematical analysis
/ Mathematical Concepts
/ Mathematics education
/ Number systems
/ Preschool education
/ Researchers
/ Skills
/ Studies
/ Task Performance and Analysis
2013
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Individual Differences in Inhibitory Control, Not Non-Verbal Number Acuity, Correlate with Mathematics Achievement
Journal Article
Individual Differences in Inhibitory Control, Not Non-Verbal Number Acuity, Correlate with Mathematics Achievement
2013
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Overview
Given the well-documented failings in mathematics education in many Western societies, there has been an increased interest in understanding the cognitive underpinnings of mathematical achievement. Recent research has proposed the existence of an Approximate Number System (ANS) which allows individuals to represent and manipulate non-verbal numerical information. Evidence has shown that performance on a measure of the ANS (a dot comparison task) is related to mathematics achievement, which has led researchers to suggest that the ANS plays a critical role in mathematics learning. Here we show that, rather than being driven by the nature of underlying numerical representations, this relationship may in fact be an artefact of the inhibitory control demands of some trials of the dot comparison task. This suggests that recent work basing mathematics assessments and interventions around dot comparison tasks may be inappropriate.
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