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Effectiveness of a numeracy intelligent tutoring system in kindergarten: A conceptual replication

  • Ka Rene Grimes
  • , Soyoung Park
  • , Amanda McClelland
  • , Jiyeon Park
  • , Young Ri Lee
  • , Maryam Nozari
  • , Zainab Umer
  • , Brenda Zaparolli
  • , Diane Bryant
  • Tennessee Technological University
  • Western Kentucky University
  • University of Texas at Austin
  • University of Hawai'i at Mānoa

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Intelligent Tutoring Systems are a genre of highly adaptive software providing individualized instruction. The current study was a conceptual replication of a previous randomized control trial that incorporated the intelligent tutoring system Native Numbers, a program designed for early numeracy instruction. As a conceptual replication, we kept the method of instruction, the demographics, the number of kindergarten classrooms (n = 3), and the same numeracy and intrinsic motivation screeners as the original study. We changed the time of year of instruction, changed the control group to a wait-control group, added a maintenance assessment for the first group of participants, and included a mathematical language assessment. Analysis of within-and between-group differences using repeated measures ANOVA indicated gains of numeracy were significant only after using Native Numbers (Partial Eta Square = 0.147). Results of intrinsic motivation and mathematical language were not significant. The effect size of numeracy achievement did not reach that of the original study (Partial Eta Square = 0.622). Here, we compared the two studies, discussed plausible reasons for differences in the magnitude of effect sizes, and provided suggestions for future research.

Original languageEnglish
Pages (from-to)388-410
Number of pages23
JournalJournal of Numerical Cognition
Volume7
Issue number3
DOIs
StatePublished - 2021

Keywords

  • Computer-assisted instruction
  • Intelligent tutoring system
  • Kindergarten
  • Numeracy
  • Replication
  • Tablets
  • Wait-control design

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