Skip to main content

The Effects of ALEKS on Mathematics Learning in K-12 and Higher Education: A Meta-Analysis

A comprehensive meta-analysis evaluating the impact of McGraw Hill's ALEKS adaptive learning system on mathematics achievement.

  • PreK-12
  • Education Research
  • Kindergarten
  • 1st Grade
  • 2nd Grade
  • 3rd Grade
  • 4th Grade
  • 5th Grade
  • 6th Grade
  • 7th Grade
  • 8th Grade
  • 9th Grade
  • 10th Grade
  • 11th Grade
  • 12th Grade
  • Elementary School
  • Middle School
  • High School
  • Math
  • ALEKS
  • Meta-Analysis

Description

Article Abstract:

As remote learning technologies play an increasingly larger role in education, clear evidence of effectiveness is needed for widely used online learning technologies, such as Assessment and LEarning in Knowledge Spaces (ALEKS). By adapting to individual students' knowledge states and personalizing interactive practice and feedback, ALEKS may potentially support learning in mathematics, which is foundational for success in science, technology, engineering, and mathematics fields. Given the mixed findings about the effects of ALEKS in previous research, we conducted a meta-analysis to examine if ALEKS was as effective as traditional instruction in mathematics education. Our analysis included 56 independent effect sizes obtained from 9,238 students in K-12 schools and institutions of higher education participating in 33 research studies between 2000 and August 2020. Results indicated that learning performance with ALEKS was comparable to that with traditional instruction (Hedge's g = 0.05, 95% CI [−0.01, 0.20]) and ALEKS was especially effective when used to supplement traditional instruction (g = 0.43, 95% CI [0.02, 0.83]). These findings have important implications for using ALEKS in mathematics learning across different levels of education.

Research Citation:

Sun, S., Else-Quest, N. M., Hodges, L. C., French, A. M., & Dowling, R. (2021). The effects of ALEKS on mathematics learning in K-12 and higher education: A meta-analysis. Investigations in Mathematics Learning, 13(3), 182-196.

Visit Article Page