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April 19, 2026Journal of Intelligence0 citationsOpen Access

From Abstract to Domain-Specific: Development and Validation of Matrix Reasoning Tasks for Students in Biology

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CPColin PeperkornBielefeld UniversityCWClaas Wegner

Key Points

  • The aim is to develop and validate matrix reasoning tasks that specifically assess biological contexts for identifying gifted students.
  • Developed tailored matrix reasoning tasks for biology education.
  • Evaluated tasks through two research cycles with a total of 895 students.
  • Conducted item analysis using item response theory to assess task parameters.
  • Performed correlation analyses between matrix reasoning and biological achievement.
  • The tasks showed acceptable item parameters and fit indices.
  • Moderate-to-strong correlations were observed with IQ and biological inquiry achievement.
  • Gifted students in biology performed better than non-gifted peers, indicating known-groups validity.

Abstract

Matrix reasoning tests are frequently used to measure intelligence and identify gifted students across domains. To date, there is limited evidence on the usefulness of contextualised tasks for identifying domain-specific giftedness. In the current study, matrix reasoning tasks tailored to biological contexts were developed and validated for students in grades 3–6. The tasks were evaluated across two research cycles, involving a total of N = 895 students (n1 = 470; n2 = 425). An item analysis based on item response theory indicated acceptable item parameters and fit indices for the final item pool. Correlation analyses revealed moderate-to-strong associations with IQ, assessed via abstract matrix reasoning, as well as with domain-specific achievement in biological inquiry processes. A known-groups comparison revealed that students identified as gifted in biology outperformed a comparison group of peers, providing preliminary known-groups validity evidence for the developed tasks. Overall, the matrix reasoning tasks tailored to biology showed acceptable psychometric properties, demonstrated positive correlations with achievement in biological inquiry, and the study provided initial evidence of their usefulness for identifying gifted students in biology.

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Cite This Study

Peperkorn et al. (2026) studied this question.

synapsesocial.com/papers/69e47440010ef96374d8ffbfhttps://doi.org/10.3390/jintelligence14040069
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Also Consider

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