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September 18, 2025Chemistry Education Research and Practice4 citationsOpen Access

Towards defining, assessing and modelling competency levels in stoichiometry

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AKAudrey A. KrauseSPSebastian PolarzAHAnett Hoppe

Key Points

  • The StoiCoLe model categorizes student performance into three competency levels in stoichiometry, promoting targeted learning.
  • Data from 289 students indicate sufficient psychometric reliability of the StoiCoLe model, highlighting areas for improvement.
  • Rasch analysis revealed partial consistency of item difficulty and processing times with model assumptions, suggesting adaptations are needed.
  • Low competency levels were prevalent among students, underscoring the need for enhanced instructional strategies in chemistry education.

Abstract

Stoichiometry is a significant yet challenging topic in chemistry education. While extensive research has explored students’ conceptions, difficulties, and learning approaches, this study adopts a competency-based approach to introduce a new model defining three competency levels in stoichiometry. The stoichiometry competency level model (StoiCoLe model) offers a framework for evaluating students’ performance in algorithmic stoichiometry. To test the assumptions of the StoiCoLe model, a 40-item test was developed to measure and categorise student's competencies according to the model's levels. Using data from 289 students enrolled in an introductory chemistry course across three semesters, psychometric properties and model assumptions were analysed through Rasch-analysis and item processing times. The results indicate that there is sufficient psychometric reliability in the categorization of students according to the StoiCoLe model. However, both the item difficulty and the processing times are only partially consistent with the assumptions of the model and indicate an adaptation of the model. In line with prior studies, the majority of students exhibited lower competency levels. These findings are discussed in terms of how the competency-based approach can enhance relevant competencies and contribute to literature on chemistry education in stoichiometry.

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Cite This Study

Krause et al. (2025) studied this question.

synapsesocial.com/papers/68d461bc31b076d99fa60cc0https://doi.org/10.1039/d5rp00077g
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