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dc.contributor.authorNechypurenko, Pavlo P.-
dc.contributor.authorTashtan, Tetiana V.-
dc.contributor.authorSemerikov, Serhiy O.-
dc.date.accessioned2026-07-11T14:50:54Z-
dc.date.available2026-07-11T14:50:54Z-
dc.date.issued2025-07-25-
dc.identifier.citationNechypurenko, P.P., Tashtan, T.V. and Semerikov, S.O., 2025. Programmed learning in chemistry education: a critical review of theory, application, and effectiveness. Science Education Quarterly [Online], 2(3), pp.170–193. Available from: https://doi.org/10.55056/seq.962uk_UA
dc.identifier.issn3065-7210-
dc.identifier.urihttps://doi.org/10.55056/seq.962-
dc.identifier.urihttp://ds.knu.edu.ua/jspui/handle/123456789/9290-
dc.descriptionThis scoping review examines the historical trajectory, theoretical underpinnings, and efficacy of programmed learning in chemistry education from its behaviourist origins to contemporary adaptive learning systems. Through a systematic analysis of the literature following PRISMA-ScR guidelines, we mapped the field's evolution across secondary and tertiary education levels. Our findings reveal that programmed learning, when applied to specific chemistry domains such as stereochemistry and chemical bonding, shows moderate effectiveness in enhancing conceptual understanding and student achievement. The contemporary manifestations of programmed learning principles in technology-enhanced, adaptive learning environments demonstrate particular promise for personalising instruction and addressing diverse student needs. However, challenges persist in fostering higher-order thinking skills and in implementation contexts with limited resources. This review highlights the importance of balancing structured guidance with constructivist approaches, identifying a theoretical convergence that maintains programmed learning's systematic design while incorporating student-centred pedagogies. Critical gaps include limited longitudinal studies examining knowledge retention and insufficient research on teacher experiences and implementation fidelity. We present an integrative framework for future programmed learning applications in chemistry education that emphasises adaptive scaffolding, contextualised learning, and metacognitive development.uk_UA
dc.description.abstractThis scoping review examines the historical trajectory, theoretical underpinnings, and efficacy of programmed learning in chemistry education from its behaviourist origins to contemporary adaptive learning systems. Through a systematic analysis of the literature following PRISMA-ScR guidelines, we mapped the field's evolution across secondary and tertiary education levels. Our findings reveal that programmed learning, when applied to specific chemistry domains such as stereochemistry and chemical bonding, shows moderate effectiveness in enhancing conceptual understanding and student achievement. The contemporary manifestations of programmed learning principles in technology-enhanced, adaptive learning environments demonstrate particular promise for personalising instruction and addressing diverse student needs. However, challenges persist in fostering higher-order thinking skills and in implementation contexts with limited resources. This review highlights the importance of balancing structured guidance with constructivist approaches, identifying a theoretical convergence that maintains programmed learning's systematic design while incorporating student-centred pedagogies. Critical gaps include limited longitudinal studies examining knowledge retention and insufficient research on teacher experiences and implementation fidelity. We present an integrative framework for future programmed learning applications in chemistry education that emphasises adaptive scaffolding, contextualised learning, and metacognitive development.uk_UA
dc.language.isoenuk_UA
dc.publisherAcademy of Cognitive and Natural Sciencesuk_UA
dc.subjectprogrammed learninguk_UA
dc.subjectchemistry educationuk_UA
dc.subjectadaptive learning systemsuk_UA
dc.subjectscoping reviewuk_UA
dc.subjecthigher-order thinking skillsuk_UA
dc.subjecteducational technologyuk_UA
dc.titleProgrammed learning in chemistry education: a critical review of theory, application, and effectivenessuk_UA
dc.typeArticleuk_UA
dc.identifier.doihttps://doi.org/10.55056/seq.962-
local.submitter.emailsemerikov@ccjourn...uk_UA
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