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Molecular misconceptions

A cross-national study on university students’ understanding of the mole concept

Bibliographic Data

ID22188564
AuthorsLourdes Arjona (0000-0002-0679-4337, Universidad de Panamá), E García Vázquez (0000-0003-0930-154X), Luisa Morales-Maure (0000-0003-3905-9002, Universidad de Panamá), Abdiel Aponte (Universidad de Panamá), Samuel Rodríguez (0000-0002-5869-3896, Universidad de Panamá), Irene Castillero (Universidad de Panamá), Elisa Mendoza (0000-0003-0089-6436, Universidad de Panamá), Agustín Alfredo Torres Rodríguez (0000-0001-9112-3070, Tecnológico Nacional de México), Agustín Torres-Rodriguez, Loreley Morejón-Alonso (Institute of General and Inorganic Chemistry), José María Quintero (International Maritime University of Panama), Gerardo Cáceres (0000-0002-7029-6754, Universidad de Panamá), Enrique Castro-Martínez (0000-0002-2786-500X, Universidad de Panamá), Eduardo Flores Castro
Year2024
Volume8
Issue11
Pages8610
Publication date2024-10-22
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueJournal of Infrastructure Policy and Development (JOURNAL)
Journal identifiersISSN: 2572-7923 • E-ISSN: 2572-7931
PublisherEnPress Publisher (PUBLISHER)
DOI10.24294/jipd.v8i11.8610
OpenAlexW4403594443
LanguageEN

This study investigates university students’ understanding of the mole concept and its implications for chemistry education, highlighting the critical role of mathematical education. A questionnaire was administered to 303 students from universities in Panama, Mexico, Cuba, Chile, and Spain. The results reveal that only 29.7% of participants recognize the mole as a fundamental unit, while 20.8% confuse the amount of substance with a non-existent “Chemical System.” Only 18.5% correctly identified the substance quantity symbol as “n” and 32.7% were aware that Wilhelm Ostwald introduced the term mole, indicating deficiencies in historical knowledge. The significance of these findings highlights major misconceptions and gaps in both conceptual understanding and historical knowledge, underscoring the urgent need for revised teaching strategies. Addressing these issues is crucial for bridging the gap between theoretical knowledge and practical application, thereby enhancing instructional methods and optimizing chemistry education to improve students’ comprehension of fundamental concepts

Mathematics education · Mole · Chemistry · Psychology · Science Education and Pedagogy · Organic Chemistry

Citation velocityhistorical
Highly citedNo
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