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Autor/inn/enFurio, C.; Calatayud, M. L.; Barcenas, S. L.; Padilla, O. M.
TitelFunctional fixedness and functional reduction as common sense reasonings in chemical equilibrium and in geometry and polarity of molecules.
QuelleIn: Science education, 84 (2000) 5, S. 545-565Infoseite zur ZeitschriftVerfügbarkeit 
Spracheenglisch
Dokumenttypgedruckt; Zeitschriftenaufsatz
ISSN0036-8326
SchlagwörterAlltagswissen; Lernschwierigkeit; Prozedurales Wissen; Molekül; Chemie; Gleichgewicht
AbstractMany of the learning difficulties in the specific domain of chemistry are found not only in the ideas already possessed by students but in the strategic and procedural knowledge that is characteristic of everyday thinking. These defects in procedural knowledge have been described as functional fixedness and functional reduction. This article assesses the procedural difficulties of students (grade 12 and first and third year of university) based on common sense reasoning in two areas of chemistry: chemical equilibrium and geometry and polarity of molecules. In the first area, the theme of external factors affecting equilibria (temperature and concentration change) was selected because the explanations given by the students could be analyzed easily. The existence of a functional fixedness where Le Chatelier's principle was almost exclusively applied by rote could be observed, with this being the cause of the incorrect responses given to the proposed items. Functional fixedness of the Lewis structure also led to an incorrect prediction of molecular geometry. When molecular geometry was correctly determined by the students, it seemed that other methodological or procedural difficulties appeared when the task was to determine molecular polarity. The students showed a tendency, in many cases, to reduce the factors affecting molecular polarity in two possible ways: (a) assuming that polarity depends only on shape ("geometric functional reduction") or (b) assuming that molecular polarity depends only on the polarity of bonds ("bonding functional reduction").
Erfasst vonArbeitsgruppe Didaktik der Physik, Universität Kassel
Update2002_(CD)
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