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Galloway, Kelli R.; Malakpa, Zoebedeh; Bretz, Stacey Lowery – Journal of Chemical Education, 2016
Meaningful learning requires the integration of cognitive and affective learning with the psychomotor, i.e., hands-on learning. The undergraduate chemistry laboratory is an ideal place for meaningful learning to occur. However, accurately characterizing students' affective experiences in the chemistry laboratory can be a very difficult task. While…
Descriptors: Science Instruction, College Science, Chemistry, Science Laboratories
Oehrtman, Michael C. F. – International Group for the Psychology of Mathematics Education, 2003
The metaphorical nature of first-year calculus students' reasoning about limit concepts is explored using an instrumentalist approach. Analysis of written and verbal language reveals that, while these students used motion terminology profusely when discussing limits, it was typically not intended to signify actual motion and did not play a…
Descriptors: Motion, Vocabulary, Calculus, Figurative Language

Finegold, M.; Gorsky, P. – International Journal of Science Education, 1991
The consistency, if any, with which force concepts are used by individual students in different, but closely related, contexts was investigated. A total of 534 university and high school students were tested to elicit their beliefs about the forces acting on various objects. Students' beliefs about the forces acting on objects at rest and in…
Descriptors: Beliefs, Cognitive Processes, Concept Formation, Context Effect
Stead, Keith; Osborne, Roger – 1980
One area explored in the second (in-depth) phase of the Learning in Science Project was "children's science," defined as views of the world and the meanings for words that children have and bring with them to science lessons. The investigation reported focuses on students' thinking regarding their views on friction. Students (N=47) were…
Descriptors: Cognitive Processes, Comprehension, Concept Formation, Curriculum Development
Nemirovsky, Ricardo; Rubin, Andee – 1992
This study was designed to determine students' abilities and difficulties in articulating the relationship between function and derivative. High-school students were presented 15 problems during two 75-minute interviews in which they were asked to construct functions experimentally in three different contexts: motion, fluids, and number-change. In…
Descriptors: Air Flow, Calculus, Cognitive Development, Cognitive Processes