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Voroshilov, Valentin – Physics Education, 2015
If a person has "a problem" to solve and knows the solution and just has to apply it (retrieve it from memory and re-act), it is not a problem--it is a task; if a person does not know the solution and has to create it--this is a problem. Using this language, there are only two situations: (a) one has to perform a task; or (b) one has to…
Descriptors: Physics, Problem Solving, Cognitive Processes, Science Process Skills
Tabor-Morris, A. E.; Froriep, K. A.; Briles, T. M.; McGuire, C. M. – Physics Education, 2009
Physics educators and researchers can be concerned with how students attain cognitive coherence: specifically, how students understand and intra-connect the whole of their knowledge of the "field of physics". Starting instead with the metaphor "city of physics", the implication of applying architectural concepts for the human acquisition of mental…
Descriptors: Urban Planning, Rhetoric, Figurative Language, Learning Strategies

Catania, Giovanna – Physics Education, 1987
Criticizes the current method of formalization in Italian schools and the use of tools of the mathematical method. Proposes a general three-stage formalization method which can used for physical quantities, the particular significance of certain quantities, and the description and interpretation of phenomena. (TW)
Descriptors: Cognitive Processes, Foreign Countries, Learning Strategies, Mathematical Applications

Adey, Philip; Shayer, Michael – Physics Education, 1988
Attempts to show that not only can density be taught to lower ability pupils but that by doing so, there is the possibility of assisting pupils to develop their reasoning powers. Lists teaching activities that help in this process. (CW)
Descriptors: Abstract Reasoning, Cognitive Ability, Cognitive Development, Cognitive Processes