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Roberto-Flórez, Eliana Edith; Arias-Rodríguez, Gladis Leonor; Herreño-Contreras, Yomaira Angélica – GIST Education and Learning Research Journal, 2022
This paper reports qualitative research on constructing critical thinking scenarios in online legal English classes at a private university in Colombia. This study aimed to enhance law students' critical thinking skills development in EFL (English as a Foreign Language) classroom through virtual tools by implementing a descriptive case analysis.…
Descriptors: English for Special Purposes, Second Language Learning, Second Language Instruction, Inferences
Austerweil, Joseph L.; Griffiths, Thomas L.; Palmer, Stephen E. – Cognitive Science, 2017
How does the visual system recognize images of a novel object after a single observation despite possible variations in the viewpoint of that object relative to the observer? One possibility is comparing the image with a prototype for invariance over a relevant transformation set (e.g., translations and dilations). However, invariance over…
Descriptors: Prior Learning, Inferences, Visual Acuity, Recognition (Psychology)
Wareham, Todd; Evans, Patricia; van Rooij, Iris – Journal of Problem Solving, 2011
Solving new problems can be made easier if one can build on experiences with other problems one has already successfully solved. The ability to exploit earlier problem-solving experiences in solving new problems seems to require several cognitive sub-abilities. Minimally, one needs to be able to retrieve relevant knowledge of earlier solved…
Descriptors: Logical Thinking, Problem Solving, Difficulty Level, Computation
Nokes, Timothy J.; Hausmann, Robert G. M.; VanLehn, Kurt; Gershman, Sophia – Instructional Science: An International Journal of the Learning Sciences, 2011
Cognitive science principles should have implications for the design of effective learning environments. The self-explanation principle was chosen for the current work because it has developed significantly over the last 20 years. Early formulations hypothesized that self-explanation facilitated inference generation to supply missing information…
Descriptors: Prior Learning, Physics, Cognitive Psychology, Cognitive Science
Torres, Tarcilo; Milicic, Beatriz; Soto, Carlos; Sanjose, Vicente – EURASIA Journal of Mathematics, Science & Technology Education, 2013
Physics teachers use experimental devices to show students how scientific concepts, principles, and laws are applied to understand the real world. This paper studies question generation of secondary and under-graduate university students when they are confronted with experimental devices in different but usual teaching situations: reading about…
Descriptors: Physics, Science Instruction, Inquiry, Questioning Techniques
Jones, Rachael Adams – Science Teacher, 2012
Too often, teachers scratch their heads and ask, "What were my students thinking?" then answer, "I don't want to know." But teachers should want to know, and students should question their own thinking, as well. Critical thinking involves not just problem solving, creativity, analysis, and synthesis but also self-awareness of learning and learning…
Descriptors: Educational Strategies, Learning Strategies, Critical Thinking, Misconceptions
Chasseigne, Gerard; Giraudeau, Caroline; Lafon, Peggy; Mullet, Etienne – European Journal of Psychology of Education, 2011
The study examined the knowledge of the functional relations between potential difference, magnitude of current, and resistance among seventh graders, ninth graders, 11th graders (in technical schools), and college students. It also tested the efficiency of a learning device named "functional learning" derived from cognitive psychology on the…
Descriptors: Physics, Grade 9, Cognitive Psychology, Grade 7

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