Implications of cognitive studies for teaching physics

E240980

"Implications of cognitive studies for teaching physics" is a scholarly work that applies findings from cognitive science to improve how physics is taught and learned.

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Predicate Object
instanceOf research paper
scholarly article
work on physics education
aimsTo bridge cognitive science and classroom practice
improve physics learning outcomes
improve physics teaching
inform assessment practices in physics education
inform curriculum design in physics
appliesTheory cognitive load theory
constructivist learning theory
expertise research in problem solving
information processing theory
theory of conceptual change
contributesTo evidence-based physics instruction
theoretical foundations of physics education research
field cognitive science
physics education research
science education
focusesOn cognitive constraints in learning physics
cognitive load in physics instruction
conceptual change in physics
expert–novice differences in physics problem solving
how students learn physics concepts
metacognition in physics learning
misconceptions and alternative conceptions in physics
problem-solving strategies in physics
representation of knowledge in physics
role of prior knowledge in physics learning
transfer of learning in physics
use of multiple representations in physics
intendedAudience curriculum designers in physics
education researchers
physics educators
teacher educators in physics
language English
mainTopic application of cognitive science to physics teaching
conceptual understanding in physics
instructional design in physics
learning processes in physics
student misconceptions in physics
proposes instructional strategies based on cognitive principles
methods to address student misconceptions in physics
ways to improve conceptual understanding in physics courses
usesMethod analysis of physics learning tasks
review of cognitive science research

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Edward F. Redish notableWork Implications of cognitive studies for teaching physics