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Nathan, Mitchell J. – Educational Psychologist, 2012
I explore a belief about learning and teaching that is commonly held in education and society at large that nonetheless is deeply flawed. The belief asserts that mastery of "formalisms"--specialized representations such as symbolic equations and diagrams with no inherent meaning except that which is established by convention--is prerequisite to…
Descriptors: Conferences (Gatherings), Problem Based Learning, Problem Solving, Teaching Methods
Hong, Jon-Chao; Chen, Mei-Yung; Wong, Ashley; Hsu, Tsui-Fang; Peng, Chih-Chi – International Journal of Technology and Design Education, 2012
In a contest featuring hands-on projects, college students were required to design a simple crawling worm using planning, self-monitoring and self-evaluation processes to solve contradictive problems. To enhance the efficiency of problem solving, one needs to practice meta-cognition based on an application of related scientific concepts. The…
Descriptors: Physics, Competition, Scientific Concepts, Hands on Science
Tatzl, Dietmar; Messnarz, Bernd – European Journal of Engineering Education, 2013
This article investigates the influence of English as the examination language on the solution of physics and science problems by non-native speakers in tertiary engineering education. For that purpose, a statistically significant total number of 96 students in four year groups from freshman to senior level participated in a testing experiment in…
Descriptors: Foreign Countries, English (Second Language), Second Language Learning, Language Proficiency
Gales, Jenna; Baker, Blane – Physics Teacher, 2008
Energy concepts are fundamentally important for describing and analyzing systems ranging from subatomic particles to spiral galaxies. In general, students first encounter such concepts in introductory courses that typically focus on forms of energy, energy transfer, and conservation laws. Within these courses, conservation of mechanical energy is…
Descriptors: Introductory Courses, Energy Conservation, Science Activities, Scientific Concepts
Gaffney, Jonathan David Housley – ProQuest LLC, 2010
Students often make errors when trying to solve qualitative or conceptual physics problems, and while many successful instructional interventions have been generated to prevent such errors, the process of deduction that students use when solving physics problems has not been thoroughly studied. In an effort to better understand that reasoning…
Descriptors: Physics, Problem Solving, Models, Intervention
Kunesch, M.; Usunov, A. – European Journal of Physics, 2010
This paper outlines the solution that the Team of Austria found to problem number 7, "skateboarder", presented in the finals of the 22nd International Young Physicists' Tournament (IYPT) in Tianjin, China. We investigated how a skateboarder can accelerate from rest on a horizontal surface without touching an external support. The focus was laid on…
Descriptors: Physics, Problem Solving, Scientific Principles, Motion
Heckler, Andrew F. – International Journal of Science Education, 2010
We conducted a series of experiments to investigate the extent to which prompting the construction of a force diagram affects student solutions to simple mechanics problems. A total of 891 university introductory physics students were given typical force and motion problems under one of the two conditions: when a force diagram was or was not…
Descriptors: Prompting, Mechanics (Physics), Problem Solving, Teaching Methods
Waxman, Michael A. – Physics Teacher, 2010
Radiation pressure is an important topic within a standard physics course (see, in particular, Refs. 1 and 2). The physics of radiation pressure is described, the magnitude of it is derived, both for the case of a perfectly absorbing surface and of a perfect reflector, and various applications of this interesting effect are discussed, such as…
Descriptors: Discussion, Physics, Radiation, Discussion (Teaching Technique)
Semsar, Katharine; Knight, Jennifer K.; Birol, Gulnur; Smith, Michelle K. – CBE - Life Sciences Education, 2011
This paper describes a newly adapted instrument for measuring novice-to-expert-like perceptions about biology: the Colorado Learning Attitudes about Science Survey for Biology (CLASS-Bio). Consisting of 31 Likert-scale statements, CLASS-Bio probes a range of perceptions that vary between experts and novices, including enjoyment of the discipline,…
Descriptors: Undergraduate Students, Physics, Biology, Likert Scales
Tweney, Ryan D. – Science & Education, 2011
James Clerk Maxwell "translated" Michael Faraday's experimentally-based field theory into the mathematical representation now known as "Maxwell's Equations." Working with a variety of mathematical representations and physical models Maxwell extended the reach of Faraday's theory and brought it into consistency with other…
Descriptors: Foreign Countries, Physics, Long Term Memory, Equations (Mathematics)
Schwartz, Daniel L.; Chase, Catherine C.; Oppezzo, Marily A.; Chin, Doris B. – Journal of Educational Psychology, 2011
Being told procedures and concepts before problem solving can inadvertently undermine the learning of deep structures in physics. If students do not learn the underlying structure of physical phenomena, they will exhibit poor transfer. Two studies on teaching physics to adolescents compared the effects of "telling" students before and after…
Descriptors: Learning Strategies, Physics, Problem Solving, Word Problems (Mathematics)
Rebello, Carina M. – ProQuest LLC, 2012
This study explored the effects of alternative forms of argumentation on undergraduates' physics solutions in introductory calculus-based physics. A two-phase concurrent mixed methods design was employed to investigate relationships between undergraduates' written argumentation abilities, conceptual quality of problem solutions, as well…
Descriptors: Physics, Science Instruction, Undergraduate Students, Problem Solving
Stoll, Julia; Hamilton, Ashley; Oxley, Emilie; Eastman, Angela Mitroff; Brent, Rachael – Young Children, 2012
Physics is the study of forces and motion--the science of matter and energy and the interaction between the two. The big idea the children explore, as well as the question they ask as they engage in physical knowledge activities related to physics, is "How does it move?" Many teachers translate naturally as they come to know the children they…
Descriptors: Teacher Role, Physics, Problem Solving, Motion
Lederman, Eric – Physics Teacher, 2009
In "How to Solve It", accomplished mathematician and skilled communicator George Polya describes a four-step universal solving technique designed to help students develop mathematical problem-solving skills. By providing a glimpse at the grace with which experts solve problems, Polya provides definable methods that are not exclusive to…
Descriptors: Science Instruction, Physics, Mathematics, Undergraduate Study
Balukovic, Jasmina; Slisko, Josip; Hadzibegovic, Zalkida – European Journal of Physics Education, 2011
Since 2003, international project PISA evaluates 15-year old students in solving problems that include "decision taking", "analysis and design of systems" and "trouble-shooting". This article presents the results of a pilot research conducted with 215 students from first to fourth grade of a high school in Sarajevo…
Descriptors: Science Instruction, Secondary School Science, High School Students, Transportation

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