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Kortemeyer, Gerd – Physical Review Special Topics - Physics Education Research, 2007
An important result of physics education research is that students' learning and success in a course is correlated with their beliefs, attitudes, and expectations regarding physics. However, it is hard to assess these beliefs for individual students, and traditional survey instruments such as the Maryland Physics Expectations Survey (MPEX) are…
Descriptors: Physics, Teaching Methods, Student Attitudes, Student Behavior
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Ciascai, Liliana; Chicinas, Luminita – Acta Didactica Napocensia, 2008
Hands on activities with artisan materials used in order to realize different practical devices helpful in learning process are one of the most frequently used activity in science classes. Usually, the main strength of these activities are: a deeper learning, an increased motivation of pupils for actively learning and development of practical…
Descriptors: Hands on Science, Science Instruction, Natural Sciences, Science Activities
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Muller, Orna; Haberman, Bruria – Computer Science Education, 2008
Abstraction is a major concept in computer science and serves as a powerful tool in software development. Pattern-oriented instruction (POI) is a pedagogical approach that incorporates patterns in an introductory computer science course in order to structure the learning of algorithmic problem solving. This paper examines abstraction processes in…
Descriptors: Computer Science Education, Problem Solving, Computer Software, Pattern Recognition
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Solaz-Portoles, Joan Josep; Lopez, Vicent Sanjose – Asia-Pacific Forum on Science Learning and Teaching, 2007
In this paper we focus on some of the findings of the science education research community in the area of representations and problem solving. Problem solving depends on the construction and manipulation of mental models (internal representations) in the mind. A large knowledge base (declarative, procedural, strategic, situational, and schematic…
Descriptors: Learning Strategies, Problem Solving, Metacognition, Short Term Memory
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Shmaefsky, Brian R. – Journal of College Science Teaching, 2007
Not all demonstrations involve using exciting visual displays of one or a series of scientific principles. Demonstrations can be as simple as showing the interrelationship between scientific concepts or principles using concept maps. Concepts maps are tools that help people conceptualize and remember a conglomeration of facts making up complex…
Descriptors: Scientific Concepts, Scientific Principles, Concept Mapping, Science Instruction
Greeno, James G.; Berger, Daniel – 1987
In this study a distinction is made between routine, semiroutine, and nonroutine problems based on the problem solver's knowledge. Routine problems are solved by applying a known procedure, semiroutine problems require planning that uses functional knowledge, and nonroutine problems require generation of new functional knowledge. Nonroutine…
Descriptors: Cognitive Structures, Inferences, Learning, Learning Strategies
Smith, Mike U. – 1985
Both teachers and students alike acknowledge that genetics and genetics problem-solving are extremely difficult to learn and to teach. Therefore, a number of recommendations for teaching college genetics are offered. Although few of these ideas have as yet been tested in controlled experiments, they are supported by research and experience and may…
Descriptors: College Science, Genetics, Higher Education, Problem Solving
Costello, Sandra Judith – 1984
The purpose of this study was to analyze the errors made by students solving genetics problems. A sample of 10 non-science undergraduate students was obtained from a private college in Northern New Jersey. The results support prior research in the area of genetics education and show that a weak understanding of the relationship of meiosis to…
Descriptors: Biology, College Science, Genetics, Higher Education
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Yerian, Stephen C.; Denker, Dennis A. – Physics Teacher, 1985
Provides a simple routine which allows first-year physics students to use programmable calculators to solve otherwise complex electrostatic problems. These problems involve finding electrostatic potential and electric field on the axis of a uniformly charged ring. Modest programing skills are required of students. (DH)
Descriptors: Calculators, College Science, Electricity, Higher Education
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Wilson, Harold – Journal of Chemical Education, 1987
Described is a teaching method for chemistry that gives college students practice in experimental design. Students are given a problem and required to design a procedure to solve the problem. Problems increase in complexity as the students progress through the courses. (RH)
Descriptors: Chemistry, College Science, Laboratory Procedures, Problem Solving
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Fineman, Morton A.; Burnett, Carl, Jr. – Physics Teacher, 1985
Presents a technique which aids students in solving static problems involving three or more torques about a given axis. The method is longer and equivalent to the standard method, but students experience success with this new way to treat the more complicated equilibrium problems. (DH)
Descriptors: College Science, Higher Education, Physics, Problem Solving
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Severeide, Rebecca C.; Pizzini, Edward L. – Science and Children, 1984
Reports research findings on the relationship between play and science as complementary aspects of problem solving. The playful approach and the science approach are compared along with skills and attitudes necessary for solving scientific problems. Research findings and suggested actions on play in the classroom are summarized. (BC)
Descriptors: Elementary Education, Elementary School Science, Inquiry, Play
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Stewart, James – Science Education, 1983
Describes set of specific steps (procedural knowledge) used when solving monohybrid/dihybrid cross problems and extent to which students could justify execution of each step in terms of their conceptual knowledge of genetics and meiosis. Implications for genetics instruction are discussed. (JN)
Descriptors: Biology, Genetics, High Schools, Problem Solving
Ogletree, Earl J.; Cook, June – Illinois Schools Journal, 1979
Different approaches to the teaching of elementary science are discussed. These include discussion inquiry, the counterintuitive approach, pictorial riddles, inventions, experiments, and demonstrations. (RLV)
Descriptors: Critical Thinking, Elementary Education, Elementary School Science, Problem Solving
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Repine, Tom; Hemler, Deb; Lane, Duane – Science Teacher, 2003
Presents a problem-solving investigation on coal mining that integrates science and mathematics with geology. Engages students in a scenario in which they play the roles of geologists and mining engineers. (NB)
Descriptors: Earth Science, Geology, High Schools, Integrated Activities
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