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Miller, Roxanne Greitz; Calfee, Robert C. – Science and Children, 2004
In order to make a dramatic change in the way teachers approach science writing, the authors found it necessary to address both science instruction as a whole and the use of writing during various stages. To guide them in this endeavor and communicate a concrete idea of an ideal foundation for highly effective science writing to teachers, the…
Descriptors: Knowledge Representation, Science Instruction, Writing (Composition), Models

Cheng, Peter C.-H. – Computers & Education, 1999
Summarizes theoretical and empirical aspects of research that is investigating how best to support conceptual learning and the critical role that representations have in complex scientific and mathematical domains. Explains Law Encoding Diagrams (LEDs) and considers how computers may further enhance the potential benefit of LEDs for conceptual…
Descriptors: Computer Assisted Instruction, Concept Formation, Knowledge Representation, Learning Processes

Ram, Ashwin, Ed.; Nersessian, Nancy J., Ed.; Keil, Frank C., Ed. – Journal of the Learning Sciences, 1997
This special issue includes four articles that address issues concerning conceptual change. Topics include analogical reasoning and a case study of Johannes Kepler; conceptual change and wine expertise; the role of extreme case reasoning in instruction for conceptual change; and dynamic science assessment: a new approach for investigating…
Descriptors: Case Method (Teaching Technique), Case Studies, Concept Formation, Instructional Design
McCallister, Gary – Journal of College Science Teaching, 2005
The DNA triplet code also functions as a binary code. Because double-ring compounds cannot bind to double-ring compounds in the DNA code, the sequence of bases classified simply as purines or pyrimidines can encode for smaller groups of possible amino acids. This is an intuitive approach to teaching the DNA code. (Contains 6 figures.)
Descriptors: Teaching Methods, Genetics, Science Instruction, Knowledge Representation

Abrams, Eleanor; Southerland, Sherry; Cummins, Catherine – International Journal of Science Education, 2001
Describes trends in students' explanations of biological change in organisms. Student responses to questions on how graphically depicted phenomena occur were analyzed and most students were unable to offer causal explanations. (Contains 27 references.) (DDR)
Descriptors: Biology, Cognitive Processes, Cognitive Structures, Educational Strategies

Bailin, Sharon – Science and Education, 2002
Examines some of the misconceptions about the nature of critical thinking. Focuses on the characterization of critical thinking in terms of processes or skills and the separation of critical thinking and knowledge. Offers a different conception of critical thinking. (Contains 46 references.) (DDR)
Descriptors: Cognitive Structures, Critical Thinking, Curriculum Development, Educational Change