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Frey, Regina F.; Brame, Cynthia J.; Fink, Angela; Lemons, Paula P. – CBE - Life Sciences Education, 2022
Problem solving plays an essential role in all scientific disciplines, and solving problems can reveal essential concepts that underlie those disciplines. Thus, problem solving serves both as a common tool and desired outcome in many science classes. Research on teaching problem solving offers principles for instruction that are guided by learning…
Descriptors: Problem Solving, Intellectual Disciplines, Teaching Methods, Science Education
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Chang, Yueh-Hsia; Chang, Chun-Yen; Tseng, Yuen-Hsien – Journal of Science Education and Technology, 2010
This study used scientometric methods to conduct an automatic content analysis on the development trends of science education research from the published articles in the four journals of "International Journal of Science Education, Journal of Research in Science Teaching, Research in Science Education, and Science Education" from 1990 to 2007. The…
Descriptors: Constructivism (Learning), Concept Mapping, Scientific Principles, Content Analysis
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Vamvakeros, Xenofon; Pavlatou, Evangelia A.; Spyrellis, Nicolas – Science & Education, 2010
A survey exploring the views of scientists, chemists and chemical engineers, on current trends in Chemistry Education was conducted in Greece. Their opinions were investigated using a questionnaire focusing on curricula (the content and process of chemistry teaching and learning), as well as on the respondents' general educational beliefs and…
Descriptors: Surveys, Constructivism (Learning), Science Education, Science Curriculum
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Vallance, Michael; Martin, Stewart; Wiz, Charles; van Schaik, Paul – International Journal of Virtual and Personal Learning Environments, 2010
Science education is concerned with the meaningful pursuit of comprehension, knowledge and understanding of scientific concepts and processes. In Vygotskian social constructivist learning, personal interpretation, decision-making and community cooperation fosters long-term understanding and transference of learned concepts. The construction of…
Descriptors: Instructional Design, Science Instruction, Science Education, Computer Simulation
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Francisco, Joseph S.; Nakhleh, Mary B.; Nurrenbern, Susan C.; Miller, Matthew L. – Journal of Chemical Education, 2002
Investigates the changes in students' understanding of chemistry concepts when concept mapping is used as an instructional method and assessment technique. (Contains 24 references.) (YDS)
Descriptors: Chemistry, Concept Formation, Concept Mapping, Constructivism (Learning)
Cisneros-Cohernour, Edith Juliana; Avila, Maria Teresa Lopez; Lara, Mario Baas – Online Submission, 2005
The purpose of this qualitative study was to obtain a better understanding of the obstacles and possible solutions for improving science education in Southern Mexico. It provides information about the challenges faced by teachers and school administrators, and possible alternatives for improving the quality of teaching after ten years of a…
Descriptors: Foreign Countries, Curriculum Development, Science Education, Constructivism (Learning)
Liew, Chong-Wah; Treagust, David F. – 1998
This study involves action research to explore the effectiveness of the Predict-Observe-Explain (POE) technique in diagnosing students' understanding of science and identifying their levels of achievement. A multidimensional interpretive framework is used to interpret students' understanding of science. The research methodology incorporated…
Descriptors: Academic Achievement, Action Research, Comprehension, Constructivism (Learning)
Bentley, Michael L.; Ebert, Edward S., II; Ebert, Christine – Corwin Press, 2007
Good teachers know that science is more than just a collection of facts in a textbook and that teaching science goes beyond the mere transmission of information. Actively engaging students in the learning process is critical to building their knowledge base, assessing progress, and meeting science standards. This book shows teachers how to…
Descriptors: Beginning Teachers, Science Teachers, Teaching Methods, Educational Strategies
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Cannon, John R. – Journal of Elementary Science Education, 1995
Reports on a study undertaken to validate the practicality of using the Constructivist Learning Environment Survey (Perceived Form) (CLES) in a preservice elementary science methods course. Suggestions are made to potentially revise the CLES for more accurate measures in college classrooms. (LZ)
Descriptors: College Instruction, Constructivism (Learning), Course Evaluation, Elementary Education
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Appleton, Ken – School Science and Mathematics, 1993
Presents a learning model for science education and describes teacher interventions derived from the model to produce cognitive restructuring. Demonstrates how teacher interventions may be developed through a series of interventions, related activities, and comments. (MDH)
Descriptors: Cognitive Development, Cognitive Restructuring, Constructivism (Learning), Discussion (Teaching Technique)
Burry-Stock, Judith A.; Oxford, Rebecca L. – 1993
This paper discusses the development and theoretical premises of the Expert Science Teaching Evaluation Model (ESTEEM) as well as research into this model from 1990 through 1993. ESTEEM was developed under the aegis of the Center for Research on Educational Accountability and Teacher Evaluation (CREATE) with major goals of defining expert science…
Descriptors: Academic Standards, Constructivism (Learning), Criteria, Educational Assessment
Rubba, Peter A., Ed.; Rye, James A., Ed. – 1998
The 40 papers from this international conference addressed the major theme of facilitating science literacy for all teachers and students. Papers include the following: (1) "Confronting the Gender Gap in Science and Mathematics: The Sisters in Science Program" (P. Hammrich); (2) Teaching Instructional Materials for Science Educators with…
Descriptors: Constructivism (Learning), Educational Strategies, Elementary Secondary Education, Evaluation Methods
Williams, Julian – 1997
This paper focuses on the evidence of learning in children engaged in small-group discussion with a teacher. The children are considered to have learned if they show progress in the explanations they make, the language they use in the dialogue, or the understanding they show of the dialogue. Motives of the participants in this dialogue are…
Descriptors: Classroom Environment, Constructivism (Learning), Creative Teaching, Dialogs (Language)