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Carlson, Gaylen R. – CSTA Journal, 1998
Describes two science activities concerning water density and shares an idea for combining these activities into a third, completely new activity. Demonstrates the joy of rekindling the spirit of scientific thinking in a typical classroom. (PVD)
Descriptors: Demonstrations (Science), Density (Matter), Hands on Science, Higher Education
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Gersten, Russell; Baker, Scott – Exceptional Children, 1998
Presents a conceptual framework for teaching science to students with disabilities. The framework suggests integration of explicit instruction in critical concepts, with cognitively-based approaches that emphasize problem-solving skills on real-world tasks. Implications for policy, professional development, and creation of learning environments…
Descriptors: Cognitive Development, Disabilities, Elementary Secondary Education, Experiential Learning
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Johnson, Sally; Sadeck, Melanie; Hodges, Merle – Journal of Research in Special Educational Needs, 2002
Teachers were taught "Translation Activities" (TA) to teach science process skills in three special education schools in South Africa. In TA, information and data are provided as text, diagrams, tables, or graphs, and cooperative learning takes place. Teachers indicated the use of TA enabled them to deliver Outcomes Based Education.…
Descriptors: Academic Standards, Cooperative Learning, Disabilities, Elementary Secondary Education
Gipps, John – Australian Science Teachers' Journal, 1999
Describes a procedure for the datalogging of microbial population densities. (WRM)
Descriptors: Computer Uses in Education, Foreign Countries, Graphs, High Schools
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Cohen, Annette; Moreh, Anat Ben; Chayoth, Reuben – American Biology Teacher, 1999
Explores the difficulties students have in understanding the relationship between surface area and volume. Examines four cases where the ratio of surface area to volume varies, and makes recommendations for demonstrating each with models. (Contains 15 references.) (WRM)
Descriptors: Area, Demonstrations (Science), Hands on Science, Higher Education
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Ash, Doris – Science Education, 2004
In this paper I focus on the transition from everyday to scientific ways of reasoning, and on the intertwined roles of meaning-making dialogue and science content as they contribute to scientific literacy. I refer to views of science, and how scientific understanding is advanced dialogically, by Hurd (Science Education, 1998, 82, 402-416), Brown…
Descriptors: Teaching Methods, Social Environment, Scientific Literacy, Informal Education
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Wu, Hsin-Kai; Krajcik, Joseph S. – Science Education, 2006
This study explores seventh graders' use of inscriptions in a teacher-designed project-based science unit. To investigate students' learning practices during the 8-month water quality unit, we collected multiple sources of data (e.g., classroom video recordings, student artifacts, and teacher interviews) and employed analytical methods that drew…
Descriptors: Teaching Methods, Grade 7, Water Quality, Science Education
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Stern, Luli; Roseman, Jo Ellen – Journal of Research in Science Teaching, 2004
The transfer of matter and energy from one organism to another and between organisms and their physical setting is a fundamental concept in life science. Not surprisingly, this concept is common to the "Benchmarks for Science Literacy" (American Association for the Advancement of Science, [1993]), the "National Science Education Standards"…
Descriptors: Prior Learning, Textbooks, Fundamental Concepts, Curriculum Development
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Lederman, Norman G.; Lederman, Judith S. – Science Teacher, 2004
Current reform documents place a strong emphasis on students' understandings of the nature of science (NOS). Interestingly, the importance of this educational outcome is not new and has been agreed upon as important by most scientists and science educators for the past 100 years. Despite numerous attempts, including the major curricular reform…
Descriptors: Science Education, Curriculum Development, Science Curriculum, Knowledge Level
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Rudge, David W.; Howe, Eric M. – Science Teacher, 2004
Many science teachers recognize that teaching aspects of the history of science helps students learn science content and the nature of science (NOS). The use of history can potentially humanize science, help students refine their critical thinking skills, promote a deeper understanding of scientific concepts, and address common student…
Descriptors: Teaching Methods, Scientific Concepts, Scientific Principles, Misconceptions
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Variano, Evan; Taylor, Karen – Science Teacher, 2006
Inquiry can be implemented in various ways, ranging from simple classroom discussions to longterm research projects. In this article, the authors developed a project in which high school students were introduced to the nature and process of scientific discovery through a two-week guided inquiry unit on "limnology"--the study of fresh water, which…
Descriptors: Data Analysis, Field Trips, Inquiry, High School Students
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Shibley, Ivan A., Jr. – College Teaching, 2006
Four different team teaching experiences are described with collaborators from a variety of disciplines. The pedagogical differences between the teachers created unique challenges. A description of each collaboration is provided, followed by an analysis of the four experiences. An examination of the challenges that arose are summarized to…
Descriptors: Interdisciplinary Approach, Team Teaching, Case Studies, Higher Education
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Ross, Pauline; Tronson, Deidre; Ritchie, Raymond J. – Journal of Biological Education, 2006
Biology students in their first year at university have difficulty understanding the abstract concepts of photosynthesis. The traditional didactic lecture followed by practical exercises that show various macroscopic aspects of photosynthesis often do not help the students visualise or understand the submicroscopic (molecular-level) reactions that…
Descriptors: Group Discussion, Textbooks, Learning Modalities, Learning Strategies
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Calik, Muammer – International Journal of Science and Mathematics Education, 2005
This study reports on research examining what students think about aspects of solution chemistry and seeks to establish what alternative conceptions they hold in this area. To achieve this aim the researchers developed a test comprising of open-ended questions that evaluated students understanding of solution chemistry. The test was administered…
Descriptors: Chemistry, Grade 9, Grade 7, Grade 10
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De Jong, Onno; Van Driel, Jan – International Journal of Science and Mathematics Education, 2004
In chemical education, many secondary school students experience difficulties in understanding three mutual related meanings of topics, that is, the macroscopic meaning, the microscopic meaning, and the symbolic meaning. As a consequence, student teachers should be prepared carefully to learn how to teach this difficult issue. This article…
Descriptors: Student Teachers, Teacher Education Programs, Chemistry, Pedagogical Content Knowledge
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