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Friedrichsen, Patricia Meis; Munford, Danusa; Orgill, MaryKay – Science Education, 2006
Using a theoretical perspective of communities of practice, this case study examines a prospective chemistry teacher's inquiry-based teaching during his practicum. Conrad was a former student of an inquiry-oriented science course, "Inquiry Empowering Technologies" (IET). The research questions were (a) How did Conrad translate the IET inquiry…
Descriptors: Science Curriculum, Science Teachers, Practicums, Mentors
Braude, Stan; Corey, Leah M. – Science and Children, 2006
Students are usually quick to draw conclusions about their surroundings. Their generalizations, however, are often based on a single experience or even a story recounted by a friend. An individual's ability to reason inductively improves as he gains more experience in the world. The ability to draw broad conclusions also improves with an…
Descriptors: Grade 6, Probability, Science Fairs, Science Projects
Akerson, Valarie L.; Volrich, Morgan L. – Journal of Research in Science Teaching, 2006
This case study focused on a preservice teachers' (Morgan) efforts to explicitly emphasize nature of science (NOS) elements in her first-grade internship classroom. The study assessed the change in first grade students' views of the inferential, tentative, and creative NOS as a result of the explicit instruction. Morgan held appropriate views of…
Descriptors: Teaching Methods, Grade 1, Preservice Teachers, Scientific Principles
Khishfe, Rola; Lederman, Norman – Journal of Research in Science Teaching, 2006
This study investigated the influence of two different explicit instructional approaches in promoting more informed understandings of nature of science (NOS) among students. Participants, a total of 42 students, comprised two groups in two intact sections of ninth grade. Participants in the two groups were taught environmental science by their…
Descriptors: Form Classes (Languages), Grade 9, Teaching Methods, Scientific Principles
Yip, Din-yan – Teaching Education, 2006
According to the aims of the current junior science curriculum for Hong Kong, students are expected to master inquiry skills for problem-solving, understand the nature of scientific knowledge, and appreciate the limitations of science. These aims are, however, difficult to achieve because available science textbooks focus mainly on the…
Descriptors: Scientific Principles, Foreign Countries, Science Teachers, Teaching Methods
Griffiths, Alan K.; Barman, Charles R. – 1992
The substantial interest exhibited in the last decade in the identification of students' misconceptions of a wide range of scientific concepts has not extended to identification of students' misconceptions of the nature of science itself. This study examined the attitudes of 32 secondary school students, each from Canada, the United States, and…
Descriptors: Beliefs, Cognitive Structures, Concept Formation, Foreign Countries
Congress of the U.S., Washington, DC. Office of Technology Assessment. – 1987
Many believe that throughout history, science and technology have been major factors in shaping American society and the way of life. By changing the ways in which one interacts with another, science and technoiogy may affect the way one defines the general welfare, the way in which one views the realm of government, and the nature of the rights…
Descriptors: College Science, Governance, Government Role, Governmental Structure
Arkansas State Dept. of Education, Little Rock. – 1999
This document presents the revised Arkansas Science Curriculum Framework (1999), which replaces the Science Curriculum Framework of 1994. Three strands--physical science systems, life science systems, and Earth science/space science systems--were identified using an integrated approach to provide guidance in the science curriculum. A glossary and…
Descriptors: Academic Standards, Biological Sciences, Earth Science, Elementary Secondary Education
Arkansas State Dept. of Education, Little Rock. – 1999
This document explains the Arkansas science benchmarks for grades 5-8 which were developed to provide guidance to science teachers. The content standards for three strands--physical science systems, life science systems, and Earth science/space science systems--were identified based on grade levels. (YDS)
Descriptors: Academic Standards, Benchmarking, Biological Sciences, Earth Science
Quackenbos, G. P. – D. Appleton and Company, 1866
In preparing this volume, every effort has been made to ensure accuracy, the most recent authorities have been consulted, and it is believed that a faithful view is presented of the various sciences embraced, as far as they are at present developed. It is the intention of the author to keep his book up to the times by constant revision, and to…
Descriptors: Physics, Scientific Principles, Layout (Publications), Science Instruction
Peer reviewedYager, Robert E. – American Biology Teacher, 1981
Traces the development of the current understanding of what "literacy" in science should be. Offers viewpoints that "basic" components of biology should include the nature of science, the way it functions, and other nonconceptual dimensions of biology. (CS)
Descriptors: Biology, College Science, Curriculum Evaluation, Educational Trends
Peer reviewedBoyes, Edward; Stanisstreet, Martin – School Science Review, 1990
Presented is the extent to which pupils of different ages tend to confuse scientific and everyday meanings of "Law" and "Conservation." The concepts of resource economy, environmental concern, and the law of conservation of energy are discussed in terms of potential teaching difficulties. (KR)
Descriptors: Cognitive Development, Comprehension, Concept Formation, Conservation (Environment)
Peer reviewedVenugopalan, Mundiyath – Journal of Computers in Mathematics and Science Teaching, 1990
Described in this article is a problem-solving activity which integrates the application of microcomputers with the learning of physical chemistry. Students use the program with spectroscopic data to calculate the thermodynamic properties and compare them with the values from the thermochemical tables. (Author/KR)
Descriptors: Chemistry, College Science, Computation, Computer Assisted Instruction
Peer reviewedPearson, Esther – Journal of Negro Education, 1990
To be effective in promoting scientific literacy, science teachers must be well prepared in their subject areas, have a firm understanding of the nature of science, and stay abreast of current technological advances affecting society. Science teachers must engage students in the science revolution by relating it to their lives. (AF)
Descriptors: Elementary Secondary Education, Science and Society, Science Education, Science Teachers
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1989
Reports on a study, Science for All Americans, by the AAAS. Notes this study is the first of three phases in Project 2061. Recommends science teaching should focus on connections rather than boundaries between traditional academic disciplines and should emphasize ideas and thinking rather than specialized vocabulary and memorized procedures. (MVL)
Descriptors: Curriculum, Elementary School Science, Science and Society, Science Curriculum

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