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Clark, John Cripps – 1999
Very little has been published about the amount and nature science teaching in Australian primary schools and that which has is largely based on written surveys completed by teachers and principals at a sample of schools. This study was designed to follow these surveys into the classroom. I observed fourteen science lessons, interviewed twelve…
Descriptors: Elementary Education, Foreign Countries, Hands on Science, Science Instruction
Weeks, Denise Jarrett, Ed.; Stepanek, Jennifer, Ed. – Northwest Teacher, 2001
This publication presents examples of inquiry-based science teaching in which students develop an understanding of the natural world. Sections include: (1) "Connecting Students to Science and the World" (Jennifer Stepanek); (2) "Apple Orchard Lush with Life's Lessons" (Helen Silvis); (3) "Student Scientists Team Up with the Pros" (Amy Sutton); (4)…
Descriptors: Inquiry, Outdoor Education, Plants (Botany), Science Education
Hoernschemeyer, Don – 2000
This document supports the integration of the scientific method not only into science teaching but also into the entire curriculum. It argues that the methods and attitudes that have made science the most productive enterprise of the past 300 years can be adapted to most areas of secondary education. The scientist's way of thinking is described,…
Descriptors: Science Process Skills, Scientific Methodology, Scientific Principles, Secondary Education
Peer reviewedKhishfe, Rola; Abd-El-Khalick, Fouad – Journal of Research in Science Teaching, 2002
Investigates the influence of an explicit and reflective inquiry-oriented instructional approach compared with an implicit inquiry-oriented approach on sixth grade students' understanding of the nature of science (NOS). Emphasizes tentative, empirical, inferential, and imaginative and creative NOS. Involves (n=62) sixth grade students in two…
Descriptors: Concept Formation, Grade 6, Inquiry, Middle Schools
Peer reviewedForinash, Kyle; Rumsey, William; Lang, Chris – Science and Education, 2000
Undergraduate students do not always make a clear distinction between physics and mathematics, particularly early in their studies. Offers a simple historical example and show how it can be used to illustrate some of the important differences and relationships between the two. (Author/SAH)
Descriptors: Higher Education, Learning, Mathematics, Physics
Peer reviewedCooper, Robert A. – Reports of the National Center for Science Education, 2001
Discusses issues regarding evolution instruction in public schools and focuses on misconceptions such as the use of the word "belief", lack of evidence for theories of evolution, and the belief that teaching evolution as fact is proselytizing students. Presents teaching approaches to the topic of evolution. (Contains 33 references.) (YDS)
Descriptors: Attitudes, Evolution, Misconceptions, Science Education
Goldstone, Robert L.; Son, Ji Y. – Journal of the Learning Sciences, 2005
Participants in 2 experiments interacted with computer simulations designed to foster understanding of scientific principles governing complex adaptive systems. The quality of participants' transportable understanding was measured by the amount of transfer between 2 simulations governed by the same principle. The perceptual concreteness of the…
Descriptors: Scientific Principles, Computer Simulation, Teaching Methods, Transfer of Training
Pecore, John; Sacks, David – Science Scope, 2005
In this article, the authors describe an activity developed to assist students with constructing their own understanding of Earth's history and provide questions to help teach the geologic time scale. The lesson is aligned to the following National Science Education Standards: Science as Inquiry, Earth's History, and Nature of Science. While…
Descriptors: Scientific Principles, Heterogeneous Grouping, Geology, Science Activities
Clough, Michael P.; Olson, Joanne K. – Science Teacher, 2004
Accurately conveying the nature of science (NOS)--what science is and how it works--is common to most science education standards documents, including the "National Science Education Standards" and "Science for All Americans". Understanding the NOS is crucial to scientific literacy since mistaken ideas of science will likely affect students'…
Descriptors: Scientific Principles, Public Policy, Science Teachers, Scientific Literacy
Trefil, James – Teachers College Press, 2007
Prize-winning scientist and bestselling author James Trefil explains why every U.S. citizen needs to be "scientifically literate" and, therefore, why schools must teach the fundamental principles of scientific literacy to every student. He lays out those principles straightforwardly, so that educators--and everyone who is interested in…
Descriptors: Teaching Methods, Science Education, Climate, Scientific Literacy
Ogunniyi, M. B. – International Journal of Science Education, 2007
In response to the needs of a newly democratic South Africa, a new education policy required science teachers to integrate Indigenous Knowledge Systems (IKS) with school science: Curriculum 2005 (C2005) was developed. The first phase of that curriculum was implemented in 1997 with the hope that by 2005 it would have been implemented in the entire…
Descriptors: Foreign Countries, Teaching Methods, Scientific Principles, Indigenous Knowledge
Fazio, C.; Guastella, I.; Tarantino, G. – European Journal of Physics, 2007
In this paper, we describe a pedagogical approach to elastic body movement based on measurements of the contact times between a metallic rod and small bodies colliding with it and on modelling of the experimental results by using a microcomputer-based laboratory and simulation tools. The experiments and modelling activities have been built in the…
Descriptors: Computer Uses in Education, Science Laboratories, Teaching Methods, Motion
Agung, Salamah; Schwartz, Marc S. – International Journal of Science Education, 2007
This study examines Indonesian students' understanding of conservation of matter, balancing of equations and stoichiometry. Eight hundred and sixty-seven Grade 12 students from 22 schools across four different cities in two developed provinces in Indonesia participated in the study. Nineteen teachers also participated in order to validate the…
Descriptors: Foreign Countries, Equations (Mathematics), Textbooks, Teaching Methods
Matkins, Juanita Jo; Bell, Randy L. – Journal of Science Teacher Education, 2007
This investigation assessed the impact of situating explicit nature of science (NOS) instruction within the issues surrounding global climate change and global warming (GCC/GW). Participants in the study were 15 preservice elementary teachers enrolled in a science methods course. The instructional intervention included explicit NOS instruction…
Descriptors: Preservice Teachers, Elementary School Science, Methods Courses, Teacher Education Curriculum
Buxton, Cory A.; Provenzo, Eugene F., Jr. – SAGE Publications (CA), 2010
Featuring an increased emphasis on the way today's changing science and technology is shaping our culture, this Second Edition of "Teaching Science in Elementary and Middle School" provides pre- and in-service teachers with an introduction to basic science concepts and methods of science instruction, as well as practical strategies for the…
Descriptors: Preservice Teachers, Multiple Intelligences, Space Sciences, Scientific Principles

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