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Girod, Mark; Twyman, Todd – Journal of Elementary Science Education, 2009
In response to pressures to integrate literacy and science learning, an observational, comparative analysis was conducted exploring the added value of blended science and literacy curricula over inquiry-oriented science curricula in two 2nd-grade classrooms (ages seven to eight). Data were collected over ten weeks by the research team, and…
Descriptors: Scientific Principles, Classrooms, Comparative Analysis, Science Curriculum
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Metz, Kathleen E. – Science Education, 2009
This article examines teachers' perspectives on the challenges of using a science reform curriculum, as well as their learning in interaction with the curriculum and parallel professional development program. As case studies, I selected 4 veteran teachers of 2nd or 3rd grade, with varying science backgrounds (including 2 with essentially none).…
Descriptors: Educational Change, Grade 3, Elementary School Teachers, Science Curriculum
Kube-McDowell, Michael P. – 1981
The purpose of the study was to identify and analyze the scientific elements of the creationist position, and to provide information and recommendations to educators facing the question of adding creationism to the science curriculum. The claim that creationism is of equal scientific status with evolution is examined in the first part of the…
Descriptors: Biology, Creationism, Evolution, Science Curriculum
Ontario Dept. of Education, Toronto. – 1967
GRADES OR AGES: Grade 13. SUBJECT MATTER: Physics. ORGANIZATION AND PHYSICAL APPEARANCE: The guide is divided into two parts, each of which contains the same four units. The first part briefly describes each unit; the second part gives a detailed outline of each unit. The guide is offset printed and staple-bound with a soft cover. OBJECTIVES AND…
Descriptors: Curriculum Guides, Physics, Postsecondary Education, Science Curriculum
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Bird, Wendell R. – Educational Leadership, 1980
An advocate of scientific creationism states arguments for its inclusion in the public school curriculum. (MLF)
Descriptors: Creationism, Elementary Secondary Education, Evolution, Science Curriculum
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Mayer, William V. – Educational Leadership, 1980
A scientist states that creationism may have a place in the schools, but as a theological doctrine, not as a scientific theory. (Author/MLF)
Descriptors: Creationism, Elementary Secondary Education, Evolution, Science Curriculum
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Occhiogrosso, Ronald N.; Rana, Banita – Chemical Engineering Education (CEE), 1996
Presents survey data of (n=63) chemical engineering curricula. (MKR)
Descriptors: Chemical Engineering, Higher Education, Science Curriculum, Surveys
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Beall, Herbert – Journal of Chemical Education, 1996
Reports on the Ninth Annual Worcester Polytechnic Institute Conference on Chemical Education that focused on the incorporation of materials science into chemistry courses as examples of chemical phenomena and on the identification of what chemistry a college graduate should possess to work in the area of materials science. (JRH)
Descriptors: Chemistry, Fundamental Concepts, Higher Education, Science Curriculum
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American Biology Teacher, 2004
A landmark group of Cornell University is dedicated to diffusing every possible information available on ornithology, the website is divided into several different sections. There is enough material in this website to cover various units in any life science or integrated science course (www.birds.cornell.edu/programs.allaboutbirds).
Descriptors: Ornithology, Science Curriculum, Biological Sciences, Web Sites
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Schwarz, Christina V.; White, Barbara Y. – Cognition and Instruction, 2005
We argue that learning about the nature and utility of scientific models and engaging in the process of creating and testing models should be a central focus of science education. To realize this vision, we created and evaluated the Model-Enhanced ThinkerTools (METT) Curriculum, which is an inquiry-oriented physics curriculum for middle school…
Descriptors: Physics, Science Curriculum, Models, Middle School Students
American Federation of Teachers (NJ), 2008
The members at the American Federation of Teachers examined each state's and Washington, D.C.'s content standards documents to determine whether or not they contain enough information about what students should learn to provide the basis for coherent curricula and assessments. There is no perfect formula for this; they made a series of judgment…
Descriptors: World History, State Standards, Criteria, Teachers
Gonen, Selahattin; Basaran, Bulent – Online Submission, 2008
In this article, two basic purposes are presented. First, taking effective feedbacks in the electronic learning environment about the learning level of students at the problem solving which are told in physics lessons and laboratories. Second, providing a possibility for students to repeat the subjects and solved problems by watching and…
Descriptors: Online Courses, Computer Software, Physics, Science Curriculum
Devecioglu, Yasemin; Akdeniz, Ali Riza – Online Submission, 2008
It is very important to develop student teachers' skills and knowledge during the pre-service teacher education process. In this study, the effectiveness of the approach in which student teachers' gained the skills of developing and using Teacher Guided Materials (TGMs) based on integration of technology on physics education in Special Teaching…
Descriptors: Foreign Countries, Physics, Science Curriculum, Preservice Teacher Education
Kali, Yael, Ed.; Linn, Marcia, Ed.; Roseman, Jo Ellen, Ed. – Teachers College Press, 2008
This edited collection synthesizes current research on the most promising methods and models for designing coherent science instruction. Arising from the National Science Foundation-funded Delineating and Evaluating Coherent Instructional Designs for Education (DECIDE) project, this volume combines the insights of researchers from two Centers for…
Descriptors: Scientific Principles, Science Instruction, Science Education, Instructional Design
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Howlett, Catherine; Seini, Monica; Matthews, Chris; Dillon, Bronwyn; Hauser, Vivian – Australian Journal of Indigenous Education, 2008
Low retention of Indigenous peoples in all Australian universities has been identified as a problematic issue by the Australian Federal government. Griffith University (GU), Queensland, Australia, provided funding to examine the factors affecting Indigenous retention in higher education, with the aim of developing innovative participation and…
Descriptors: Indigenous Populations, Foreign Countries, Federal Government, School Holding Power
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