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Showing 1,351 to 1,365 of 1,514 results Save | Export
Gilbert, Steven W. – 1999
This paper presents three reasons why teachers should understand and actively use models and model building to frame science. First, science model building and testing is the heart of scientific enterprise, and understanding of the process is crucial for developing scientific literacy. Second, models are a familiar framework through which to…
Descriptors: Higher Education, Methods Courses, Models, Preservice Teachers
Crawford, Teresa; Kelly, Gregory J.; Brown, Candice – 1999
This study brings an anthropological perspective informed by sociolinguistic discourse analysis to examine how teachers, students, and scientists constructed ways of investigating and knowing science. The teaching and learning processes for a group of third grade students and how, in the following academic year, these same students drew upon their…
Descriptors: Cultural Influences, Elementary School Science, Grade 3, Inquiry
Olson, Steve – National Academies Press, 2004
As both individuals and societies, we are making decisions today that will have profound consequences for future generations. From preserving Earth's plants and animals to altering our use of fossil fuels, none of these decisions can be made wisely without a thorough understanding of life's history on our planet through biological evolution.…
Descriptors: Evolution, Science Instruction, Decision Making, Genetics
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Duschl, Richard A.; Osborne, Jonathan – Studies in Science Education, 2002
Explores the research on argumentation in science education by focusing on two questions: (1) what should constitute argumentation?; and (2) what does research say about classroom conditions that promote, nurture, and sustain argumentation practices among students? Discusses possible barriers to argumentation and foundational frameworks and…
Descriptors: Educational Environment, Elementary Secondary Education, Higher Education, Inquiry
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Cartier, Jennifer L.; Stewart, Jim – Science and Education, 2000
Describes a high school biology curriculum designed to give students opportunities to learn about genetic inquiry in part by providing them with authentic experiences doing inquiry in the discipline. (Contains 29 references.) (Author/WRM)
Descriptors: Biology, Epistemology, Genetics, Hands on Science
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Flammer, Larry – American Biology Teacher, 2006
Surveys reveal that many in our society have an inadequate and inaccurate understanding of evolution (Alters & Alters, 2001). Much of this can be traced directly to popular misconceptions about the nature of science. This, in turn, can be linked to misrepresentation by those opposed to evolution, although inadequate or ineffective treatment by ill…
Descriptors: Science Instruction, Evolution, Conflict, Misconceptions
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Hewson, Peter W. – International Journal of Science and Mathematics Education, 2004
This article addresses the question of how science learning can be improved. It recognizes that, while learners themselves are responsible for their own learning, the quality of this learning is greatly influenced when appropriate resources are available to learners. These resources are provided through a partnership between teachers and learners.…
Descriptors: Scientific Principles, Ecology, Science Education, Teaching Methods
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Sanger, Michael J. – Journal of Chemical Education, 2008
A previous study showed that elementary teaching majors enrolled in an inquiry-based physical science course developed chemistry content knowledge comparable to that of students enrolled in traditional lecture-based courses. This current study compares the views of these elementary teaching majors regarding how chemistry is taught and learned to…
Descriptors: Constructivism (Learning), Majors (Students), Scientific Principles, Chemistry
Küçüközer, Hüseyin; Kocakülah, Sabri – Online Submission, 2007
The aim of this study is to reveal secondary school students' misconceptions about simple electric circuits and to define whether specific misconceptions peculiar to Turkish students exist within those identified. Data were obtained with a conceptual understanding test for simple electric circuits and semi-structured interviews. Conceptual…
Descriptors: Secondary School Students, Misconceptions, Electronic Equipment, Semi Structured Interviews
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Lewthwaite, Brian – Journal of Science Teacher Education, 2007
This inquiry uses teacher-candidate critiques of science lessons as a means of evaluating the effectiveness of an instructor's pedagogical approach to promote teacher candidate understanding of the nature of science (NOS) in a science methods course. Three cohorts of teacher candidates enrolled in a middle-years teacher education program were…
Descriptors: Teaching Methods, Scientific Principles, Teacher Education Programs, Methods Courses
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Zenger, K. – European Journal of Engineering Education, 2007
The principles, difficulties and challenges in control education are discussed and compared to the similar problems in the teaching of mathematics and systems science in general. The difficulties of today's students to appreciate the classical teaching of engineering disciplines, which are based on rigorous and scientifically sound grounds, are…
Descriptors: Engineering Education, Engineering, Teaching Methods, Systems Approach
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Murphy, Cliona; Kilfeather, Paula; Murphy, Colette – Irish Educational Studies, 2007
This article reports on the outcomes of a study that compared implicit and explicit teaching approaches on the development of contemporary conceptions of the nature of science (NoS). The sample comprised two groups of prospective primary teachers in the Republic of Ireland, all non-specialists in science. Research has shown that contemporary…
Descriptors: Scientific Principles, Foreign Countries, Comparative Analysis, Teaching Methods
Penuel, William R.; Gallagher, Lawrence P. – Society for Research on Educational Effectiveness, 2009
The purpose of this study is to compare the efficacy of three different approaches to professional development in Earth science education: preparing teachers to "adopt" expert-"design" curricula; preparing teachers to use a principled approach to design curricula; and preparing teachers to use a principled approach to "adapt" curricula. The claims…
Descriptors: Earth Science, Teaching Methods, Instructional Design, Middle School Teachers
Lederman, Norman G. – 1995
This investigation was guided by the following research questions: (1) how do teachers' understandings of the nature of science influence classroom practice?; and (2) what factors facilitate or impede the influence of teachers' understandings on classroom practice? An in-depth, year long assessment of the classroom practices and goals of five…
Descriptors: Biology, Educational Change, Knowledge Base for Teaching, Science Instruction
Marek, Edmund A.; Gerber, Brian L.; Cavallo, Ann M. – 1999
The "learning cycle" is not a teaching method but rather a teaching procedure that allows for many methods of teaching. If teacher preparation courses are organized and delivered as learning cycles, then preservice teachers will discover that the learning cycle is an instructional model that: (1) allows science to be taught as it is…
Descriptors: Constructivism (Learning), Elementary Secondary Education, Learning Processes, Learning Theories
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