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Showing 1 to 15 of 22 results Save | Export
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Lausch, Rabecca; Ross, Danielle K. – Science Teacher, 2019
Understanding natural selection and adaptation are important precursors to learning evolution (NGSS Lead States 2013), the central unifying principle of biology. This lesson sequence, guided by the Five Practices Model (Cartier et al. 2013), incorporates data described by Andersson (1982) that details female choice in a population that eventually…
Descriptors: Scientific Concepts, Science Instruction, Discussion (Teaching Technique), Evolution
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Stannard, Warren B. – Physics Education, 2018
Einstein's two theories of relativity were introduced over 100 years ago. High school science students are seldom exposed to these revolutionary ideas as they are often perceived to be too difficult conceptually and mathematically. This paper brings together the two theories of relativity in a way that is logical and consistent and enables the…
Descriptors: Educational Theories, Scientific Concepts, Scientific Principles, Teaching Methods
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Douglas, Euan – School Science Review, 2017
SOLO taxonomy models the levels of understanding within a topic; its hierarchal nature can support progression and challenge. Flipped learning is a strategy that uses homework to build background knowledge, thereby maximising the impact of lesson time. Both flipped learning and SOLO taxonomy can be used to support student learning, either combined…
Descriptors: Coping, Learning Strategies, Taxonomy, Teaching Models
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Criswell, Brett – Journal of Chemical Education, 2012
Inquiry has been advocated as an effective pedagogical strategy for promoting deep conceptual understanding and more sophisticated scientific thinking by numerous bodies associated with chemistry (and science) education. To allow inquiry to achieve these goals, the teacher must manage the amount of cognitive load experienced by students while they…
Descriptors: Chemistry, Secondary School Science, Science Instruction, Inquiry
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Treacy, Páraic; O'Donoghue, John – International Journal of Mathematical Education in Science and Technology, 2014
Attempts at integrating mathematics and science have been made previously but no definitive, widely adopted teaching model has been developed to date. Research suggests that hands-on, practical, student-centred tasks should form a central element when designing an effective model for the integration of mathematics and science. Aided by this…
Descriptors: Classroom Techniques, Models, Integrated Curriculum, Mathematics Curriculum
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Bradley, Joan; Farland-Smith, Donna – Science Teacher, 2010
Allowing a student to "see" through touch what other students see through a microscope can be a challenging task. Therefore, author Joan Bradley created three-dimensional (3-D) models with one student's visual impairment in mind. They are meant to benefit all students and can be used to teach common high school biology topics, including the…
Descriptors: Visual Impairments, Teaching Models, Laboratory Equipment, Biology
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Planinsic, Gorazd; Kovac, Janez – Physics Education, 2008
The paper describes a teaching model of the atomic force microscope (AFM), which proved to be successful in the role of an introduction to nanoscience in high school. The model can demonstrate the two modes of operation of the AFM (contact mode and oscillating mode) as well as some basic principles that limit the resolution of the method. It can…
Descriptors: Teaching Models, Laboratory Equipment, Science Instruction, Laboratory Experiments
Himmel, Jennifer; Short, Deborah J.; Richards, Catherine; Echevarria, Jana – Center for Research on the Educational Achievement and Teaching of English Language Learners, 2009
This brief provides an overview of the SIOP Model and highlights how teachers can develop content and language objectives, emphasize key vocabulary, promote interaction, and incorporate effective review and assessment techniques within the context of middle school science. It provides research-based examples and strategies in order to illustrate…
Descriptors: Middle Schools, Secondary School Science, Science Instruction, Instructional Improvement
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Vondracek, Mark – Science Teacher, 2009
Teachers know what a daunting job it can be to ensure that all students in a class learn effectively. In addition to the usual difficulties of gaining everyone's attention at once, instructors also run into the issue of preferred learning styles. In any classroom environment, the same topic is taught to multiple students, and each student may…
Descriptors: Cognitive Style, Teaching Models, Classroom Environment, Teaching Methods
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Eick, Charles J.; Ware, Frank N.; Jones, Mark T. – Journal of Science Teacher Education, 2004
Coteaching as a form of situated learning supports early induction into science teaching. A coteaching model for secondary science methods students and what has been learned from this model is described. Secondary science methods students in pairs were placed with a science teacher to begin teaching as peripheral participants. A cooperative…
Descriptors: Secondary School Science, Teaching Models, Science Teachers, Science Instruction
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Corn, Joanie; Pittendrigh, Barry R.; Orvis, Kathryn S. – Journal of Biological Education, 2004
Studies have shown that there is usually a lack of understanding concerning the fields of genetics and genomics among high school students (Lewis and Wood-Robinson, 2000). A recent article (Kirkpatrick et al, 2002) introduced the GAME (Genomics Analogy Model for Educators) model and two of its components: (1) explaining sequencing technology with…
Descriptors: Municipalities, Genetics, Molecular Biology, High School Students
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Hayes, Robert E. – Physics Teacher, 1985
Compares and contrasts high school physics philosophies, curricula, and textbooks of early 1900s to present, indicating that current textbooks are teacher and subject-oriented, lack examples of daily life, and are highly mathematical and too abstract. Suggestions for helping students experience success and improve self-esteem (which leads to…
Descriptors: Educational Trends, High Schools, Physics, Science Education
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Gow, Mary M.; Nicholl, Desmond S. T. – Journal of Biological Education, 1988
Uses simple models to illustrate the principles of this genetic method of mapping gene loci. Stresses that this system enables a practical approach to be used with students who experience difficulty in understanding the concepts involved. (CW)
Descriptors: Biological Sciences, College Science, Genetics, Higher Education
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Shrigley, Robert L.; Koballa, Thomas R., Jr. – School Science and Mathematics, 1989
Discusses aspects of using anecdotes in the classroom including vividness, the downside, high inferential risks, and low inferential risks. Reviews research underpinnings. (MVL)
Descriptors: Classroom Communication, Communication (Thought Transfer), Research, Science Instruction
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Goh, N. K.; And Others – Journal of Chemical Education, 1989
Provided is a model to depict how the development of process skills can be systematically achieved and in turn determine the students' achievement in science practicals. Modified laboratory instruction is compared with conventional laboratory instruction. The results of field testing on 164 ninth grade subjects are described. (MVL)
Descriptors: Chemistry, Grade 9, Instructional Effectiveness, Laboratories
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