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Matin, M. A. – Journal of STEM Education: Innovations and Research, 2005
The Engineering Department's vision for undergraduate education for the next century is to develop a set of laboratory experiences that are thoughtfully sequenced and integrated to promote the full development of students in all courses. Optoelectronics is one of the most important and most demanding courses in Electrical and Computer Engineering.…
Descriptors: Electronics, Teaching Methods, Undergraduate Students, Engineering Education
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Brady, K. T. – Journal of Chemical Education, 1989
Presents a device to illustrate the concepts of entropy of mixing and the contribution of one term in the Gibb's equation. Notes the device is relatively easy to construct and provides a visual demonstration on diffusion. (MVL)
Descriptors: Chemical Equilibrium, Chemistry, College Science, Entropy
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Fullick, Patrick – Education in Science, 1999
Describes a website designed to allow students to publish their own accounts of school science investigations they have carried out. Makes suggestions for initiating computer-mediated student discussions of the nature of science based on information contained in the website. (WRM)
Descriptors: Computer Mediated Communication, Computer Uses in Education, Foreign Countries, Inquiry
Perdue, Peggy K. – 1991
This book includes 20 science activities in the fields of scientific method, earth science, life science, and physical science. Each activity is composed of two parts--an explanatory section for the teacher and a student lab sheet. The explanatory section begins with a brief introduction designed to give an overview of the activity's main concept.…
Descriptors: Acoustics, Biological Sciences, Classification, Earth Science
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Dreyfus, Amos – Research in Rural Education, 1986
The educational potential of agriculture stems from the diversity and tangibility of its components. As a science based human activity, it may provide the educator with a unique combination of educational opportunities in a context which is authentic and accessible to the pupil and to the teacher. (JHZ)
Descriptors: Agricultural Education, Agriculture, Curriculum Development, Experiential Learning
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Marx, George; Toth, Esther – Impact of Science on Society, 1981
Models are used in everyday life and in school to predict and understand reality. In science classes, models should not be taught as absolute truths but used instead to promote reasoning. Exercises, strategies, and games are suggested to help students better learn about and use models. (DC)
Descriptors: Elementary School Science, Elementary Secondary Education, Learning Activities, Models
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
Donovan, M. Suzanne, Ed.; Bransford, John D., Ed. – National Academies Press, 2005
"How Students Learn: Science in the Classroom" builds on the discoveries detailed in the best-selling "How People Learn." Now these findings are presented in a way that teachers can use immediately, to revitalize their work in the classroom for even greater effectiveness. Organized for utility, the book explores how the principles of learning can…
Descriptors: Science Instruction, Learning, Teaching Methods, Elementary School Science
Osborne, Roger; And Others – 1979
The first (exploratory) phase of the Learning in Science Project focused on science teaching/learning in the Form 1 to 4 level (ages 10 to 14) and sought to identify problems and difficulties in several areas. Provided in this paper are comments obtained during structured/unstructured interviews (from students, ex-students, teachers, headmasters,…
Descriptors: Academic Achievement, Curriculum Development, Elementary School Science, Elementary Secondary Education
Perdue, Peggy K. – 1991
This book includes 25 science activities in the fields of environmental science, soil science, life science, and physical science. The activities are designed to be used in outdoor settings. Each activity is composed of two parts--an explanatory section for the teacher and a student lab sheet. The teacher explanatory section begins with a brief…
Descriptors: Acoustics, Biological Sciences, Classification, Elementary Education
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Perrin, Michele – Journal of STEM Education: Innovations and Research, 2004
This paper uses inquiry-based learning to introduce primary students to the concepts and terminology found in four introductory engineering courses: Differential Equations, Circuit Analysis, Thermodynamics, and Dynamics. Simple electronic sensors coupled with everyday objects, such as a troll doll, demonstrate and reinforce the physical principles…
Descriptors: Inquiry, Active Learning, Engineering Education, Elementary Education
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Dana, Thomas M.; And Others – Science and Children, 1993
Presents a unit of three lessons to teach Newton's Laws of Motion. After rotating through learning centers, answering questions, and recording observations, students are asked to generate a "class law" that explains the scientific phenomenon they observed. (MDH)
Descriptors: Demonstrations (Educational), Elementary Education, Elementary School Science, Force
De Vito, Alfred; Krockover, Gerald H. – 1991
This resource book includes 163 science activities for both preservice and in-service teachers. Activities have been field-tested and are cross-referenced according to the processes of science and the content area covered. Each activity has been written to evoke ideas from the reader, thus enabling each activity to serve a base for additional…
Descriptors: Acoustics, Biological Sciences, Classification, Earth Science
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