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Mathelitsch, Leopold – Center for Educational Policy Studies Journal, 2013
The role of competencies is discussed with respect to science teaching. In particular, competence models from Germany, Switzerland and Austria are presented and compared. A special topical program, "Competencies in Mathematics and Science Teaching", was started in Austria three years ago. Initial experiences with this program are…
Descriptors: Science Education, Teaching Methods, Teacher Competencies, Program Evaluation
Mayer, Kristen; Damelin, Daniel; Krajcik, Joseph – Science Teacher, 2013
The "Next Generation Science Standards" ("NGSS") emphasizes content and scientific practices, but what does this actually look like in a classroom? The "NGSS" integrates scientific and engineering practices with core ideas and crosscutting concepts, merging the three dimensions from "A Framework for K-12 Science…
Descriptors: State Standards, Models, Teaching Methods, Science Activities
Dambekalns, Lydia; Medina-Jerez, William – Science Scope, 2012
All too often, subjects in schools present disjointed phenomena as a compilation of data or facts that seem isolated from students' lives. However, current science education pedagogy clearly emphasizes integration of knowledge and skills in real-world settings (NRC 2007). This integrated instructional approach addresses fundamental process skills…
Descriptors: Science Education, Art Education, Elementary Secondary Education, Science Instruction
Dublin, Robin; Sigman, Marilyn; Anderson, Andrea; Barnhardt, Ray; Topkok, Sean Asiqluq – Journal of Geoscience Education, 2014
We have developed the traditional science fair format into an ocean science fair model that promoted the integration of Western science and Alaska Native traditional knowledge in student projects focused on the ocean, aquatic environments, and climate change. The typical science fair judging criteria for the validity and presentation of the…
Descriptors: Science Fairs, Oceanography, Models, Student Projects
Maloney, Jane; Curtis, Sheila – Primary Science, 2012
How do teachers help children understand the difference between the structure of a flower and that of a root? Depending on the time of year this activity is quite easy. Get a bunch of flowers, germinate some chickpeas and raid the kitchen for carrots and beetroots--the children can experience the "real thing". But what if teachers want the…
Descriptors: Teaching Methods, Models, Scientific Literacy, Use Studies
Pallant, Amy; Lee, Hee-Sun; Pryputniewicz, Sara – Science Teacher, 2012
Systems thinking suggests that one can best understand a complex system by studying the interrelationships of its component parts rather than looking at the individual parts in isolation. With ongoing concern about the effects of climate change, using innovative materials to help students understand how Earth's systems connect with each other is…
Descriptors: Climate, Teaching Methods, Computer Simulation, Electronic Learning
Chapman, Georgina; Langley, Mark; Skilling, Gus; Walker, John – Education in Science, 2011
The national network of Science Learning Centres is a co-ordinating partner in the Getting Practical--Improving Practical Work in Science programme. The principle of training provision for the "Getting Practical" programme is a cascade model. Regional trainers employed by the national network of Science Learning Centres trained the cohort of local…
Descriptors: Partnerships in Education, Training Methods, Training Objectives, Science Course Improvement Projects
Keller, Thomas E.; Pearson, Greg – Technology and Engineering Teacher, 2012
In this article, the authors introduce engineering and technology teachers to the process that led to the National Research Council's framework for K-12 science education and some of its content and delve into the dimensions of the framework that should be of most interest to engineering and technology teachers. The framework articulates a vision…
Descriptors: Science Education, Elementary Secondary Education, Instructional Development, Science Course Improvement Projects
Blank, Lisa M.; Plautz, Mike; Almquist, Heather; Crews, Jeff; Estrada, Jen – Science Scope, 2012
"A Framework for K-12 Science Education: Practices, Crosscutting Concepts, and Core Ideas" emphasizes that the practice of science is inherently a model-building activity focused on constructing explanations using evidence and reasoning (NRC 2012). Because building and refining is an iterative process, middle school students may view this practice…
Descriptors: Models, Elementary Secondary Education, Technology Uses in Education, Technology Integration
Roman, Harry T. – Technology and Engineering Teacher, 2011
In this article, the author suggests a classroom challenge that will engage students in designing a house on the hill. He suggests teachers ask a local builder to come to the school to discuss the kinds of concerns that must be dealt with when building homes in cold environments. The use of dioramas and cardboard scale models would be very useful…
Descriptors: Building Design, Creative Thinking, Thinking Skills, Science Process Skills
Clarke, Katie C. – Journal of Extension, 2010
A new Science, Engineering and Technology (SET) approach was designed for youth who participated in the Minnesota State Fair Livestock interview process. The project and evaluation were designed to determine if the new SET approach increased content knowledge and science process skills in participants. Results revealed that youth participants not…
Descriptors: Animals, Science Programs, Pilot Projects, Science Process Skills
St. John, Mark – Inverness Research, 2014
The Algebra Project DR K-12, funded by the National Science Foundation as a Research and Development Project, addressed the challenge of offering significant STEM content for students to ensure public literacy and workforce readiness. The project's primary purpose was to test the feasibility and effectiveness of a model for establishing four-year…
Descriptors: Summative Evaluation, Algebra, Demonstration Programs, Cohort Analysis

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