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Showing 1 to 15 of 53 results Save | Export
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Sokoloff, David R. – Physics Teacher, 2016
There is considerable evidence that traditional approaches are ineffective in teaching physics concepts, including light and optics concepts. A major focus of the work of the Activity Based Physics Group has been on the development of active learning curricula like RealTime Physics (RTP) labs and Interactive Lecture Demonstrations (ILDs). Among…
Descriptors: Active Learning, Learning Strategies, Light, Optics
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Pittman, Jason – Science and Children, 2016
Learning celebrations are increasingly common in schools looking to put more emphasis on community and efficacy in place formulaic science fair projects. The celebration aspect is in the community's participation and interaction with the learners. Students are the main event, performing as they would in a school play or applying acquired knowledge…
Descriptors: Science Course Improvement Projects, Science Fairs, Exhibits, Science Activities
Nutchey, David; Grant, Edlyn; English, Lyn – Mathematics Education Research Group of Australasia, 2016
This paper reports on the use of the RAMR framework within a curriculum project. Description of the RAMR framework's theoretical bases is followed by two descriptions of students' learning in the classroom. Implications include the need for the teacher to connect student activities in a structured sequence, although this may be predicated on the…
Descriptors: Mathematics Instruction, Class Activities, Educational Practices, Teaching Methods
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Heldt, Caryn L.; Bank, Alex; Turpeinen, Dylan; King, Julia A. – Chemical Engineering Education, 2016
The need to increase science, technology, engineering, and mathematics (STEM) graduates is great. To interest more students into STEM degrees, we made our graphene biosensor research portable, inexpensive, and safe to demonstrate technology development to high school students. The students increased their knowledge of biosensors and proteins, and…
Descriptors: High Schools, Secondary School Science, Laboratory Experiments, STEM Education
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Gordon, Neil – Teaching Science, 2016
Cognitive Acceleration through Science Education (CASE) on the Sunshine Coast is growing rapidly. It has expanded from one inaugural Year 8 class in 2012 to the current state of play with the involvement of over 3,000 CASE students from eleven Sunshine Coast State High Schools. It is being taught by more than seventy CASE teachers with…
Descriptors: Science Course Improvement Projects, Secondary School Science, Science Achievement, Science Activities
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Andraos, John – Journal of Chemical Education, 2015
This paper presents a simplified approach for the application of material efficiency metrics to linear and convergent synthesis plans encountered in organic synthesis courses. Computations are facilitated and automated using intuitively designed Microsoft Excel spreadsheets without invoking abstract mathematical formulas. The merits of this…
Descriptors: Organic Chemistry, Case Studies, Efficiency, Synthesis
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Stevenson, E.; McArthur, J. – International Journal for Academic Development, 2015
In this Reflection on Practice we propose a triple nexus of research, public engagement and teaching that could provide a new pathway for academic developers to enable greater engagement in learning and teaching issues from science, technology, engineering, and mathematics (STEM) academics. We argue that the public engagement activities demanded…
Descriptors: STEM Education, Instructional Innovation, Teaching Methods, Science Instruction
Adler, Jill – Mathematics Education Research Group of Australasia, 2015
Linked research and development forms the central pillar of the 5-year Wits Maths Connect Secondary Project in South Africa. Our empirical data emphasised the need for teaching that mediates towards mathematics viewed as a network of scientific concepts, and the development of the notion of 'mathematical discourse in instruction' (MDI), as an…
Descriptors: Foreign Countries, Teaching Methods, Faculty Development, Scientific Concepts
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Langley, Mark – School Science Review, 2014
Science is at heart a practical subject, but the perception of what makes good teaching and learning through practical science is often misunderstood. Through working with teachers on professional development courses at the UK's National Science Learning Centre, and drawing on work carried out by other organisations, we present some thoughts and…
Descriptors: Delivery Systems, Educational Quality, Instructional Effectiveness, Science Course Improvement Projects
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Faria, Cláudia; Guilherme, Elsa; Gaspar, Raquel; Boaventura, Diana – Science & Education, 2015
The activities presented in this paper, which are addressed to elementary school, are focused on the pioneering work of the Portuguese King Carlos I in oceanography and involve the exploration of the exhibits belonging to two different science museums, the Aquarium Vasco da Gama and the Maritime Museum. Students were asked to study fish…
Descriptors: Museums, Science Education History, Science Education, Elementary School Science
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Rittenburg, Rebecca; Miller, Brant G.; Rust, Cindy; Esler, Jamie; Kreider, Rusti; Boylan, Ryan; Squires, Audrey – Science Teacher, 2015
In a regional gathering called the Youth Water Summit, high school students present projects that respond to the driving question behind their science curriculum: "How can you address a significant water resource challenge in your community's watershed?" Students exhibit scientific posters, interactive presentations, films, art projects,…
Descriptors: High School Students, Student Projects, Active Learning, Exhibits
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Wheeler, Lindsay B.; Whitworth, Brooke A.; Gonczi, Amanda L. – Science Teacher, 2014
The number of students majoring in science, technology, engineering, and math (STEM) is declining due in part to a lack of student interest (Fairweather 2008; NRC 2012; PCAST 2010). One reason may be the difference between how science is done in school and how it is done in the field (Osborne, Simon, and Collins 2003). An interdisciplinary…
Descriptors: Engineering Technology, Student Interests, Science Interests, STEM Education
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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
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Shirley, Melissa L.; Irving, Karen E. – Journal of Science Education and Technology, 2015
Formative assessment has been demonstrated to result in increased student achievement across a variety of educational contexts. When using formative assessment strategies, teachers engage students in instructional tasks that allow the teacher to uncover levels of student understanding so that the teacher may change instruction accordingly. Tools…
Descriptors: Formative Evaluation, Classroom Techniques, Educational Practices, Educational Technology
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Lega, Joceline C.; Buxner, Sanlyn; Blonder, Benjamin; Tama, Florence – Journal of College Science Teaching, 2014
We describe a third-year undergraduate course that focuses on multiscale modeling and protein folding and has as its primary goal the encouragement of students to integrate thinking across and beyond disciplinary boundaries. The ability to perform innovative and successful research work in STEM (science, technology, engineering, and mathematics)…
Descriptors: Integrated Activities, Science Activities, Science Education, Undergraduate Students
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