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Dorph, Rena; Schunn, Christian D.; Crowley, Kevin – Afterschool Matters, 2017
The Coalition for Science After School highlights the dual nature of outcomes for science learning during out-of- school time (OST): Learning experiences should not only be positive in the moment, but also position youth for future success. Several frameworks speak to the first set of immediate outcomes--what youth learn, think, and feel as the…
Descriptors: After School Programs, Science Programs, Science Interests, Competency Based Education
Hoachlander, Gary – Educational Leadership, 2015
In too many K-12 schools, notes Hoachlander, science, math, and technology are still taught in isolation from one another--and engineering is barely taught at all. Even when STEM content and skills are presented in an integrated fashion, they are rarely linked to the rest of the academic subjects or to real-world work in STEM fields. Hoachlander…
Descriptors: Integrated Activities, Integrated Curriculum, STEM Education, State Standards
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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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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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Forbes, Cory T.; Biggers, Mandy; Zangori, Laura – School Science and Mathematics, 2013
Within the field of science education, there remains little agreement as to the definition and characteristics of classroom inquiry. The emerging emphasis on scientific practices in science education reform discourse is underpinned by a need to better articulate the constituent elements of inquiry-based science. While a small number of…
Descriptors: Elementary School Science, Inquiry, Scientific Literacy, Protocol Materials
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Cepni, Salih; Cil, Emine – Asia-Pacific Forum on Science Learning and Teaching, 2010
The aim of this study is to develop conceptual change texts in the teaching of aspects of the nature of science and to introduce the development of texts. The socio-cultural and the subjective aspects were taken into consideration in the conceptual change texts, which are presented in the study. The conceptual change texts were prepared to be used…
Descriptors: Scientific Principles, Grade 7, Misconceptions, Pilot Projects
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Asunda, Paul A. – Journal of STEM Teacher Education, 2011
The past several decades have been times of widespread change in world economies. The 21st century has witnessed scientific technological innovations that have had an impact on almost every sector of our social institutions and the way we do things. To succeed in these changing economies and secure meaningful employment, STEM literacy and…
Descriptors: Educational Technology, Vocational Education, Courseware, Open Source Technology
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Stricker, David R. – Journal of STEM Teacher Education, 2011
This study was conducted to describe a high school engineering curriculum, identify teaching strategies used to increase math and science literacy, and discover challenges and constraints that occur during its development and delivery, as well as what strategies are used to overcome these obstacles. Semi-structured interviews were conducted with…
Descriptors: Curriculum Development, Interviews, Scientific Literacy, Teaching Methods
Staver, John R. – UNESCO International Bureau of Education, 2007
Education in science serves three purposes. First, it prepares students to study science at higher levels of education. Second, it prepares students to enter the workforce, pursue occupations, and take up careers. Third, it prepares them to become more scientifically literate citizens. The relative priority and alignment of these three purposes…
Descriptors: Scientific Literacy, Educational Practices, Science Instruction, Teaching Methods