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Karasahinoglu Fackler, Ayça – Kappa Delta Pi Record, 2020
Teachers can learn a lot from John Dewey's approach to teaching science. The author contends that his thoughts are still relevant and applicable to today's classrooms.
Descriptors: Progressive Education, Science Instruction, Science Education, Experiential Learning
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Smith, P. Sean – Journal of Science Teacher Education, 2020
The National Survey of Science and Mathematics Education (NSSME) has provided periodic snapshots of K-12 science instruction in the United States for over 40 years. Study topics include teacher background and beliefs, professional learning opportunities, course offerings, instructional objectives and activities, resources for instruction, and…
Descriptors: National Surveys, Educational Change, State Standards, Elementary Secondary Education
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Berkovitz, Joseph – Canadian Journal of Science, Mathematics and Technology Education, 2017
Hodson and Wong (2017, this issue) argue that, though the nature of science (NOS) is now an established focus of school science education and a key element in defining scientific literacy, "the consensus view" of NOS misrepresents contemporary scientific practice. They then propose a number of alternative approaches to science curriculum…
Descriptors: Elementary Secondary Education, Reflection, Science Education, Elementary School Science
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Bazzul, Jesse – Canadian Journal of Science, Mathematics and Technology Education, 2017
This article provides a metacommentary on the special issue on nature of science (NOS). The issue is composed of senior scholars discussing Hodson and Wong's (2017, this issue) critique of the consensus view of nature of science, which on a basic level states that there are agreed-upon aspects of science that can be taught in K-12 schools. Each…
Descriptors: Scientific Principles, Science Education, Elementary Secondary Education, Cultural Pluralism
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Penuel, William R.; Shaw, Sam; Bell, Philip; Hopkins, Megan; Neill, Tiffany; Farrell, Caitlin C. – AASA Journal of Scholarship & Practice, 2018
This paper describes a Networked Improvement Community comprised of a network of 13 states focused on improving coherence and equity in state systems of science education. Grounded in principles of improvement science adapted from healthcare, we are developing and testing resources for formative assessment in science, with the aim of developing…
Descriptors: Science Education, Equal Education, Educational Improvement, Teamwork
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Wang, Jianjun; Ma, Xin – Athens Journal of Education, 2019
This rejoinder keeps the original focus on statistical computing pertaining to the correlation of student achievement between mathematics and science from the Trend in Mathematics and Science Study (TIMSS). Albeit the availability of student performance data in TIMSS and the emphasis of the inter-subject connection in the Next Generation Science…
Descriptors: Scores, Correlation, Achievement Tests, Elementary Secondary Education
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Walls, Leon – Cultural Studies of Science Education, 2017
This paper is written in response to Angela Chapman and Allan Feldman's research study, "Cultivation of science identity through authentic science in an urban high school [classroom]". I utilize this forum piece to extend the call for "awakening a dialogue" that critically assesses the effectiveness of current K-12 science…
Descriptors: Elementary Secondary Education, Scientific Research, Educational Research, Program Effectiveness
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Murphy, P. Karen; Firetto, Carla M.; Greene, Jeffrey A. – Educational Psychology Review, 2017
As reflected in the Next Generation Science Standards, concerns about the adequacy of education and career preparation in science, technology, engineering, and mathematics (STEM) fields have led to fundamental shifts in the focus of K-12 science education. Such shifts are also highlighted in many of the articles within this special issue, and the…
Descriptors: Thinking Skills, Standards, Science Education, Logical Thinking
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Osborne, Jonathan – Canadian Journal of Science, Mathematics and Technology Education, 2017
In this response, I argue that Hodson and Wong's (2017) (see EJ1133274) critique of the consensus view, though valid, lacks a sufficiently detailed and elaborated alternative. Their emphasis on practice fails to define what the goals of engaging in practice might be. In contrast, the picture of science offered as consisting of six different…
Descriptors: Scientific Principles, Science Education, Epistemology, Logical Thinking
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Duncan, Ravit Golan; Chinn, Clark A.; Barzilai, Sarit – Journal of Research in Science Teaching, 2018
Practices of generating, analyzing, and using evidence play a central role in the Framework for K-12 Science Education and the NGSS. However, the construct of evidence remains largely underspecified in these documents, providing insufficient guidance on how to engage students with the broad and complex nature of evidentiary reasoning. This creates…
Descriptors: Science Education, Elementary Secondary Education, Evidence Based Practice, Standards
Educational Horizons, 2014
Pat Yongpradit is the director of education at Code.org. He leads all education efforts, including professional development and curriculum creation, and he builds relationships with school districts. Pat joined "Educational Horizons" to talk about why it is important to teach computer science--even for non-computer science teachers. This…
Descriptors: Computer Science Education, Programming, Interviews, Elementary School Students
Heller, Rafael – Phi Delta Kappan, 2017
Over the past two decades, researchers have gathered a wealth of evidence showing the critical roles that emotional intelligence plays in education, work, and life. But what does it look like to translate that research into practice? In this interview, Yale University's Marc Brackett takes stock of recent efforts to help K-12 educators address the…
Descriptors: Emotional Intelligence, Teaching Methods, Interviews, Elementary Secondary Education
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Gunckel, Kristin L.; Tolbert, Sara – Journal of Research in Science Teaching, 2018
The push for STEM has raised the visibility of engineering as a discipline that all students should learn. With the release of the "Framework for K-12 Science Education" and the Next Generation Science Standards (NGSS), engineering now has an official place in the science curriculum. In both the "Framework" and the NGSS,…
Descriptors: Engineering Education, Science Instruction, Standards, Elementary Secondary Education
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Gray, Steven A.; Nicosia, Kristina; Jordan, Rebecca C. – Democracy & Education, 2012
Mueller, Tippins, and Bryan's contrast of the current limitations of science education with the potential virtues of citizen science provides an important theoretical perspective about the future of democratized science and K-12 education. However, the authors fail to adequately address the existing barriers and constraints to moving…
Descriptors: Evidence, Science Education, Expertise, Scientific Literacy
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Chinn, Pauline W. U. – Cultural Studies of Science Education, 2012
Maria Andree focuses on an immigrant student whose error in a laboratory activity leads to a novel, colorful outcome that she excitedly shares with peers. After engaging in class activities for a few weeks she returns to her earlier dislike of science, saying: "I hate science, particularly Chemistry." The classroom activity system…
Descriptors: Foreign Countries, Class Activities, Cultural Pluralism, Learning Theories
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