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No Child Left Behind Act 20014
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A. Carr-Chellman, Ali; Kitchel, Allen; L. Olive, James – International Journal of Educational Reform, 2023
Recent articles have introduced ideas from Physics, specifically, negentropy, to the social sciences. Applications have been primarily in higher education, online learning, and organizations. This article applies negentropy to PK-12 school contexts, discussing the principles for application of systemic school reform and improvement. Negentropy is…
Descriptors: Scientific Concepts, Social Sciences, Educational Change, Preschool Education
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Simard, Catherine – Journal of Biological Education, 2023
This article outlines the results from the research on primary and secondary school pupils' conceptualisation of microorganisms. It has been observed from the past few decades that one conceptual model is dominant, in which microorganisms are considered harmful, disease-causing and living in dirty environments. These misconceptions are only likely…
Descriptors: Elementary Secondary Education, Scientific Concepts, Misconceptions, Microbiology
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Virtanen, Olli; Constantinidou, Emanuella; Tyystjärvi, Esa – Journal of Biological Education, 2022
Plant leaves are green because they contain the green photosynthetic pigments, chlorophylls a and b. Popular science literature, and sometimes even textbooks, state that the greenness is caused by reflection of green light by chlorophyll. In the present study, we compared the reflectance spectra of green leaves to yellow or white leaves of the…
Descriptors: Plants (Botany), Misconceptions, Scientific Concepts, Science Instruction
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Jerry Easdon – Journal of Chemical Education, 2022
Water and an immiscible organic liquid are placed in a small plastic bottle. Ten small pieces of a notecard which is shaded on one side by crayon or pencil (graphite or colored) are cut out and placed inside the bottle. After capping and shaking, the notecard pieces float at the liquid-liquid interface with the shaded side facing the nonpolar…
Descriptors: Elementary Secondary Education, Chemistry, Science Instruction, Science Activities
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Leonora Kaldaras; Hope O. Akaeze; Joseph Krajcik – Journal of Research in Science Teaching, 2024
Chemical bonding is central to explaining many phenomena. Research in chemical education and the Framework for K-12 Science Education (the "Framework") argue for new approaches to learning chemical bonding grounded in (1) using ideas of the balance of electric forces and energy minimization to explain bond formation, (2) using learning…
Descriptors: Science Education, Academic Standards, Chemistry, Energy
Page Keeley – NSTA Press, 2024
Here's a fresh way to help your students learn life science by determining how you can help them learn best. "Uncovering Student Ideas in Life Science, Volume 2," offers 30 new formative assessment probes--engaging questions that can reveal what students already know (or think they know) about a core science topic. Armed with that…
Descriptors: Science Education, Knowledge Level, Biological Sciences, Scientific Concepts
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Ingrid S. Carter; William R. Thornburgh; Thomas R. Tretter – Electronic Journal for Research in Science & Mathematics Education, 2024
This study explored K-12 teachers' understanding and implementation of the Next Generation Science Standards (NGSS) during and after participation in a professional development (PD) program that included the development of science teachers' conceptual understanding of science. We add to the literature with our focus on a multi-year PD program…
Descriptors: Academic Standards, Elementary Secondary Education, Science Instruction, Faculty Development
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Blair, David; Kaur, Jyoti; Popkova, Anastasia – Teaching Science, 2022
On September 21, 1922, an eclipse of the Sun at Wallal in north-west Australia provided definitive proof that Einstein's theory of gravity is correct. By proving that space is elastic, it paved the way for the discovery of gravitational waves in 2015, in which Australia also played a major role. David Blair, Jyoti Kaur, and Anastasia Popkova are…
Descriptors: Science Education, Recognition (Achievement), Foreign Countries, Scientific Concepts
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Lara Rodrigues; Alejandra Meneses; Maximiliano Montenegro; Cristián Cortés – International Journal of Science and Mathematics Education, 2025
Astronomy has great potential to attract children toward science and improve their scientific literacy. However, it has a relatively small presence within the school curricula worldwide. In Chile, home of the world's largest telescopes, astronomy is even more relevant in science education, but the presence of astronomical content within the…
Descriptors: Astronomy, Science Curriculum, Science Education, Foreign Countries
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Kevin Sutton; Laura Doyle; Sharon Bowers; Rebecca Jaramillo; Jeremy V. Ernst – Technology and Engineering Teacher, 2022
Although designed for informal educational structures and non-formal providers, the AeroEducate initiative offers youth in a variety of settings an initial exposure to the world of aviation and aeronautics. Real-world and context-based experiences spark learners' interests and may help them discover a personal and/or professional passion for the…
Descriptors: Aviation Technology, STEM Education, Learning Activities, Elementary Secondary Education
National Oceanic and Atmospheric Administration, 2021
The Essential Principles and Fundamental Concepts described in Version 3 of this guide represent content that does not fall neatly within traditional science disciplines, but rather supports a focus on integrated science. Many Fundamental Concepts illustrate more than one Essential Principle. This guide presents a vision of an ocean-literate…
Descriptors: Oceanography, Scientific Concepts, Science Instruction, Elementary Secondary Education
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Susman, Katarina; Rihtaršic, David – Physics Education, 2022
The paper introduces an electronic device named 'Blinker', which is suitable for laboratory work on topics related to electric current and resistance, as it allows the visualization of electric current. The Blinker is well suited for all levels of education if the activities are carefully selected. However, despite other devices used for measuring…
Descriptors: Science Instruction, Science Laboratories, Energy, Laboratory Equipment
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Marake, 'Maphole; Jita, Loyiso C.; Tsakeni, Maria – Journal of Baltic Science Education, 2022
It is important for students to understand force concepts because they are central to learning physics and other sciences; however, students find it difficult to understand. There are calls for teachers to tap into their professional knowledge and develop beliefs that help them assist students comprehend the topic. To meet this challenge,…
Descriptors: Science Teachers, Teacher Attitudes, Pedagogical Content Knowledge, Science Instruction
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Phillip A. Boda; Shruti Bathia; Libby Gerard; Marcia C. Linn – Instructional Science: An International Journal of the Learning Sciences, 2024
Advances in graphing technologies and learning sciences pedagogy have the potential to equitably support students when exploring complex systems depicting dynamic relationships across multiple disciplinary topics in Science, Technology, Engineering, and Mathematics (STEM). We report on the cumulative impact of science units designed in a Research…
Descriptors: STEM Education, Elementary Secondary Education, Graphs, Interdisciplinary Approach
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Saeed Salimpour; Michael Fitzgerald; Robert Hollow – Physical Review Physics Education Research, 2024
Over the years, there have been various calls to increase and better represent astronomy in curricula. This is motivated by views within the astronomy and astronomy education communities that the awe, wonder, and interdisciplinary nature of astronomy has the potential to engage students in STEM across disciplines. Reviews of curricula have shown…
Descriptors: Astronomy, Physics, Science Instruction, Foreign Countries
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