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Showing all 14 results Save | Export
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Lee, Okhee; Grapin, Scott; Haas, Alison – Science Education, 2023
As the vision in "A Framework for K-12 Science Education" and the Next Generation Science Standards (NGSS) takes hold in schools and classrooms, there is an urgent need for teacher professional development (PD) programs that align with NGSS-designed curriculum materials and address the unique strengths and needs of diverse student…
Descriptors: Multilingualism, Faculty Development, Scientific Principles, Science Instruction
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Chang, Hsin-Yi; Lin, Tzung-Jin; Lee, Min-Hsien; Lee, Silvia Wen-Yu; Lin, Tzu-Chiang; Tan, Aik-Ling; Tsai, Chin-Chung – Studies in Science Education, 2020
In this study, we reviewed 76 journal articles on employing drawing assessment as a research tool in science education. Findings from the systematic review suggest four justifications for using drawing as a type of research tool, including assessment via drawing as (a) an alternative method considering young participants' verbal or writing…
Descriptors: Science Education, Formative Evaluation, Student Evaluation, Cognitive Tests
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Christensen, Dana; Lombardi, Doug – Science & Education, 2020
Computational thinking is a contemporary science and engineering practice that has been introduced to the US science classrooms due to its emphasis in the "Next Generation Science Standards" (NGSS). However, including computational thinking into science instruction may be challenging. Therefore, for biological evolution (an essential…
Descriptors: Biology, Evolution, Thinking Skills, Teaching Methods
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May, Laura; Crisp, Thomas; Bingham, Gary E.; Schwartz, Renée S.; Pickens, Mario T.; Woodbridge, Kate – Reading Research Quarterly, 2020
The authors conducted a qualitative content analysis of the 400 National Science Teachers Association Outstanding Science Trade Books for Students K-12 from 2010-2017 selected for their instructional usefulness in science classrooms. The authors examined these expert-recommended science trade books to better understand their design and to identify…
Descriptors: Content Analysis, Science Instruction, Kindergarten, Elementary Secondary Education
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Antink-Meyer, Allison; Brown, Ryan A. – Science & Education, 2019
The inclusion of engineering standards in US science education standards is potentially important because of how limited engineering education for K-12 learners is, despite the ubiquity of engineering in students' lives. However, the majority of learners experience science education throughout their compulsory schooling. If improved engineering…
Descriptors: Science Education, Scientific Literacy, Engineering Education, Elementary Secondary Education
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Gai, Lichun; Li, Yanmei; Zheng, Changlong; Wei, Bing; Jiang, Zhimeng; Lederman, Judith S. – International Journal of Science Education, 2022
While helping students develop informed views about nature of scientific inquiry (VNOSI) has been emphasised in science education, little is known regarding students' current VNOSI at a certain grade level and whether there was evidence of higher attainment of VNOSI in students in higher grades as compared to lower grades? The purpose of this…
Descriptors: Student Attitudes, Scientific Principles, Scientific Attitudes, Inquiry
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Kite, Vance; Park, Soonhye; McCance, Katherine; Seung, Elsun – Journal of Science Teacher Education, 2021
The Next Generation Science Standards (NGSS) emphasize engaging students in science practices through which students can develop content, procedural, and epistemic knowledge of science. To accomplish this goal, science teachers must embed science content in authentic science practice. Successfully integrating content and practice will require…
Descriptors: Science Education, Standards, Scientific Principles, Science Teachers
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Quinlan, Catherine L. – American Biology Teacher, 2020
This article explores the need to include the science capital and cultural capital of African Americans in science teaching and offers practical exemplars for inclusion in the K-12 science curriculum. The author discusses ideas in the evolution of culture that contribute to the science content and perspectives of current textbooks and their…
Descriptors: Kindergarten, Elementary Secondary Education, Scientists, Science Instruction
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Schultheis, Elizabeth H.; Kjelvik, Melissa K. – American Biology Teacher, 2020
Authentic, "messy data" contain variability that comes from many sources, such as natural variation in nature, chance occurrences during research, and human error. It is this messiness that both deters potential users of authentic data and gives data the power to create unique learning opportunities that reveal the nature of science…
Descriptors: Data Analysis, Scientific Research, Science Instruction, Scientific Principles
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Alan, Ümran; Erdogan, Serap – Early Childhood Education Journal, 2018
Although the importance of nature of science (NOS) instruction for learners as young as kindergartners is emphasised in a great number of documents and studies, very little research has been conducted in early childhood contexts. Thus, researchers are still not able to see a comprehensive picture of young children's understandings of NOS. The…
Descriptors: Foreign Countries, Scientific Principles, Kindergarten, Developmental Stages
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Oliveira, Alandeom W.; Akerson, Valarie L.; Colak, Huseyin; Pongsanon, Khemmawadee; Genel, Abdulkadir – Science Education, 2012
This study explores how elementary teachers and students use hedges (tentative words such as "maybe") and boosters (expressions of certainty such as "clearly" and "obviously") during science inquiry discussions. Drawing upon semiotic theory, we examine explicit thematic patterns (semantic meaning relations among science concepts) as well as hidden…
Descriptors: Semantics, Form Classes (Languages), Scientific Principles, Kindergarten
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Finson, Kevin D. – Science and Children, 2010
Learning about what inferences are, and what a good inference is, will help students become more scientifically literate and better understand the nature of science in inquiry. Students in K-4 should be able to give explanations about what they investigate (NSTA 1997) and that includes doing so through inferring. This article provides some tips…
Descriptors: Scientific Principles, Inferences, Kindergarten, Grade 1
Duschl, Richard A., Ed.; Schweingruber, Heidi A., Ed.; Shouse, Andrew W., Ed. – National Academies Press, 2007
What is science for a child? How do children learn about science and how to do science? Drawing on a vast array of work from neuroscience to classroom observation, "Taking Science to School" provides a comprehensive picture of what we know about teaching and learning science from kindergarten through eighth grade. By looking at a broad range of…
Descriptors: Evidence, Science Education, Teacher Education, Scientific Concepts
Arizona Department of Education, 2009
This publication contains Arizona public schools' academic standards for kindergarten. The contents of this document include the following: (1) The Arts Standard 2006--Kindergarten; (2) Comprehensive Health Education/Physical Activity Standards 1997--Readiness (Kindergarten); (3) Foreign and Native Language Standards 1997--Readiness…
Descriptors: School Readiness, Federal Legislation, Health Education, Sex Education