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Bleier, Mitch – Cultural Studies of Science Education, 2023
Simplified, reductionist approaches to curriculum design and delivery are pervasive in science education. In ecological curricula--particularly in, but not limited to K-12--biomes, ecosystems, habitats, and other units of study are simplified and presented as static, easily identified and described entities. Characteristics, components, and…
Descriptors: Classification, Science Instruction, Ecology, Teaching Methods
AL Jadidi, Nadia Ahmed A.; Mohamed, Dalia Abdelwahed; Elrefee, Enas Mahmoud – Journal of Baltic Science Education, 2022
There is a severe shortcoming in science programs in kindergartens in Saudi Arabia. Therefore, this paper presents a conceptual framework for teaching physics concepts to kindergartens to contribute to the consolidation of scientific knowledge by stimulating the skills of inquiry, problem-solving and scientific thinking among children. The…
Descriptors: Natural Sciences, Science Instruction, Physics, Scientific Concepts
Kallery, Maria; Sofianidis, A.; Pationioti, P.; Tsialma, K.; Katsiana, X. – International Journal of Early Years Education, 2022
Cognitive style differences, also known as 'empathizing' and 'systemizing' have been argued as one reason that may explain differences in children's motivation to learn science. Researchers claim that people with a 'systemizing' cognitive style are likelier to engage in science than those with an 'empathizing' cognitive style. As such, they…
Descriptors: Cognitive Style, Learning Motivation, Learner Engagement, Inquiry
Ehsan, Hoda; Rehmat, Abeera P.; Cardella, Monica E. – Science and Children, 2019
Computational thinking can provide a basis for problem solving, for making evidence-based decisions, and for learning to code or create programs. Therefore, it is critical that all students across the K-12 continuum--including students in the early grades--have opportunities to begin developing problem solving and computational thinking skills.…
Descriptors: Teaching Methods, STEM Education, Computer Science Education, Thinking Skills
Douglass, Helen – Science and Children, 2016
This column presents ideas and techniques to enhance science teaching. In today's classrooms, teachers face numerous challenges. They are preparing students for jobs and careers that are not even conceived of yet. Assessments are being used to address students' college and career readiness and to promote critical thinking and problem solving.…
Descriptors: Teaching Methods, Science Instruction, Critical Thinking, Problem Solving
Unal, Merve; Saglam, Mehmet – European Journal of Educational Research, 2018
The aim of this study is to determine the problem solving skills and science process skills of six-year-old children who attended kindergarten and whether or not there is a difference in problem solving skills and science process skills of children receiving and not receiving the education with GEMS program. In the study using the experimental…
Descriptors: Foreign Countries, Science Instruction, Mathematics Instruction, Instructional Effectiveness
Hilton, Annette; Hilton, Geoff – Teaching Science, 2016
In many scientific contexts, students need to be able to use mathematical knowledge in order to engage in scientific reasoning and problem-solving, and their understanding of scientific concepts relies heavily on their ability to understand and use mathematics in often new or unfamiliar contexts. Not only do science students need high levels of…
Descriptors: Science Instruction, Mathematics Skills, Mathematical Concepts, Problem Solving
Schack, Edna O., Ed.; Fisher, Molly H., Ed.; Wilhelm, Jennifer A., Ed. – Research in Mathematics Education, 2017
This book reflects on the continuing development of teacher noticing through an exploration of the latest research. The authors and editors seek to clarify the construct of teacher noticing and its related branches and respond to challenges brought forth in earlier research. The authors also investigate teacher noticing in multiple contexts and…
Descriptors: Mathematics Instruction, Barriers, Metacognition, Science Instruction
Moss, Barbara, Ed.; Lapp, Diane, Ed. – Guilford Publications, 2009
Even the youngest readers and writers in today's classrooms can benefit enormously from engagement with a wide range of traditional and nontraditional texts. This teacher-friendly handbook is packed with creative strategies for introducing K-3 students to fiction, poetry, and plays; informational texts; graphic novels; digital storytelling;…
Descriptors: Protocol Analysis, High Stakes Tests, Visual Aids, Biographies
Simonson, Michael, Ed. – Association for Educational Communications and Technology, 2013
For the thirty-sixth year, the Research and Theory Division of the Association for Educational Communications and Technology (AECT) is sponsoring the publication of these Proceedings. Papers published in this volume were presented at the annual AECT Convention in Anaheim, California. The Proceedings of AECT's Convention are published in two…
Descriptors: Educational Technology, Discussion Groups, Content Analysis, Games
Gallenstein, Nancy L. – Journal of Elementary Science Education, 2005
The purpose of this article is to present various techniques that will engage young children, ages 3-8, in learning science and mathematics. Children actively engage in acquiring basic science and mathematics concepts as they explore their environment. The methods presented are intended to meet the developmental levels of young learners as they…
Descriptors: Young Children, Science Instruction, Mathematics Instruction, Mathematical 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

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