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Grotzer, Tina A.; Solis, S. Lynneth; Tutwiler, M. Shane; Cuzzolino, Megan Powell – Instructional Science: An International Journal of the Learning Sciences, 2017
Understanding complex systems requires reasoning about causal relationships that behave or appear to behave probabilistically. Features such as distributed agency, large spatial scales, and time delays obscure co-variation relationships and complex interactions can result in non-deterministic relationships between causes and effects that are best…
Descriptors: Elementary School Students, Elementary School Science, Kindergarten, Grade 2
Louca, Loucas T.; Zacharia, Zacharias C. – Journal of Science Education and Technology, 2015
Despite the abundance of research in Modeling-based Learning (MbL) in science education, to date there is only limited research on MbL practices among K-6 novice modelers. More specifically, there is no information on how young/novice modelers' modeling enactments look so that researchers and educators have an idea of what should be expected from…
Descriptors: Elementary School Science, Science Education, Modeling (Psychology), Teaching Methods
Buxton, Cory A.; Provenzo, Eugene F., Jr. – SAGE Publications (CA), 2011
Grounded in theory and best-practices research, this practical text provides elementary and middle school teachers with 40 place-based activities that will help them to make science learning relevant to their students. This text provides teachers with both a rationale and a set of strategies and activities for teaching science in a local context…
Descriptors: Place Based Education, Science Instruction, Elementary School Science, Science Activities
Wallace, Carolyn S.; Brooks, Lori – Science Education, 2015
Lack of time for teaching science in traditional classroom placements in the United States has led some science teacher educators to provide practice teaching time for elementary education students in informal science settings. The purposes of this study were to describe the culture of one science methods course taught in conjunction with a K-7…
Descriptors: Science Education, Teacher Educators, Elementary School Science, Methods Courses
Harlow, Danielle B.; Swanson, Lauren H.; Nylund-Gibson, Karen; Truxler, Adam – Science Education, 2011
Understanding what children know is paramount to planning effective science instruction; however, in any classroom, the students hold a variety of ideas. Representing these differences in ways that also acknowledge the common trends among students might facilitate the process of differentiation. To exemplify one such possible process of…
Descriptors: Statistical Analysis, Science Instruction, Student Reaction, Age Differences
Koksal, Mustafa Serdar; Cakiroglu, Jale – Science Education International, 2010
The nature of science aspects (NOS) are the most emphasized theme in many curriculum and reform attempts. Teachers as a curriculum implementer in the classroom play important role for policy, arrangements and classroom experiences on NOS understandings of students. Researchers generally assessed the teachers' NOS conceptions using open-ended…
Descriptors: Elementary School Science, Scientific Principles, Science Teachers, Science Education
Nebraska Department of Education, 2010
This publication presents the Nebraska Science Standards for Grades K-12. The standards are presented according to the following grades: (1) Grades K-2; (2) Grades 3-5; (3) Grades 6-8; and (4) Grades 9-12.
Descriptors: Elementary Secondary Education, State Standards, Academic Standards, Academic Achievement
Palen, Stacy; Proctor, AmyJo – Astronomy Education Review, 2007
We have compiled the K-8 core standards in astronomy for 48 states and the District of Columbia. Astronomy coverage in state curricula varies broadly from state to state, both in quantity and in content. Comparing these core standards between states and with the National Research Council (NRC) astronomy core standards gives interesting information…
Descriptors: Core Curriculum, Astronomy, Academic Standards, State Standards
Kovalik, Susan J.; Olsen, Karen D. – Corwin, 2010
This book examines learning science from multiple perspectives--especially a child's. The whimsical character of Mary Froggins guides readers through the steps of igniting students' natural sense of wonder, incorporating brain research, integrating science concepts with other subjects, and applying science to daily life. The authors demonstrate…
Descriptors: Educational Strategies, Curriculum Development, Multiple Intelligences, Science Programs