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Xiao, Sihan – Research in Science Education, 2020
Educators expect that students be able to make informed decisions about science-related problems in their everyday lives. Engaging science in such problems often entails evaluating available evidence for given arguments. This study explores how students use inscriptions as evidence to argue about socioscientific issues. Fifth- and sixth-grade…
Descriptors: Elementary School Students, Grade 5, Grade 6, Elementary School Science
Tan, Aik-Ling; Wong, Hwei-Ming – International Journal of Science Education, 2012
The call for inquiry science to be a part of the school science curriculum is popular in many parts of the world. While some research in this area revealed success stories of students' learning when they are engaged in student-directed, open-ended scientific inquiry activities, others are more sceptical about how these activities impact students'…
Descriptors: Elementary School Science, Discussion, Classroom Communication, Science Instruction
Malandrakis, George N. – School Science Review, 2011
This research is a high-resolution analysis of grade 6 (ages 11-12) children's interview transcripts about the operation of power stations, before and after teaching. The focus of the study was on how children's conceptual development is built at a discursive level, namely how language is used to express changes in their thoughts. The theoretical…
Descriptors: Learning Theories, Language Usage, Concept Formation, Data Analysis
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
Childs, Gregory – Science and Children, 2007
In sixth grade, students understand that Earth gets visible light from the Sun, but students may also believe the Earth gets heat from the Sun. This last part is incorrect because the Sun is too far from the Earth to heat it directly. So, how does the Sun heat the Earth? When light strikes an object, it can be reflected or absorbed. Absorbed light…
Descriptors: Grade 6, Investigations, Educational Technology, Technology Integration
Zucker, Andrew A.; Tinker, Robert; Staudt, Carolyn; Mansfield, Amie; Metcalf, Shari – Journal of Science Education and Technology, 2008
The Technology Enhanced Elementary and Middle School Science II project (TEEMSS), funded by the National Science Foundation, produced 15 inquiry-based instructional science units for teaching in grades 3-8. Each unit uses computers and probeware to support students' investigations of real-world phenomena using probes (e.g., for temperature or…
Descriptors: Mathematical Models, Effect Size, Virtual Classrooms, Grade 7
Pilatou, Vassiliki; Stavridou, Heleni – International Journal of Science Education, 2004
The aim of this study was to detect primary students' conceptions about the origin and conveyance of electric current and about the connection of household electric appliances. In total, 383 students (aged 11-12) from the town of Volos, Greece, participated; 213 of them drawn from experimental classes and 170 from control groups. The results…
Descriptors: Elementary Education, Elementary School Students, Electronic Equipment, Science Instruction
Diakidoy, Irene-Anna N.; Iordanou, Kalypso – European Journal of Psychology of Education, 2003
The study examined (a) the extent to which teachers and preservice teachers understand the concept of energy and adhere to particular preconceptions associated with it; and (b) their ability to predict pupils' knowledge and understanding of the same concept. Teachers and preservice teachers completed a test by indicating for each item what their…
Descriptors: Preservice Teachers, Energy, Scientific Concepts, Grade 6