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Bailey, Jodie A. – Mathematics Teacher: Learning and Teaching PK-12, 2023
The COVID-19 pandemic has affected student learning; according to the National Assessment of Educational Progress (2022), scores for students in the United States have shown a decline in mathematics. . One way educators can strengthen students' current mathematical knowledge and bridge to new content is through Number Talks. Number Talks are brief…
Descriptors: Mathematics Instruction, Teaching Methods, Grade 7, COVID-19
Neugebauer, Philipp; Prediger, Susanne – International Journal of Science and Mathematics Education, 2023
The quality of curriculum resources and teaching practices can constrain or promote students' opportunities for mathematics learning, in particular, students with diverse language proficiency. The video study investigates 18 classes that all used the same curriculum resources aimed at developing 367 seventh graders' conceptual understanding of…
Descriptors: Educational Quality, Mathematics Instruction, Teaching Methods, Equal Education
Hashweh, Maher Z. – Research in Science & Technological Education, 2016
Background: Density is difficult to learn and teach in middle schools. This study, hypothesizing that the density concept develops as part of a conceptual system, used a conceptual change approach to teaching density. The approach emphasized the use of multiple strategies to teach the density concept and the associated concepts in the conceptual…
Descriptors: Foreign Countries, Middle School Students, Grade 7, Scientific Concepts
Sherin, Bruce L.; Krakowski, Moshe; Lee, Victor R. – Journal of Research in Science Teaching, 2012
This article is concerned with "commonsense science knowledge", the informally gained knowledge of the natural world that students possess prior to formal instruction in a scientific discipline. Although commonsense science has been the focus of substantial study for more than two decades, there are still profound disagreements about its nature…
Descriptors: Cognitive Structures, Scientific Concepts, Concept Formation, Misconceptions
Hofferber, Natalia; Eckes, Alexander; Wilde, Matthias – European Journal of Educational Research, 2014
Grolnick and Ryan (1987) assume that an autonomy supportive environment leads to higher learner engagement and thus to greater achievements and deeper understanding of content. In school, knowledge acquisition (rote learning as well as conceptual learning) are regarded as most important. In this study, we examined the effects of teachers' autonomy…
Descriptors: Teacher Student Relationship, Personal Autonomy, Academic Achievement, Rote Learning
Chasseigne, Gerard; Giraudeau, Caroline; Lafon, Peggy; Mullet, Etienne – European Journal of Psychology of Education, 2011
The study examined the knowledge of the functional relations between potential difference, magnitude of current, and resistance among seventh graders, ninth graders, 11th graders (in technical schools), and college students. It also tested the efficiency of a learning device named "functional learning" derived from cognitive psychology on the…
Descriptors: Physics, Grade 9, Cognitive Psychology, Grade 7
Calik, Muammer; Ayas, Alipasa – International Education Journal, 2005
The aims of this study were considered under three headings. The first was to elicit misconceptions that students had about the terms "solute", "solvent" and "solution." The second was to understand how students' prior learning affected their misconceptions. The third was to determine if students were able to make a…
Descriptors: Prior Learning, Grade 7, Grade 10, Misconceptions
Tretter, Thomas R.; Jones, M. Gail; Andre, Thomas; Negishi, Atsuko; Minogue, James – Journal of Research in Science Teaching, 2006
To reduce curricular fragmentation in science education, reform recommendations include using common, unifying themes such as scaling to enhance curricular coherence. This study involved 215 participants from five groups (grades 5, 7, 9, and 12, and doctoral students), who completed written assessments and card sort tasks related to their…
Descriptors: Measures (Individuals), Educational Change, Science Education, Science Curriculum