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Upahi, Johnson Enero; Ramnarain, Umesh – Science & Education, 2022
Learning progressions (LPs) are descriptions of successively more sophisticated ways of thinking about an idea over an extended period of time. The growing interest of researchers in learning progressions is grounded in the potential it holds to align curriculum, instruction, and assessment. Previous review of research on LPs by Duschl et al.…
Descriptors: Science Education, Literature Reviews, Learning Processes, Thinking Skills
Chavez, Jorge – Learning: Research and Practice, 2021
Space-time plays a central role in the scientific study of learning trajectories. From a sociocultural perspective, the definition of a set of space-time coordinates enables researchers to identify and examine both the learning activities in which subjects participate and those life events relevant to understanding their learning processes. The…
Descriptors: Educational Research, Learning Processes, Time, Scientific Concepts
Caroline J. Crowder; Brandon J. Yik; Stephanie J. H. Frost; Daniel Cruz-Rami´rez de Arellano; Jeffrey R. Raker – Journal of Chemical Education, 2024
Understanding reaction mechanisms is integral to success in organic chemistry; however, prior research suggests that learners struggle with recognizing the importance of underlying implicit features in reaction mechanisms. Because of this struggle, understanding how learners' reason about reaction mechanisms and developing assessments to elicit…
Descriptors: Organic Chemistry, Science Instruction, Prompting, Cues
Christodoulakis, Nikolaos; Carulla, Clara Vidal; Adbo, Karina – Education Sciences, 2021
Perezhivanie is a concept that was originally defined by Vygotsky, but it did not become a part of educational theory until recently. Today the concept has been revived, and it is now used as a way to include emotional aspects into education and educational research. The concept also provides a rationale for describing and forming personalised…
Descriptors: Science Education, Educational Research, Early Childhood Education, Metacognition
Nadelson, Louis S.; Heddy, Benjamin C.; Jones, Suzanne; Taasoobshirazi, Gita; Johnson, Marcus – International Journal of Educational Psychology, 2018
Conceptual change can be a challenging process, particularly in science education where many of the concepts are complex, controversial, or counter-intuitive. Yet, conceptual change is fundamental to science learning, which suggests science educators and science education researchers need models to effectively address and investigate conceptual…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Educational Research
Lamb, Richard; Cavagnetto, Andy; Akmal, Tariq – International Journal of Science and Mathematics Education, 2016
A critical problem with the examination of learning in education is that there is an underlying assumption that the dynamic systems associated with student information processing can be measured using static linear assessments. This static linear approach does not provide sufficient ability to characterize learning. Much of the modern research…
Descriptors: Cognitive Processes, Learning Processes, Science Instruction, Models
McCloughlin, Thomas J. J.; Matthews, Philip S. C. – Center for Educational Policy Studies Journal, 2017
This work discusses repertory grid analysis as a tool for investigating the structures of students' representations of biological concepts. Repertory grid analysis provides the researcher with a variety of techniques that are not associated with standard methods of concept mapping for investigating conceptual structures. It can provide valuable…
Descriptors: Biology, Scientific Concepts, Science Instruction, Concept Mapping
Utter, Brian C.; Paulson, Scott A.; Almarode, John T.; Daniel, David B. – Teacher Educators' Journal, 2018
We argue, based on a multi-year collaboration to develop a pedagogy course for physics majors by experts in physics, education, and the science of learning, that the process of teaching science majors about education and the science of learning, and evidence-based teaching methods in particular, requires conceptual change analogous to that…
Descriptors: Science Education, Science Instruction, Majors (Students), Teaching (Occupation)
Pear, Joseph J. – Psychology Press, Taylor & Francis Group, 2016
For over a century and a quarter, the science of learning has expanded at an increasing rate and has achieved the status of a mature science. It has developed powerful methodologies and applications. The rise of this science has been so swift that other learning texts often overlook the fact that, like other mature sciences, the science of…
Descriptors: Learning Processes, Educational Research, Sciences, Educational Principles
Tolmie, Andy – Institute of Education - London, 2012
Recent years have seen substantial improvements in the teaching of reading and early arithmetic based on rigorous analysis of the component learning skills involved in these areas and of the ways they are developed. Despite the importance attached to science, there has been very little comparable work that might provide a steer to primary school…
Descriptors: Curriculum Design, Elementary School Science, Science Instruction, Educational Research
Lee, Yen-Ling – ProQuest LLC, 2011
Much research in educational technology has focused mainly on how the technology supports student learning. Research on what teachers need to know in order to appropriately incorporate technology into their teaching has been limited because of the lack of theoretical grounding for understanding teachers' cognitive process of technology integration…
Descriptors: Educational Technology, Technology Integration, Teaching Methods, Educational Research
Minner, Daphne D.; Levy, Abigail Jurist; Century, Jeanne – Journal of Research in Science Teaching, 2010
The goal of the Inquiry Synthesis Project was to synthesize findings from research conducted between 1984 and 2002 to address the research question, "What is the impact of inquiry science instruction on K-12 student outcomes?" The timeframe of 1984 to 2002 was selected to continue a line of synthesis work last completed in 1983 by Bredderman…
Descriptors: Inquiry, Educational Research, Elementary Secondary Education, Program Effectiveness
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

Sequeira, Manuel; Leite, Laurinda – Science Education, 1991
Authors describe some alternative conceptions held by Portuguese physics students about mechanics and compare students' scientific conceptions with the evolution of historical ideas. Authors contend that teacher knowledge about the history of science can facilitate teaching for conceptual change in physics. (over 20 references) (Authors/PR)
Descriptors: Educational Research, Foreign Countries, Learning Processes, Misconceptions

Leonard, William H. – Journal of College Science Teaching, 1989
Summarizes research on inquiry and investigative strategies for teaching laboratory science. Concludes that meaningful laboratory instruction is distinguished by: student engagement in science inquiry processes, student manipulation of experimental materials, and the experiential teaching of specific scientific concepts. (RT)
Descriptors: College Science, Educational Research, Inquiry, Laboratory Procedures