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Duran, Emilio; Worch, Eric; Boros, Amy; Keeley, Page – Science and Children, 2017
One of the most powerful strategies to support next generation science instruction is the use of instructional models. The Biological Sciences Curriculum Study 5E (Engage, Explore, Explain, Elaborate, and Evaluate) instructional model is arguably the most widely used version of a learning cycle in today's classrooms. The use of the 5Es as an…
Descriptors: Science Instruction, Models, Biology, Science Curriculum
Seker, Burcu Sezginsoy; Erdem, Aliye – Journal of Education and Training Studies, 2017
Students learning a defined subject only perform by learning of thinking based on the concepts forming that subjects. Otherwise, students may move away from the scientific meaning of concepts and may fall into conceptual errors. Students' conceptual errors affect their following learning and cause them resist change. It is possible to prevent this…
Descriptors: Lesson Plans, Models, Scientific Concepts, Concept Teaching
Anderson-Pence, Katie L.; Moyer-Packenham, Patricia S.; Westenskow, Arla; Shumway, Jessica; Jordan, Kerry – International Journal for Mathematics Teaching and Learning, 2014
The purpose of this study was to deconstruct the relationship between visual static models and students' written solutions to fraction problems using a large sample of students' solutions. Participants in the study included 162 third-grade and 209 fourth-grade students from 17 different classrooms. Students' written responses to open-ended tasks…
Descriptors: Mathematics, Models, Visual Aids, Problem Solving
Paik, Seoung-Hey – Chemistry Education Research and Practice, 2015
The purpose of this study was to explore how examples used in teaching may influence elementary school students' conceptions of evaporation and boiling. To this end, the examples traditionally used to explain evaporation and boiling in Korean 4th grade science textbooks were analyzed. The functions of these published examples were explanation…
Descriptors: Science Instruction, Elementary School Science, Scientific Concepts, Heat
Durkin, Kelley; Rittle-Johnson, Bethany – Learning and Instruction, 2012
Comparing common mathematical errors to correct examples may facilitate learning, even for students with limited prior domain knowledge. We examined whether studying incorrect and correct examples was more effective than studying two correct examples across prior knowledge levels. Fourth- and fifth-grade students (N = 74) learned about decimal…
Descriptors: Mathematics Instruction, Arithmetic, Models, Instructional Materials
Hauck, Nancy – ProQuest LLC, 2012
The purpose of this study was to determine the extent to which sustained teacher professional development in science education affects the classroom instruction of elementary school teachers in third through sixth grade over a 3-year period. The teachers in the study were all elementary endorsed and prepared to be generalists in the content areas.…
Descriptors: Elementary School Teachers, Science Instruction, Faculty Development, Elementary School Students
Carrier, Sarah J.; Thomas, Annie – Science and Children, 2010
"Watch out, the stove will burn you," "Ooh, ice cream headache!" Students construct their conceptions about heat and temperature through their own intuitions about daily life experiences. As a result, misconceptions can be born from these constructed concepts. The activity described here addresses student misconceptions about thermal insulation…
Descriptors: Structural Elements (Construction), Misconceptions, Scientific Concepts, Problem Solving