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Karsli Baydere, Fethiye – Chemistry Education Research and Practice, 2021
The main purpose of this study was to investigate the effect of the Context-Based Approach (CBA) enriched by Prediction-Observation-Explanation (POE) on 5th grade students' conceptual understanding of the States of Matter, Heat and Temperature. In this study, quantitative and qualitative data collection methods were employed. The quantitative…
Descriptors: Elementary School Science, Elementary School Students, Grade 5, Chemistry
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Lausch, Rabecca; Ross, Danielle K. – Science Teacher, 2019
Understanding natural selection and adaptation are important precursors to learning evolution (NGSS Lead States 2013), the central unifying principle of biology. This lesson sequence, guided by the Five Practices Model (Cartier et al. 2013), incorporates data described by Andersson (1982) that details female choice in a population that eventually…
Descriptors: Scientific Concepts, Science Instruction, Discussion (Teaching Technique), Evolution
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Aydin Ceran, Sema; Ates, Salih – Journal of Education in Science, Environment and Health, 2019
In this study, it was aimed to determine the effects of the learning process based on the 5E Model Supported by Real Life Based Context in the Unit of Force and Energy in the course of Science on the conceptual understanding levels of the students at the seventh grade which are measured various techniques. The research was designed with…
Descriptors: Teaching Models, Secondary School Science, Science Instruction, Physics
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Duncan, Ravit Golan; Castro-Faix, Moraima; Choi, Jinnie – International Journal of Science and Mathematics Education, 2016
The Framework for Science Education and the Next Generation Science Standards in the USA emphasize learning progressions (LPs) that support conceptual coherence and the gradual building of knowledge over time. In the domain of genetics there are two independently developed alternative LPs. In essence, the difference between the two progressions…
Descriptors: Genetics, Sequential Approach, Molecular Biology, Scientific Concepts
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Tseng, ChingMei; Chen, Shu-Bi Shu-Bi; Chang, Wen-Hua – American Biology Teacher, 2015
Guiding students to generate testable scientific questions is essential in the inquiry classroom, but it is not easy. The purpose of the BDC ("Big Idea, Divergent Thinking, and Convergent Thinking") instructional model is to to scaffold students' inquiry learning. We illustrate the use of this model with an example lesson, designed…
Descriptors: Scaffolding (Teaching Technique), Inquiry, Grade 5, Concept Teaching
McNeill, Katherine L.; Krajcik, Joseph S. – Pearson, 2011
By providing a variety of strategies, scenarios, examples of student writing, classroom video clips from across all science content areas, rubrics, and guidelines for designing assessment items, "Supporting Grade 5-8 Students in Constructing Explanations in Science: The Claim, Evidence, and Reasoning Framework for Talk and Writing" provides…
Descriptors: Evidence, Video Technology, Educational Strategies, Science Teachers
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Jimenez, Bree A.; Browder, Diane M.; Courtade, Ginevra R. – Research and Practice for Persons with Severe Disabilities (RPSD), 2009
This investigation focused on the effects of a treatment package including multiple exemplar training, time delay, and a self-directed learning prompt (KWHL chart) on students' ability to complete an inquiry lesson independently and generalize to untrained materials. Three middle school students with moderate intellectual disabilities learned to…
Descriptors: Moderate Mental Retardation, Disabilities, Task Analysis, Physical Sciences
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Liang, Ling; Schmuckler, Joseph S. – Science Scope, 2004
As both classroom teaching practice and literature show, many students have difficulties learning science concepts such as density. Here are some investigations that identify the relationship between density and floating through experimenting with successive dilution of a liquid, or the systematic change of concentration of a saltwater solution.…
Descriptors: Teaching Methods, Teaching Models, Constructivism (Learning), Science Instruction