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Showing 1 to 15 of 29 results Save | Export
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Andic, Branko; Cvjeticanin, Stanko; Lavicza, Zsolt; Maricic, Mirjana; Novovic, Tatjana; Steševic, Danijela – Research in Science & Technological Education, 2021
Background: Exploring using constructivist learning has become a focus of educational research in recent years. However, no available research has been found which examines the contribution of constructivist learning through the implementation of handheld computers and tablets (in the literature, a constructivist mobile learning environment refers…
Descriptors: Elementary School Science, Biology, Constructivism (Learning), Electronic Learning
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Sullivan, Tiana; Slater, Ben; Phan, Judy; Tan, Amanda; Davis, James – Teaching Science, 2019
The present study provides an illustration of how m-learning may be applied in school science contexts while simultaneously evaluating the accuracy and reliability of mobile phone functionality relating to the measurement of sound. The aim of this study is to report on the use of mobile phones as data collection tools in the context of a science…
Descriptors: Electronic Learning, Educational Technology, Science Instruction, Elementary School Science
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Bar, Varda; Shirtz, Aviv Spector; Brosh, Yafa; Sneider, Cary – Science Educator, 2019
In light of extensive research demonstrating widespread misconceptions about electricity, this paper describes a learning study that targeted the most likely source of difficulty--failure of middle school pupils to develop a mental model that serves as a bridge between static and current electricity. During the intervention, pupils first envision…
Descriptors: Science Instruction, Energy, Middle School Students, Scientific Concepts
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Cetin, Pinar Seda; Metin, Duygu; Capkinoglu, Esra; Leblebicioglu, Gulsen – Science Education International, 2016
Providing students with inquiry-oriented learning environments is a major concern in science education. Argumentation discourse can enhance the effectiveness of inquiry-oriented learning environments. This study seeks the trace of argumentation in Turkish Elementary and Secondary Science Curriculum developed by the Turkish Ministry of Education…
Descriptors: Foreign Countries, Science Curriculum, Persuasive Discourse, Elementary School Science
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Morgan, Paul L.; Farkas, George; Hillemeier, Marianne M.; Maczuga, Steve – Educational Researcher, 2016
We examined the age of onset, over-time dynamics, and mechanisms underlying science achievement gaps in U.S. elementary and middle schools. To do so, we estimated multilevel growth models that included as predictors children's own general knowledge, reading and mathematics achievement, behavioral self-regulation, sociodemographics, other child-…
Descriptors: Science Instruction, Science Achievement, Achievement Gap, Regression (Statistics)
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Bursal, Murat – Educational Sciences: Theory and Practice, 2013
This study investigated the change of the science academic achievement by grade level and gender where 222 elementary students' science and technology course scores between the 4th and 8th grades and science success percentages in 6th and 8th grades Level Determination Exam were longitudinally analyzed. Based on the findings of this study,…
Descriptors: Elementary School Science, Science Achievement, Science Instruction, Age Differences
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Hadenfeldt, Jan C.; Bernholt, Sascha; Liu, Xiufeng; Neumann, Knut; Parchmann, Ilka – Journal of Chemical Education, 2013
Helping students develop a sound understanding of scientific concepts can be a major challenge. Lately, learning progressions have received increasing attention as a means to support students in developing understanding of core scientific concepts. At the center of a learning progression is a sequence of developmental levels reflecting an…
Descriptors: Elementary School Science, Secondary School Science, Science Instruction, Chemistry
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Ozturk, Elif; Ucus, Sukran – Journal of Education in Science, Environment and Health, 2015
Argumentation is highlighted as one of the most important activities of science education by many researchers. The main aim of this research is to examine primary school students' nature of science classes and argumentation skills in terms of their academic success in primary science classes. Thus, the main interest of the study is centered on the…
Descriptors: Scientific Principles, Persuasive Discourse, Science Instruction, Discussion (Teaching Technique)
Ozturk, Elif; Ucus, Sukran – Online Submission, 2015
Argumentation is highlighted as one of the most important activities of science education by many researchers. The main aim of this research is to examine primary school students' nature of science classes and argumentation skills in terms of their academic success in primary science classes. Thus, the main interest of the study is centered on the…
Descriptors: Scientific Principles, Persuasive Discourse, Science Instruction, Discussion (Teaching Technique)
Buxton, Cory A.; Provenzo, Eugene F., Jr. – SAGE Publications (CA), 2011
Grounded in theory and best-practices research, this practical text provides elementary and middle school teachers with 40 place-based activities that will help them to make science learning relevant to their students. This text provides teachers with both a rationale and a set of strategies and activities for teaching science in a local context…
Descriptors: Place Based Education, Science Instruction, Elementary School Science, Science Activities
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Uzun, Salih; Alev, Nedim; Karal, Isik Saliha – Science Education International, 2013
The aim of this study is to reveal the students' and pre-service teachers' understanding of light, sight and related concepts at different educational levels, from primary to higher education. A cross-sectional approach was used since the participants were of different age and educational level. The sample of this study consisted of 30 eighth…
Descriptors: Scientific Concepts, Preservice Teachers, Comprehension, Elementary School Science
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Stevenson, Anne – Science and Children, 2013
"I Wonder" boards are a teaching strategy that can be used in the classroom, as well as during science learning opportunities in nonformal settings, such as after-school science programs or summer camps.This simple strategy has led to deeper science exploration in 4-H, as young people learn alongside program staff, teachers, or…
Descriptors: Science Instruction, Inquiry, Teaching Methods, Nonformal Education
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Miyauchi, Takuya; Kamata, Masahiro – Journal of Chemical Education, 2012
An educational demonstration shows the combustion of carbon to carbon dioxide and then the reduction of carbon dioxide to carbon. A melee diamond is the source of the carbon and the reaction is carried out in a closed flask. The demonstration helps students to realize that diamonds are made of carbon and that atoms do not change or vanish in…
Descriptors: Chemistry, Grade 8, Science Instruction, Middle School Students
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Lange, Catherine; Huff, Kenneth L.; Silverman, Scott; Wallace, Karen – Science Activities: Classroom Projects and Curriculum Ideas, 2012
In this interdisciplinary and field-based activity, grade 5 to 9 students engage in a comprehensive scientific study of snow. Through a series of in-class and out-of-class structured interdisciplinary and team-teaching lesson progressions, students will collect data to be able to analyze and apply knowledge about weather, the physical properties…
Descriptors: Scientific Principles, Cooperative Learning, Grade 5, Grade 9
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Harlow, Danielle B.; Swanson, Lauren H.; Nylund-Gibson, Karen; Truxler, Adam – Science Education, 2011
Understanding what children know is paramount to planning effective science instruction; however, in any classroom, the students hold a variety of ideas. Representing these differences in ways that also acknowledge the common trends among students might facilitate the process of differentiation. To exemplify one such possible process of…
Descriptors: Statistical Analysis, Science Instruction, Student Reaction, Age Differences
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