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Brown, Patrick L.; Concannon, James; Hansert, Bernhard; Frederick, Ron; Frerichs, Glen – Science Activities: Classroom Projects and Curriculum Ideas, 2015
Why does a balloon deflate when it is left in a cold car; or why does one have to pump up his or her bike tires in the spring after leaving them in the garage all winter? To answer these questions, students must understand the relationships among temperature, pressure, and volume of a gas. The purpose of the Predict, Share, Observe, and Explain…
Descriptors: Investigations, Student Research, Climate, Physics
Akkanat, Cigdem; Gokdere, Murat – Cypriot Journal of Educational Sciences, 2017
Student's ability to use and manipulate scientific concepts has been widely explored; however there is still a need to define the characteristics and nature of science ability. Also, the tests and performance scales that require minimal conceptual knowledge to measure this ability are relatively less common. The aim of this study was to develop an…
Descriptors: Scientific Concepts, Academically Gifted, Middle School Students, Multiple Choice Tests
Sarac, Hakan; Tarhan, Devrim – European Journal of Educational Research, 2017
In the rapidly developing age of technology, the contribution of using multimedia-supported instructional materials in the field of teaching technologies to science education has been increasing steadily. The purpose of this research is to compare the multimedia learning instructional materials prepared according to the 7E learning model and the…
Descriptors: Academic Achievement, Statistical Analysis, Instructional Materials, Experimental Groups
Kreuzer, Pia; Dreesmann, Daniel – Journal of Biological Education, 2017
The aim of this study was to design and evaluate an inquiry- and activity-based learning unit for the classroom that uses biological collections to teach key evolutionary concepts and to support the understanding and appreciation of the work of a museum. The unit consisted of three parts that focused on the most important tasks of museums:…
Descriptors: Museums, Biology, Science Instruction, Units of Study
Yoon, Susan; Anderson, Emma; Lin, Joyce; Elinich, Karen – Educational Technology & Society, 2017
Research on learning about science has revealed that students often hold robust misconceptions about a number of scientific ideas. Digital simulation and dynamic visualization tools have helped to ameliorate these learning challenges by providing scaffolding to understand various aspects of the phenomenon. In this study we hypothesize that…
Descriptors: Computer Simulation, Scientific Concepts, Concept Formation, Visualization
Burgin, Stephen R.; Sadler, Troy D. – Journal of Research in Science Teaching, 2016
The merits of three approaches (explicit, reflective and implicit) to Nature of Science (NOS) teaching and learning in the context of a summer research experience on high school student participants' NOS ideas were explored in this study. The effectiveness of explicit over implicit approaches has been demonstrated in school contexts, but less…
Descriptors: Scientific Principles, Scientific Concepts, Secondary School Science, High School Students
Gates, Alexander E.; Kalczynski, Michael J. – Journal of Geoscience Education, 2016
A hands-on game based upon principles of oil accumulation and drilling was highly effective at generating enthusiasm toward the geosciences in urban youth from underrepresented minority groups in Newark, NJ. Participating 9th-grade high school students showed little interest in the geosciences prior to participating in the oil game, even if they…
Descriptors: Urban Youth, Earth Science, Science Interests, Grade 9
Cooper, A. Kat; Oliver-Hoyo, M. T. – Chemistry Education Research and Practice, 2016
Argument construction is a valuable ability for explaining scientific phenomena and introducing argumentation skills as part of a curriculum can greatly enhance student understanding by promoting self-reflection on the topic under investigation. This article aims to use argument construction as a technique to support an activity designed to…
Descriptors: Persuasive Discourse, Rhetorical Invention, Scientific Literacy, Scientific Principles
Boran, Gül Hanim; Bag, Hüseyin – International Journal of Environmental and Science Education, 2016
The aim in conducting this study is to explore the effects of argumentation on pre-service science teachers' views of the nature of science. This study used a qualitative case study and conducted with 20 pre-service science teachers. Data sources include an open-ended questionnaire and audio-taped interviews. According to pretest and posttest…
Descriptors: Scientific Principles, Persuasive Discourse, Preservice Teachers, Science Teachers
Wan, Zhi Hong; Wong, Siu Ling – Science & Education, 2016
Although the goal of developing school students' understanding of nature of science (NOS) has long been advocated, there is still a lack of research that focuses on probing how science teachers, a kind of major stakeholder in NOS instruction, perceive the values of teaching NOS. Through semi-structured interviews, this study investigated the views…
Descriptors: Science Instruction, Scientific Principles, Semi Structured Interviews, Secondary School Teachers
Lemmer, Miriam – Africa Education Review, 2018
Science teaching and learning require knowledge about how learning takes place (cognition) and how learners interact with their surroundings (affective and sociocultural factors). The study reported on focussed on learning for understanding of Newton's second law of motion from a cognitive perspective that takes social factors into account. A…
Descriptors: Science Education, Physics, Scientific Principles, Motion
Masin, Sergio Cesare; Crivellaro, Francesco; Varotto, Diego – Psicologica: International Journal of Methodology and Experimental Psychology, 2014
The research field of intuitive physics focuses on discrepancies between theoretical and intuitive physical knowledge. Consideration of these discrepancies can help in the teaching of elementary physics. However, evidence shows that theoretical and intuitive physical knowledge may also be congruent. Physics teaching could further benefit from…
Descriptors: Physics, Scientific Principles, Science Instruction, Intuition
Haugland, Ole Anton – Physics Teacher, 2014
The bicycle generator is often mentioned as an example of a method to produce electric energy. It is cheap and easily accessible, so it is a natural example to use in teaching. There are different types, but I prefer the old side-wall dynamo. The most common explanation of its working principle seems to be something like the illustration in Fig.…
Descriptors: Science Education, Teaching Methods, Power Technology, Energy Education
Bond, Charles S. – Teaching Science, 2014
Some readers might not fully know what the difference is between crystallography, and the "new age" practice of dangling crystals around the body to capitalise on their healing energy. The latter is often considered to be superstition, while ironically, the former has actually resulted in real rationally-based healing of human diseases…
Descriptors: Physical Sciences, Therapy, Diseases, Biochemistry
Van Dijk, Esther M. – Science Education, 2014
This paper is concerned with the conceptualization of pedagogical content knowledge (PCK) for teaching about the nature of science. In contrast to the view that science teachers need to develop a specific "PCK for nature of science," an alternative, more comprehensive notion of PCK for science teaching is suggested. The point of…
Descriptors: Scientific Literacy, Pedagogical Content Knowledge, Scientific Principles, Science Teachers

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