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Özcan, Hasan; Tasar, Mehmet Fatih – Journal of Inquiry Based Activities, 2019
This study aimed to teach 9th grade students the meanings of scientific theory and scientific law, and the differences between them. The related literature informs that students at different grade levels have misconceptions about the definition of both scientific theory and scientific law and the relationship between them. In this study, the…
Descriptors: Foreign Countries, Science Education, Scientific Principles, Theories
Pendrill, Ann-Marie; Eriksson, Moa; Eriksson, Urban; Svensson, Kim; Ouattara, Lassana – Physics Education, 2019
Describing the motion in a vertical roller coaster loop requires a good understanding of Newton's laws, vectors and energy transformation. This paper describes how first-year students try to make sense of force and acceleration in this example of non-uniform circular motion, which was part of a written exam. In addition to an analysis of the exam…
Descriptors: Motion, Science Instruction, College Freshmen, Physics
Schizas, Dimitrios; Papatheodorou, Efimia; Stamou, George – International Journal of Science Education, 2019
The present study explores how in-service secondary education Greek biology teachers understand aspects of the concept of ecosystem under the assumption that the ecosystem is an ill-defined concept. If it is to be considered a holistic entity, the ecosystem acquires its definitional features within the ecological field of systems ecology, which…
Descriptors: Ecology, Biology, Science Teachers, Misconceptions
Woitkowski, David – Physical Review Physics Education Research, 2019
University professors' views of nature of science play an important role when guiding undergraduate students into the culture of practicing physicists. While these topics have a long-standing tradition in U.S. curricula they are not part of German educational standards or curricula. Additionally professors' views--in contrast to those of their…
Descriptors: College Faculty, Teacher Attitudes, Scientific Principles, Academic Standards
McGregor, D.; Baskerville, D.; Anderson, D.; Duggan, A. – International Journal of Science Education, Part B: Communication and Public Engagement, 2019
Understanding the nature of science (NoS) is perplexing for young children because it is concerned with not only understanding how evidence is generated but also what kind of meanings can be made from information collected. However, acting as a scientist-in-role, making independent decisions about what information to collect and deciding how to go…
Descriptors: Scientific Principles, Active Learning, Inquiry, Foreign Countries
Kaya, Ebru; Erduran, Sibel; Aksoz, Busra; Akgun, Selin – International Journal of Science Education, 2019
A recent framework on nature of science (NOS) is the Family Resemblance Approach (FRA). FRA presents NOS as a cognitive-epistemic and social-institutional system with a set of categories: aims and values, scientific methods, scientific practices, scientific knowledge and social-institutional aspects of science. Although FRA has been problematised…
Descriptors: Scientific Principles, Preservice Teacher Education, Preservice Teachers, Science Instruction
Galante, Lorenzo; Arlego, Marcelo; Fanaro, Maria; Gnesi, Ivan – Physics Education, 2019
In this paper we present a pedagogical strategy to introduce the Heisenberg uncertainty principle to high school students. The basis on which this proposal relies is the Fourier transform, connecting the quantum function in the x domain, ?(x), with the function in the wave number domain, A(k). This mathematical relationship directly leads to the…
Descriptors: Science Instruction, Secondary School Science, High School Students, Teaching Methods
Lee, Okhee – Science and Children, 2020
A "Framework for K-12 Science Education and the Next Generation Science Standards" ("NGSS") are intended for all students, hence "all standards, all students" (NGSS Lead States 2013). To make this vision a reality, the "NGSS" highlight three key instructional shifts: (1) explain phenomena or design solutions…
Descriptors: Science Instruction, Grade 5, Elementary School Science, Urban Schools
Inouye, Martha; Houseal, Ana; Gunshenan, Clare – Science Teacher, 2020
Recent research on science teaching and learning defines science as both a body of knowledge and a process (NRC 2007); it is the integration of science content, practices, and core ideas (NRC 2012). It would follow that science learning should parallel what science is and how it is done; students should not be just consumers of scientific…
Descriptors: Science Instruction, Teaching Methods, Science Process Skills, Hands on Science
Akbayrak, Melike; Kaya, Ebru – International Journal of Science Education, 2020
This study is based on the Reconceptualised Family Resemblance Approach to Nature of Science (Kaya & Erduran, 2016), which explains science as a cognitive, epistemic, and social-institutional system. A content analysis of Turkish science curricula shows that the social context of science is underemphasised (Kaya & Erduran, 2016).…
Descriptors: Grade 5, Secondary School Students, Secondary School Science, Scientific Principles
Dua, Yohanes Sudarmo; HarraHau, Rambu Ririnsia; Elizabeth, Agustina – Education Quarterly Reviews, 2020
In this study, we probed high school students' understanding of Einstein's theory of gravity by implementing an approach which mainly consists of two steps: firstly, exposing students to TEs describing the Equivalence Principle; secondly, applying the analogy of parallel lines on a curved surface with the path of two falling balls in a real…
Descriptors: High School Students, Grade 11, Physics, Scientific Concepts
Ludwig, Nicola; Carpineti, Marina – Physics Education, 2020
Using everyday life examples is proven didactically useful for teaching physics, as it presents effective applications of physical laws. Cooking and food, in particular, serve two useful purposes: on one side, they are able to engage students in the study of physics with familiar examples; on the other side, thanks to the wide range of physical…
Descriptors: Physics, Science Instruction, Scientific Principles, Food
Koumara, Anna; Plakitsi, Katerina; Lederman, Norman – Science Teacher, 2022
How do scientists make inferences for something they cannot directly observe? The Black Box approach seems ideal to help students understand how scientists work. Black Boxes are sealed units; their interior is not accessible. The effort to determine their possible content (internal structure) demands successive modifications in hypothesis,…
Descriptors: Teaching Methods, Science Instruction, Electronic Equipment, Scientific Principles
Walag, Angelo Mark P.; Fajardo, Maria Teresa M.; Bacarrisas, Prosiebeth G.; Guimary, Faith M. – International Journal of Instruction, 2022
Science teacher's self-efficacy has been at the center of many investigations on students' achievement in science, teacher burnout, and teacher performance. While overly studied, this construct has not been examined with scientific literacy in depth. Thus, this study aims to identify the influence of science teacher's scientific literacy on their…
Descriptors: Science Teachers, Science Instruction, Self Efficacy, Correlation
Santandrea, Jeffrey; Kairouz, Vanessa; Collins, Shawn K. – Journal of Chemical Education, 2018
An undergraduate teaching laboratory experiment involving a continuous flow, photocatalytic thiol-ene reaction using visible-light irradiation is described that allows students to explore concepts of green chemistry, photochemistry, photocatalysis, and continuous flow chemistry.
Descriptors: Undergraduate Students, Laboratory Experiments, Concept Teaching, Scientific Concepts

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