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Yuliana, Ivo; Cahyono, Muhamad Edi; Widodo, Wahono; Irwanto, Irwanto – Eurasian Journal of Educational Research, 2021
Purpose: Scientific literacy plays an important role in catalyzing science learning in the 21st century. Unfortunately, previous evidence revealed that students' scientific literacy tends to be unsatisfactory. This study investigated the effect of ethnoscience-themed picture books embedded in context-based learning (EthCBL) on students' scientific…
Descriptors: Picture Books, Scientific Literacy, Comparative Analysis, Science Instruction
La Braca, Franco; Kalman, Calvin S. – Physical Review Physics Education Research, 2021
Traditional, template physics labs are often associated with student dissatisfaction and superficial applications, and are known to leave students with fragmented knowledge. An alternative known as labatorials, a conceptually driven approach to labs, has been proposed. In a number of studies, labatorials have been shown to work well. However, what…
Descriptors: Science Instruction, Teaching Methods, Scaffolding (Teaching Technique), Laboratory Experiments
Magana, Alejandra J.; Chiu, Jennifer; Ying Seah, Ying; Bywater, James P.; Schimpf, Corey; Karabiyik, Tugba; Rebello, Sanjay; Xie, Charles – International Journal of Science Education, 2021
This multiple case study focused on the implementation of a computer-aided design (CAD) simulation to help students engage in engineering design to learn science concepts. Our findings describe three case studies that adopted the same learning design and adapted it to three different populations, settings, and classroom contexts: at the…
Descriptors: Case Studies, Computer Simulation, Engineering Education, Design
Bulat, Pavel V.; Volkov, Konstantin N. – International Journal of Environmental and Science Education, 2016
When a shock wave interacts with a contact discontinuity, there may appear a reflected rarefaction wave, a deflected contact discontinuity and a refracted supersonic shock. The numerical simulation of shock wave refraction at a plane contact discontinuity separating gases with different densities is performed. Euler equations describing inviscid…
Descriptors: Simulation, Equations (Mathematics), Scientific Concepts, Science Instruction
Askew, Jennifer; Gray, Ron – Science Teacher, 2016
British scientist John Dalton (1766-1844), French scientist Joseph Louis Gay-Lussac (1778-1850), and Italian scientist Amedeo Avogadro (1776-1856) are familiar to many chemistry students. Such students may understand the importance of Dalton's atomic theory, model how Gay-Lussac's law relates the pressure and the temperature of a gas, and use…
Descriptors: Science Instruction, Chemistry, Molecular Structure, Scientific Concepts
Hristova, Yulia; Zeytuncu, Yunus E. – PRIMUS, 2016
Surface area and volume computations are the most common applications of integration in calculus books. When computing the surface area of a solid of revolution, students are usually told to use the frustum method instead of the disc method; however, a rigorous explanation is rarely provided. In this note, we provide one by using geometric…
Descriptors: Computation, Calculus, Scientific Concepts, Geometry
Buckingham, Gavin; Michelakakis, Elizabeth Evgenia; Rajendran, Gnanathusharan – Journal of Autism and Developmental Disorders, 2016
Autism is characterised by a range of perceptual and sensorimotor deficits, which might be related to abnormalities in how autistic individuals use prior knowledge. We investigated this proposition in a large non-clinical population in the context of the size-weight illusion, where individual's expectations about object weight influence their…
Descriptors: Prior Learning, Influences, Autism, Psychomotor Skills
de Pereira, Alexsandro Pereira; Lima Junior, Paulo; Rodrigues, Renato Felix – Science & Education, 2016
Explaining is one of the most important everyday practices in science education. In this article, we examine how scientific explanations could serve as cultural tools for members of a group of pre-service physics teachers. Specifically, we aim at their use of explanations about forces of inertia in non-inertial frames of reference. A basic…
Descriptors: Scientific Concepts, Preservice Teachers, Science Education, Physics
Lubrica, Joel V. – Physics Education, 2016
This paper presents one way of demonstrating the Principle of Equivalence in the classroom. Teaching the Principle of Equivalence involves someone experiencing acceleration through empty space, juxtaposed with the daily encounter with gravity. This classroom activity is demonstrated with a water-filled bottle containing glass marbles and…
Descriptors: Teaching Methods, Scientific Methodology, Scientific Principles, Demonstrations (Educational)
Maza, Johnathan C.; Villa, Jordan K.; Landino, Lisa M.; Young, Douglas D – Journal of Chemical Education, 2016
The site-specific introduction of unnatural amino acids (UAAs) has been demonstrated to be a useful tool in protein engineering. Moreover, the incorporation of a UAA into a protein has become feasible with the increased commercial availability of UAAs and robust expression plasmids. In addition to the ease of incorporation, the concepts utilized…
Descriptors: Undergraduate Students, Biochemistry, Science Experiments, Science Instruction
Walsh, Kieran – Advances in Physiology Education, 2016
There has been much recent commentary on integration in health care professional education. This commentary is of importance to physiology education as integration often touches on integration between preclinical and clinical sciences. There are different forms of integration, from horizontal to vertical to spiral, and different theories underpin…
Descriptors: Physiology, Medicine, Medical Education, Professional Education
McClelland, J. A. G. – Physics Education, 2016
Newton's first and second laws have implications for the kinetic energy as well as the momentum of a body. It is recommended that this should be made explicit at an appropriate point in a course.
Descriptors: Scientific Principles, Scientific Concepts, Kinetics, Energy
Koudelkova, Vera – Physics Education, 2016
A new simple arrangement how to demonstrate diamagnetic levitation is presented. It uses pencil lead levitating in a track built from neodymium magnets. This arrangement can also be used as a classroom experiment.
Descriptors: Science Instruction, Physics, Scientific Concepts, Magnets
Kuhn, Deanna – Science Education, 2016
Have the Next Generation Science Standards fulfilled a goal of specifying the objectives of precollege science education in clear and exact enough terms to make them readily implementable? Using students' understanding of the concept of a variable as a case in point, the author suggests that the standards, despite their seeming precision and…
Descriptors: Science Instruction, Scientific Concepts, Elementary Secondary Education, Concept Formation
Tu, Hong; Zhu, Jiongming – Physics Teacher, 2016
In physics, idealized models are often used to simplify complex situations. The motivation of the idealization is to make the real complex system tractable by adopting certain simplifications. In this treatment some unnecessary, negligible aspects are stripped away (so-called Aristotelian idealization), or some deliberate distortions are involved…
Descriptors: Physics, Models, Scientific Concepts, Scientific Principles

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