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Vieira, Camilo; Magana, Alejandra J.; García, R. Edwin; Jana, Aniruddha; Krafcik, Matthew – Journal of Science Education and Technology, 2018
Computational tools and methods have permeated multiple science and engineering disciplines, because they enable scientists and engineers to process large amounts of data, represent abstract phenomena, and to model and simulate complex concepts. In order to prepare future engineers with the ability to use computational tools in the context of…
Descriptors: Thermodynamics, Integrated Curriculum, Computation, Learning Modules
Guilford, Jacquelyn; Bustamante, Annette; Mackura, Kelly; Hirsch, Susan; Lyon, Edward; Estrada, Kelly – Science Teacher, 2017
Learning science is language intensive. Students might have to interpret the meaning of models, support claims with evidence, communicate arguments, and discuss phenomena and scientific principles. For English Language Learners (ELLs), engaging in scientific and engineering practices includes additional challenges. This article describes a series…
Descriptors: Scientific Literacy, Science Achievement, English Language Learners, Scientific Principles
Pavez, José M.; Vergara, Claudia A.; Santibañez, David; Cofré, Hernán – Science & Education, 2016
A number of authors have recognized the importance of understanding the nature of science (NOS) for scientific literacy. Different instructional strategies such as decontextualized, hands-on inquiry, and history of science (HOS) activities have been proposed for teaching NOS. This article seeks to understand the contribution of HOS in enhancing…
Descriptors: Foreign Countries, Professional Development, Science Teachers, Biology
Windschitl, Mark; Thompson, Jessica J. – Science Teacher, 2013
Modeling is one of the scientific practices featured in the "Next Generation Science Standards" ("NGSS") (Achieve Inc. 2013). This practice is central to the work of science because modeling activities can prompt new questions for investigation, which, in turn, can lead to evidence and information that can be incorporated into…
Descriptors: Learning Modules, Models, Classroom Techniques, Scientific Concepts
Dangur, Vered; Avargil, Shirly; Peskin, Uri; Dori, Yehudit Judy – Chemistry Education Research and Practice, 2014
Most undergraduate chemistry courses and a few high school honors courses, which focus on physical chemistry and quantum mechanics, are highly mathematically-oriented. At the Technion, Israel Institute of Technology, we developed a new module for high school students, titled "Chemistry--From 'the Hole' to 'the Whole': From the Nanoscale to…
Descriptors: Quantum Mechanics, Chemistry, Visual Aids, High School Students
Gaudiello, Ilaria; Zibetti, Elisabetta – Themes in Science and Technology Education, 2013
The educational potential of robotics kits as a form of control technology will remain undervalued until meaningful observation parameters are identified to enable a better understanding of children?s control strategies. For this reason, this paper aims primarily to identify and classify the heuristics spontaneously applied by 6-10 year old…
Descriptors: Robotics, Learning Modules, Educational Opportunities, Heuristics
Powell, Nichole L.; Harmon, Brenda B. – Journal of College Science Teaching, 2014
Oxford College is a small liberal-arts intensive 2-year undergraduate division of Emory University, where inquiry-based courses are a required part of the general education program. We have developed an authentic research experience for undergraduates that mimics--as much as possible--a real undergraduate research experience. Our program provides…
Descriptors: Two Year Colleges, Undergraduate Students, Learning Experience, Student Research
Campbell, Todd; Neilson, Drew; Oh, Phil Seok – Science Teacher, 2013
Of the eight practices of science identified in "A Framework for K-12 Science Education" (NRC 2012), helping students develop and use models has been identified by many as an anchor (Schwarz and Passmore 2012; Windschitl 2012). In instruction, disciplinary core ideas, crosscutting concepts, and scientific practices can be meaningfully…
Descriptors: Physics, Models, Science Education, Science Instruction
Brown, Jeff; Murcia, Karen; Hackling, Mark – Teaching Science, 2013
Multimedia technologies such as Slowmation can be used to enhance curriculum resources and support innovative teaching methods. This case study research of a rural multi-aged class of primary science students included analyses of classroom captured video and interview data from a term long module on Astronomy. The study explored how students'…
Descriptors: Multimedia Instruction, Multimedia Materials, Technology Uses in Education, Teaching Methods
Vaino, Katrin – Science Education International, 2009
The main goal of the study was to describe and understand the development of beliefs related to the thinking and decision-making made by five teachers in teaching chemistry during a two-year intervention study. The participating teachers implemented and, in the second year of the study, developed teaching modules which were geared to the promotion…
Descriptors: Teaching Styles, Intervention, Chemistry, Technological Literacy
Graeber, Wolfgang; Lindner, Martin – Science Education International, 2008
This paper shows how PARSEL modules help to realize the German standards in practice. After analyzing the disappointing results of the TIMSS- and PISA-studies, which caused a kind of "PISA-shock" in Germany, and looking at school systems of winning nations, several changes have been initiated in the German educational system. The most…
Descriptors: National Standards, Foreign Countries, Scientific Literacy, Teaching Methods