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Masnick, Amy M.; Morris, Bradley J. – Education Sciences, 2022
Data reasoning is an essential component of scientific reasoning, as a component of evidence evaluation. In this paper, we outline a model of scientific data reasoning that describes how data sensemaking underlies data reasoning. Data sensemaking, a relatively automatic process rooted in perceptual mechanisms that summarize large quantities of…
Descriptors: Models, Science Process Skills, Data Interpretation, Cognitive Processes
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Hoehn, Jessica R.; Lewandowski, H. J. – Physical Review Physics Education Research, 2022
Students sometimes learn about a model of the "scientific method" that is linear and clear cut. While this approach may have pedagogical advantages, it does not reflect how science is often done in practice. The Experimental Modeling Framework (EMF) describes the complex and iterative process of experimentation in the domain of physics,…
Descriptors: Undergraduate Students, Student Attitudes, Scientific Attitudes, Scientific Methodology
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McConnell, William; Dickerson, Daniel – Science and Children, 2017
In this article, the authors describe a fourth-grade lesson where 3-D printing technologies were not only a stimulus for engagement but also served as a modeling tool providing meaningful learning opportunities. Specifically, fourth-grade students construct an argument that animals' external structures function to support survival in a particular…
Descriptors: Persuasive Discourse, Computer Peripherals, Printing, Technology Uses in Education
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Gikopoulou, Rania – Primary Science, 2017
Rania Gikopoulou is a primary school teacher and post-doctoral researcher at the National and Kapodistrian University of Athens. In this article she describes how her 5th grade class (Age 11) learned about abstract phenomena through models of their microscopic structure.
Descriptors: Foreign Countries, Elementary School Science, Elementary School Students, Grade 5
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Namdar, Bahadir; Shen, Ji – International Journal of Science Education, 2015
Scientific modeling has been advocated as one of the core practices in recent science education policy initiatives. In modeling-based instruction (MBI), students use, construct, and revise models to gain scientific knowledge and inquiry skills. Oftentimes, the benefits of MBI have been documented using assessments targeting students' conceptual…
Descriptors: Science Education, Elementary Secondary Education, Models, Scientific Methodology
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McClary, LaKeisha; Talanquer, Vicente – Journal of Research in Science Teaching, 2011
The central goal of this study was to characterize the mental models of acids and acid strength expressed by advanced college chemistry students when engaged in prediction, explanation, and justification tasks that asked them to rank chemical compounds based on their relative acid strength. For that purpose we completed a qualitative research…
Descriptors: Prediction, Organic Chemistry, Models, Mental Computation
Reshetar, Rosemary – College Board, 2012
On 9/13/12, the Workshop on Developing Assessments to Meet the Goals of the 2012 Framework for K-12 Science Education was held at the National Academies of Science. The workshop was organized and led by the NRC Committee on Developing Assessments of Science Proficiency in K-12 (co-chaired by James Pellegrino and Mark Wilson) and targeted to state…
Descriptors: Advanced Placement, Biology, Science Tests, Science Education
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Ruebush, Laura; Sulikowski, Michelle; North, Simon – Journal of College Science Teaching, 2009
Scientific modeling is an integral part of contemporary science, yet many students have little understanding of how models are developed, validated, and used to predict and explain phenomena. A simple modeling exercise led to significant gains in understanding key attributes of scientific modeling while revealing some stubborn misconceptions.…
Descriptors: Misconceptions, Scientific Methodology, Scientific Literacy, Science Experiments
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Boerwinkel, Dirk Jan; Waarlo, Arend Jan; Boersma, Kerst – Journal of Biological Education, 2009
Perspectives are domain-specific strategies employed by experts in a specific field to formulate and investigate questions. Such strategies may therefore serve as good models for acquiring knowledge. Based on this premise, we developed the perspective of form and function, as used by both biologists and technical designers, into a tool for…
Descriptors: Expertise, Design, Biology, Teaching Methods
Johnson, Susan – Principled Practice in Mathematics and Science Education, 1997
Relates activities implemented in a high school genetics course that enable students to experience "science in the making" (Latour, 1987). Students work in research groups, build explanatory models of observed natural phenomena, present models at class conferences, revise models based on peer feedback or new observational information, and win…
Descriptors: Genetics, Heredity, High Schools, Hypothesis Testing
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Elias, Erasto – European Journal of Engineering Education, 2006
Design methodology (DM) is defined by the procedural path, expressed in design models, and techniques or methods used to untangle the various activities within a design model. Design education in universities is mainly based on descriptive design models. Much knowledge and organization have been built into DM to facilitate design teaching.…
Descriptors: Models, Teaching Methods, Instructional Design, Classroom Techniques
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McIntosh, Thomas C. – Science Teacher, 1995
A new model for problem solving is broken down into four overlapping and interactive processes: Problem Posing, Problem Approach, Problem Solutions, and Communication. Figures illustrate the skills used in this new image of science problem solving, and a ninth-grade science investigation employing the processes is described. (LZ)
Descriptors: Elementary Secondary Education, Evaluation Methods, Grade 9, Investigations
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Solomon, Joan – School Science Review, 1995
Conducted classroom observations to determine students' understanding of the nature of science and the intentionality of experiments. Topics discussed include: does science seek to explain, using models, proving that the theoretical explanation is correct, and discussions of different interpretations. Concludes that most students in the 14-16 age…
Descriptors: Foreign Countries, Models, Observation, Science Education
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Meers, Mason; Demers, Nora Egan; Savarese, Michael – Journal of College Science Teaching, 2003
In a course titled Scientific Process, we introduce undergraduates to the philosophy and practice of science and initiate them into a 2-year undergraduate research track. Engaging exercises and discussions help students understand the scientific process and ultimately produce a research proposal in grant application format. Students defend their…
Descriptors: Science Activities, Research Proposals, Ethics, Scientific Methodology
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Harwood, William – Science Teacher, 2004
Most people are frustrated with the current scientific method presented in textbooks. The scientific method--a simplistic model of the scientific inquiry process--fails in most cases to provide a successful guide to how science is done. This is not shocking, really. Many simple models used in science are quite useful within their limitations. When…
Descriptors: Textbooks, Scientists, Scientific Methodology, Scientific Research
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