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Fischer, Frank; Kollar, Ingo; Ufer, Stefan; Sodian, Beate; Hussmann, Heinrich; Pekrun, Reinhard; Neuhaus, Birgit; Dorner, Birgit; Pankofer, Sabine; Fischer, Martin; Strijbos, Jan-Willem; Heene, Moritz; Eberle, Julia – Frontline Learning Research, 2014
Scientific reasoning and scientific argumentation are highly valued outcomes of K-12 and higher education. In this article, we first review main topics and key findings of three different strands of research, namely research on the development of scientific reasoning, research on scientific argumentation, and research on approaches to support…
Descriptors: Science Process Skills, Persuasive Discourse, Logical Thinking, Epistemology
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Clary, Renee; Wandersee, James – Science Scope, 2011
Discover the secrets contained in fossilized feces. Few topics in middle school classrooms capture students' enthusiasm and interest as do coprolites. These trace fossils offer classroom opportunities for integrated life and Earth sciences study, a stranger-than-fiction history of science, and an opportunity to solve mysteries. (Contains 8…
Descriptors: Paleontology, Earth Science, Class Activities, Science Activities
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Coelho, Ricardo Lopes – Science & Education, 2013
It is generally accepted nowadays that History and Philosophy of Science (HPS) is useful in understanding scientific concepts, theories and even some experiments. Problem-solving strategies are a significant topic, since students' careers depend on their skill to solve problems. These are the reasons for addressing the question of whether problem…
Descriptors: Logical Thinking, Introductory Courses, Scientific Concepts, Problem Solving
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Bernard, Warren – Science Teacher, 2011
There are many types of inquiry activities out there: Demonstrations, guided or scaffolded inquiry labs, open- or free-inquiry labs, and problem-based or project-based learning activities are all staples in science education. The importance of inquiry is highlighted in such documents as the National Science Education Standards (NRC 1996) and the…
Descriptors: Student Projects, Active Learning, Scientific Literacy, Science Education
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Taylor, Jared L.; Smith, Karen M.; van Stolk, Adrian P.; Spiegelman, George B. – CBE - Life Sciences Education, 2010
Invention activities challenge students to tackle problems that superficially appear unrelated to the course material but illustrate underlying fundamental concepts that are fundamental to material that will be presented. During our invention activities in a first-year biology class, students were presented with problems that are parallel to those…
Descriptors: Fundamental Concepts, Problem Solving, Biology, Teaching Methods
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Wong, Shin Y.; Connelly, Robin K.; Hartel, Richard W. – Journal of Food Science Education, 2010
The current generation of students coming into food science and engineering programs is very visually oriented from their early experiences. To increase their interest in learning, new and visually appealing teaching materials need to be developed. Two diverse groups of students may be identified based on their math skills. Food science students…
Descriptors: Foods Instruction, Curriculum Development, Engineering Education, Focus Groups
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Costu, Bayram – EURASIA Journal of Mathematics, Science & Technology Education, 2008
The aim of this study was to investigate effectiveness of PDEODE (Predict-Discuss-Explain-Observe-Discuss-Explain) teaching strategy in helping students make sense of everyday situations. For this, condensation concept was chosen among many science concepts since it is related to many everyday-life events. Forty-eight eleventh graders students…
Descriptors: Foreign Countries, Scientific Concepts, Statistical Analysis, Grade 11
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Chessin, Debby – Science and Children, 2007
Science centers can engage students; accommodate different learning styles and individual interests; help students become independent and confident learners; and encourage social skills among students. In this article, the author worked with third-grade students as they completed activities at learning centers during a week-long unit on simple…
Descriptors: Teaching Methods, Investigations, Problem Solving, Learning Centers (Classroom)
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Farrior, Donna; Hamill, William; Keiser, Leslie; Kessler, Michael; LoPresti, Peter; McCoy, Jerry; Pomeranz, Shirley Barbara; Potter, William; Tapp, Bryan – Journal of STEM Education: Innovations and Research, 2007
We report on a two-year NSF-funded project to strengthen connections among science, technology, engineering, and mathematics (STEM) disciplines. One component of this project was to produce some initial data on the effectiveness of Interdisciplinary Lively Applications Projects (ILAPs) in teaching science and engineering undergraduates. ILAPs are…
Descriptors: Interdisciplinary Approach, Calculus, STEM Education, Undergraduate Students
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Chrysafi, Loucas; Gordon, Sheldon – Mathematics and Computer Education, 2006
We examine the behavior of the curvature function associated with most common families of functions and curves, with the focus on establishing where maximum curvature occurs. Many examples are included for student illustrations. (Contains 18 figures.)
Descriptors: Science Activities, Equations (Mathematics), Mathematics Instruction, Mathematical Concepts
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Statkiewicz, Walter R.; Allen, Robert D. – Journal of College Science Teaching, 1983
Assesses student responses to and evaluates effectiveness of exercises designed to develop critical and analytical reasoning skills in the biological sciences. In answering exercises consisting of problems in a multiple-choice format, students are required to write out justifications for acceptance/rejection of each choice. Significant improvement…
Descriptors: Biology, College Science, Critical Thinking, Evaluation
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Jurdak, Murad Eid – Educational Studies in Mathematics, 2006
This study describes and contrasts theoretically and empirically problem solving of situated problems in school and the real world at the macro level as a social-cultural activity system and analyzes the process of solving situated problems by high school students at the micro level as an activity. Three potentially experiential problem tasks were…
Descriptors: Academic Achievement, High School Students, Interviews, Data Analysis
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Yerushalmi, Edit; Magen, Esther – Physics Education, 2006
Students frequently misconceive the process of problem-solving, expecting the linear process required for solving an exercise, rather than the convoluted search process required to solve a genuine problem. In this paper we present an activity designed to foster in students realization and appreciation of the nature of the problem-solving process,…
Descriptors: Problem Solving, Cognitive Processes, Learning Processes, Physics