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Fadhlan Muchlas Abrori; Zsolt Lavicza; Mathias Tejera; Branko Andic – International Journal for Technology in Mathematics Education, 2023
Integrating biology and mathematics can potentially solve problems associated with students' inability to solve quantitative biology problems. To face this issue, we embarked on a project to develop biological and mathematical content-based comics for elementary school students. It would assist them in gaining early comfort with transdisciplinary…
Descriptors: Biology, Science Instruction, Mathematics Instruction, Problem Solving
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Phillips, Emily; Doran, Erin; Robertson, Laura; Nivens, Ryan Andrew – Teaching Science, 2022
Integration of content areas allows students to deepen and transfer knowledge. An area that allows for an organic integration of STEM content is through combining mathematics with science instruction. This paper describes how we integrated a lesson coupling flower structure with data representation in a Year 3 classroom. The lesson occurred over…
Descriptors: Science Instruction, Mathematics Instruction, Primary Education, STEM Education
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Koman, Greg; Curran, Mary Carla; Ramsey, Andrée L.; Bower, Amy S.; Furey, Heather H. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2023
Ocean currents play an important role in regulating the Earth's climate by redistributing ocean heat around the planet. One important climate phenomenon that includes several large ocean currents is the Atlantic Meridional Overturning Circulation, which is the process of warm surface currents in the North Atlantic Ocean moving to the Arctic to…
Descriptors: Middle School Students, Grade 6, Grade 7, Grade 8
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Sokolowski, Andrzej – Physics Education, 2021
Analysing graphs, formulating covariational relationships, and hypothesizing systems' behaviour have emerged as frequent objectives of contemporary research in physics education. As such, these studies aim to help students achieve these objectives. While a consensus has been reached on the cognitive benefits of emphasizing the structural domain of…
Descriptors: Graphs, Energy, Physics, Science Instruction
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Wong, Vicky – School Science Review, 2017
Although graphs are used in both mathematics and science, there are disciplinary differences in the types of tasks, the terminology and the purpose for graphing. This can make it difficult for students to transfer their learning from one subject to the other. By examining the differences in how graphs are used, and the reasons for these…
Descriptors: Graphs, Science Instruction, Mathematics Instruction, Concept Formation
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Young, Nicholas T.; Heckler, Andrew F. – Physical Review Physics Education Research, 2018
In the context of a generic harmonic oscillator, we investigated students' accuracy in determining the period, frequency, and angular frequency from mathematical and graphical representations. In a series of studies including interviews, free response tests, and multiple-choice tests developed in an iterative process, we assessed students in both…
Descriptors: Interviews, Accuracy, Multiple Choice Tests, Algebra
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Van den Eynde, Sofie; van Kampen, Paul; Van Dooren, Wim; De Cock, Mieke – Physical Review Physics Education Research, 2019
We report on a study investigating the influence of context, direction of translation, and function type on undergraduate students' ability to translate between graphical and symbolic representations of mathematical relations. Students from an algebra-based and a calculus-based physics course were asked to solve multiple-choice items in which they…
Descriptors: Graphs, Equations (Mathematics), Mathematics Instruction, Physics
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McHugh, Luisa; Kelly, Angela M.; Burghardt, M. David – Journal of Science Teacher Education, 2018
Contemporary research has suggested that for students to compete globally, pedagogy must shift to emphasize the infusion of mathematics into science instruction to strengthen understanding. Innovative professional development programs are necessary to achieve this goal, particularly with respect to teaching graphing skills in the context of…
Descriptors: Science Instruction, Mathematics Instruction, Middle School Students, Science Process Skills
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Ivanjek, Lana; Susac, Ana; Planinic, Maja; Andrasevic, Aneta; Milin-Sipus, Zeljka – Physical Review Physics Education Research, 2016
This study investigates university students' graph interpretation strategies and difficulties in mathematics, physics (kinematics), and contexts other than physics. Eight sets of parallel (isomorphic) mathematics, physics, and other context questions about graphs, which were developed by us, were administered to 385 first-year students at the…
Descriptors: Student Attitudes, Graphs, Physics, Science Instruction
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Fisher, Peter J.; Blachowicz, Camille L. Z. – Educational Leadership, 2013
The Common Core standards distinguish between domain-specific vocabulary (topic, point on a graph) and general academic vocabulary (consist of, analyze), but is this a false dichotomy, the authors ask? Analyzing character development, they point out, is not the same as analyzing data. This has implications for vocabulary instruction in the areas…
Descriptors: Academic Standards, Vocabulary, Mathematics Instruction, Science Instruction
Mulligan, Joanne; English, Lyn – Mathematics Education Research Group of Australasia, 2014
This paper describes students' developing meta-representational competence, drawn from the second phase of a longitudinal study, "Transforming Children's Mathematical and Scientific Development." A group of 21 highly able Grade 1 students was engaged in mathematics/science investigations as part of a data modelling program. A pedagogical…
Descriptors: Mathematics Instruction, Interdisciplinary Approach, Science Instruction, Grade 1
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Fatokun, J. O.; Fatokun, K. V. F. – Educational Research and Reviews, 2013
In this paper, we present the concept of problem-based learning as a tool for learning Mathematics and Chemistry, and in fact, all sciences, using life situations or simulated scenario. The methodology involves some level of brain storming. Here, active learning takes place and knowledge gained by students either way through a collaborative…
Descriptors: Problem Based Learning, Mathematics Instruction, Science Instruction, Chemistry
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Coleman, Julianne M.; McTigue, Erin M.; Smolkin, Laura B. – Journal of Science Teacher Education, 2011
The purpose of this study was to obtain data on United States K-5 elementary school teachers' self-reported instructional practices with graphical representations. Via an electronic survey, 388 elementary teachers, from throughout the US, reported about their teaching of the interpretation and the production of graphics within science. The main…
Descriptors: Graphs, Elementary School Teachers, Science Instruction, Teaching Methods
Mulligan, Joanne; Hodge, Kerry; Mitchelmore, Mike; English, Lyn – Mathematics Education Research Group of Australasia, 2013
A 3-year longitudinal study "Transforming Children's Mathematical and Scientific Development" integrates, through data modelling, a pedagogical approach focused on mathematical patterns and structural relationships with learning in science. As part of this study, a purposive sample of 21 highly able Grade 1 students was engaged in an…
Descriptors: Grade 1, Longitudinal Studies, Elementary School Students, Mathematics Instruction
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Farrin, Lynn; Mokros, Jan – Science Scope, 2012
Middle school students need to know about energy concepts and how they can reduce their energy use. New energy-monitoring tools provide powerful opportunities for students to engage in authentic investigations rich in the science practices described in "A Framework for K-12 Science Education" (NRC 2012), while at the same time advancing their…
Descriptors: Energy, Graphs, Middle School Students, Investigations
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