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Otte, Michael Friedrich – Mathematics Teaching Research Journal, 2020
Reflection on the theme of the paper makes one to remember Sir Snow's 1959 lecture on The Two Cultures in which Snow had advanced the thesis that the sciences and the humanities had become split into two cultures and had argued that this division had become a major handicap to solving the world's problems. Mathematics education itself has always…
Descriptors: Mathematics, Sciences, Interdisciplinary Approach, Mathematics Education
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Brandl, Matthias; Vinerean, Mirela – Open Education Studies, 2023
In a Swedish second semester course on Euclidean and non-Euclidean geometry in mathematics education at Karlstad University, a bridging teaching strategy comprising elements from Mathematics, Didactics, History, Literature, and Technology was applied by using the concept of Narrative Didactics and Digital Interactive Mathematical Maps developed by…
Descriptors: Geometry, Mathematics Instruction, Undergraduate Students, Foreign Countries
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Bleiler, Sarah K.; Thompson, Denisse R. – Teaching Children Mathematics, 2012
Given the recent release and widespread state adoption of the Common Core State Standards for Mathematics (CCSSM), teachers across the country now have common goals related to what their students should understand about particular mathematical topics. The authors of CCSSM explain, "Asking a student to understand something means asking a teacher to…
Descriptors: State Standards, Curriculum Development, Elementary School Students, Mathematics Instruction
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LaConte, Julie – Science Scope, 2007
Many science topics can naturally be integrated with a variety of mathematical concepts, including the study of light and optics. In the hands-on activities described here, students explore the properties of light energy while building their understanding of geometric concepts. (Contains 2 figures.)
Descriptors: Science Activities, Optics, Geometric Concepts, Middle School Students
Shann, Mary H. – 1996
This is the final evaluation report of the On Growth and Form (OGAF): Learning Concepts of Probability and Fractals by Doing Science project that aimed at engaging high school students in hands-on science activities, experiments, and computer simulations that use probability and fractal geometry to model ragged structures in the real world.…
Descriptors: Computer Simulation, Evaluation, Geometry, Hands on Science