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Sobotka, Alex J.; Clough, Michael P. – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2022
Design activities can serve as a concrete experience to address the similarities and differences between science and engineering, and also demarcate engineering from tinkering. They can lay the foundation for concept development of targeted disciplinary ideas. Minor, but crucial, changes to classroom tinkering activities along with targeting and…
Descriptors: STEM Education, Design, Scientific Principles, Intellectual Disciplines
Vyhnal, Christopher R.; Mahoney, Elizabeth H. R.; Lin, Yuan; Radpour, Roxanne; Wadsworth, Henry – Journal of Chemical Education, 2020
We present herein a module of pigment synthesis experiments that could be adapted and implemented in a variety of curricular settings. At the conclusion of each of the past two spring terms at our high school, we offered a 4 day short course on the chemical synthesis of pigments used in art. As part of the course, our students synthesized four…
Descriptors: Color, Science Instruction, High School Students, College Students
Shields, Tanya – Primary Science, 2012
As a primary teacher in a large junior school the author would spend many Sunday afternoons planning exciting science lessons only to find they did not include sufficient mathematical knowledge and skills. At the time, the Numeracy Strategy was spreading through classrooms like wildfire. Meanwhile, science lessons were progressing under the…
Descriptors: Elementary School Teachers, Foreign Countries, Science Instruction, Mathematics Skills
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
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
Fortner, Rosanne W. – 2001
Because of its bases in science and stewardship, aquatic resource education may be seen as a type of environmental education. The range of environmental education (EE) programs includes a huge variety designed for different groups and settings. This chapter takes the perspective of environmental education as it is done in the formal K-12 classroom…
Descriptors: Cooperative Learning, Elementary Secondary Education, Environmental Education, Interdisciplinary Approach
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
Massachusetts State Dept. of Education, Boston. – 1987
Although a major purpose of the Massachusetts Educational Assessment Program (MEAP) is to measure science achievement, it is also designed to provide information that can be used to improve curriculum and instruction. Student, teacher, and principal surveys were used to gather information on instruction, training, resources and other variables…
Descriptors: Achievement Tests, Discussion (Teaching Technique), Elementary School Science, Experiential Learning