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Hinojos-Ramos, Jesús Eduardo; Farfán, Rosa María; Orozco-del-Castillo, Mauricio Gabriel – International Journal of Mathematical Education in Science and Technology, 2021
This paper is the result of a research done from the Socioepistemological Theory of Mathematics Education, perspective in which we enquire about the reasons to study trigonometric Fourier series in electrical engineering, and what historical and epistemological conditions can be considered to develop more profound meanings when this topic is…
Descriptors: Mathematics Instruction, Epistemology, Energy, Engineering Education
Schunn, Christian D. – Educational Psychology Review, 2017
This concluding commentary takes the perspective of research on practicing scientists and engineers to consider what open areas and future directions on relational thinking and learning should be considered beyond the impressive research presented in the special issue. Areas for more work include (a) a need to examine educational applications of…
Descriptors: Scientists, Engineering, Teaching Methods, Thinking Skills
Wilcox, Jesse; Kruse, Jerrid; Decker, Scott – Science and Children, 2021
What does a scientist do? What is an engineer? What is technology? What do mathematicians do? Questions about the nature of STEM are fundamental to help elementary students gain a deep understanding of the STEM disciplines. Yet, starting a lesson with such abstract questions can be difficult for any learner. Instead, teachers can use concrete STEM…
Descriptors: STEM Education, Elementary School Students, Elementary School Teachers, Teaching Methods
Tan, Song Wei Benjamin; Naraharisetti, Pavan Kumar; Chin, Siew Kian; Lee, Lai Yeng – Journal of Chemical Education, 2020
The advance of digital technology presents an opportunity to equip students with relevant skill sets as "Scientists of the Future" who are able to utilize knowledge at the interface between various disciplines. In this technology report, an open source programming language is used to automate a simple laboratory experiment commonly…
Descriptors: Programming Languages, Science Instruction, Chemistry, Computer Science Education
Eklund, Holly – PRIMUS, 2020
The purpose of this paper is to explain a newly implemented interactive delivery model for students at the Colorado School of Mines (Mines) repeating Calculus for Scientists & Engineers I during the spring of 2017. Since calculus is a necessary component for so many STEM degrees, it will continue to be a gateway to obtaining such degrees and…
Descriptors: Teaching Methods, Delivery Systems, Calculus, Scientists
Krajcik, Joe – Science and Children, 2015
Science teaching and learning in the United States are at a pivotal point. "A Framework for K-12 Science Education" (NRC 2012b) and the "Next Generation Science Standards" ("NGSS"; NGSS Lead States 2013) shift science educators' focus from simply teaching science ideas to helping students figure out phenomena and…
Descriptors: Science Instruction, Science Education, Science Curriculum, Teaching Methods
Levy, Amanda R. – ProQuest LLC, 2018
Limited research has been done on the implementation of experiential learning to align with science and engineering practices. This research project developed an instrumental case study to examine the efficacy of an experiential education framework for teaching and learning water science and engineering practices in the elementary science…
Descriptors: Water, Science Instruction, Elementary School Science, Teaching Methods
Seiki, Sumer – Science and Children, 2018
In this article, the author describes two lessons in which students applied the scientific knowledge learned from studying offshore oil drilling to construct a fact-based argument on the topic and then communicate it to their policy makers, since public commentary was solicited. The students practiced using their scientific knowledge to…
Descriptors: Fuels, Science Instruction, Teaching Methods, Lesson Plans
Beniston, Lee; Ellwood, Paul; Gold, Jeff; Roberts, James; Thorpe, Richard – Action Learning: Research and Practice, 2014
There is increasing evidence that action learning is valuable in a higher education setting. This paper goes on to report a personal development programme, based on principles of critical action learning, where the aim is to equip early-career scientists and engineers working in a university setting with the knowledge, skills and confidence to…
Descriptors: Experiential Learning, Innovation, Science Process Skills, Critical Thinking
Royce, Christine Anne – Science and Children, 2015
This column includes activities inspired by children's literature. When learning about a topic, scientists refer to documents from past researchers. This month's trade books include nonfiction and historical fiction selections that help to demonstrate similarities and differences "then and now" while incorporating engineering design…
Descriptors: Science Education, Teaching Methods, Engineering, Design
Jones, Ryan Seth; Lehrer, Richard; Kim, Min-Joung – Cognition and Instruction, 2017
This article compares students' critiques within a class discussion about an invented statistic to STEM professionals' critiques from interviews to better understand how the situated meanings of a statistic are similar and different across student and professional worlds. We discuss similarities and differences in how participants constructed…
Descriptors: Comparative Analysis, Criticism, STEM Education, Professional Personnel
Pellegrino, James W., Ed.; Wilson, Mark R., Ed.; Koenig, Judith A., Ed.; Beatty, Alexandra S., Ed. – National Academies Press, 2014
Assessments, understood as tools for tracking what and how well students have learned, play a critical role in the classroom. "Developing Assessments for the Next Generation Science Standards" develops an approach to science assessment to meet the vision of science education for the future as it has been elaborated in "A Framework…
Descriptors: Test Construction, Student Evaluation, Science Education, Academic Standards
Pinelli, Thomas E.; Haynie, W. James, III – Journal of Technology Education, 2010
This paper resulted from discussions between a technology teacher educator and a colleague who has served in various education outreach roles with NASA. The basis of the paper was developed by the NASA director and two engineers, one serving with NASA and the other with the National Institute of Aerospace. The technology teacher educator read the…
Descriptors: Elementary Secondary Education, Engineering, Teacher Educators, Technology Education
Muller, Erich A. – Chemical Engineering Education, 2012
The historical development of the classical postulates of the second law of Thermodynamics can be traced back to the book by Sadi Carnot, "Reflections on the motive power of fire." While unique in its own right and in some sense revolutionary, the book starts with an analogy between heat engines and waterwheels. Waterwheels were common engines of…
Descriptors: Engines, Scientific Concepts, Scientists, Thermodynamics
Roman, Harry T. – Tech Directions, 2011
With some simple metal samples and common household liquids, teachers can build wet cell batteries and use them to teach students about batteries and how they work. In this article, the author offers information that is derived from some simple experiments he conducted in his basement workshop and can easily be applied in the classroom or lab. He…
Descriptors: Technology Education, Teaching Methods, Science Education, Science Teachers
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