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Treschman, Keith – Teaching Science, 2022
The topic of the seasons is covered in both primary and secondary schools in Australia. It may be difficult for some students to comprehend how the Sun alters its position throughout the year. This article shows how to calculate the changing rising and setting positions of the Sun for one's locality and the extremes of its elevation near noon over…
Descriptors: Science Instruction, Astronomy, Computation, Motion
Gozde McLaughlin – ProQuest LLC, 2024
Knowledge-producing practices in sciences and engineering increasingly use computational means for modeling and working with data. Despite consensus regarding the importance of computational thinking in science and engineering, scholars differ in conceptualization of the primary purposes and role of its integration in K-12 science (Kafai &…
Descriptors: Preservice Teachers, Computation, Engineering, Elementary Secondary Education
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Amy Voss Farris; Gözde McLaughlin – Journal of Computer Assisted Learning, 2024
Background: Science teachers' understanding of the roles of computing practices in science frame how they enact scientific computational practices in their teaching and how their students perceive the relationship between computational practices and scientific endeavours. Objectives: This critical, integrative review synthesizes teacher learning…
Descriptors: Science Teachers, Computation, Multiple Literacies, Elementary Secondary Education
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Tofel-Grehl, Colby; Searle, Kristin; Ball, Douglas; Jeong, Soojeong – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2023
As computing becomes an essential component of professional practice across science, technology, engineering, and mathematics (STEM) fields, integration of computing across content areas in K-12 classrooms is also becoming important. Particularly within science classrooms, computer science and computational thinking (CS/CT) are novel and necessary…
Descriptors: Science Instruction, Physics, Elementary Secondary Education, Computation
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Orban, C. M.; Teeling-Smith, R. M. – Physics Teacher, 2020
Computational thinking" (CT) is still a relatively new term in the lexicon of learning objectives and science standards. The term was popularized in an essay by Wing, who said, "To reading, writing and arithmetic, we should add computational thinking to every child's analytical ability." Agreeing with this premise, in 2013 the…
Descriptors: Physics, Science Instruction, Computation, Thinking Skills
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Adler, Rachel F.; Kim, Hanna – Education and Information Technologies, 2018
It is now required for teachers to incorporate computational thinking (CT) into their science classes. Our research modifies the existing structure of a science methods course for preservice teachers to include CT via modeling and simulations. In the first study, preservice teachers were introduced to the basics of coding through an Hour of Code…
Descriptors: Thinking Skills, Computation, Science Instruction, Methods Courses
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Shelley, Mack, Ed.; Admiraal, Wilfried, Ed.; Akcay, Hakan, Ed. – Online Submission, 2021
"Proceedings of International Conference on Education in Mathematics, Science and Technology" includes full papers presented at the International Conference on Education in Mathematics, Science and Technology (ICEMST) which took place on April 1-4, 2021 in Antalya, Turkey. The aim of the conference is to offer opportunities to share your…
Descriptors: Chemistry, Science Experiments, Climate, Problem Solving
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Jaipal-Jamani, Kamini; Angeli, Charoula – Journal of Science Education and Technology, 2017
The current impetus for increasing STEM in K-12 education calls for an examination of how preservice teachers are being prepared to teach STEM. This paper reports on a study that examined elementary preservice teachers' (n = 21) self-efficacy, understanding of science concepts, and computational thinking as they engaged with robotics in a science…
Descriptors: STEM Education, Elementary Secondary Education, Preservice Teacher Education, Elementary School Teachers
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Urban, Michael J., Ed.; Falvo, David A., Ed. – IGI Global, 2016
The application of technology in classroom settings has equipped educators with innovative tools and techniques for effective teaching practice. Integrating digital technologies at the elementary and secondary levels helps to enrich the students' learning experience and maximize competency in the areas of science, technology, engineering, and…
Descriptors: Elementary Secondary Education, STEM Education, Outcomes of Education, Technology Integration
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Good, R. H. – Physics Teacher, 1996
Argues that the common rounding rule is wrong in itself and potentially dangerous to data. The rule may be phrased as follows: "When several quantities are multiplied, the number of significant figures in the final answer is the same as the number of significant figures in the least precise of the quantities being multiplied. The same rule…
Descriptors: Computation, Elementary Secondary Education, Mathematics, Misconceptions
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Sumrall, William J.; Schillinger, Don – Science Scope, 2003
One area of science education that is, at times, neglected involves lessons on technological concepts of these principles--designing, testing, and quality control. Instead, a focus upon science concepts from a pure, and unapplied, perspective is the norm. Thus, while students may learn the equation "mass divided by volume equals…
Descriptors: Elementary Secondary Education, Quality Control, Scientific Concepts, Science Instruction
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Fuller, Kenneth – Science and Children, 1986
Offers a way of teaching quantitative thinking through a software program called, "Hot Dog Stand." This simulation provides students with practice in planning expenses, in computing problems, and in dealing with a situation in which outcomes depend on random events. Also includes suggestions for computer use during non-scheduled time. (ML)
Descriptors: Computation, Computer Assisted Instruction, Elementary School Science, Elementary Secondary Education