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John W. Keller; Arianna L. Demmerly – Journal of Chemical Education, 2025
This computational exercise gives students an in-depth look at the reactants, transition state, and product of the crystal violet alkaline hydrolysis reaction. The exercise, which is aimed at second semester general chemistry students, involves DFT energy calculations on five structures: crystal violet cation, crystal violet alcohol, and 4-water…
Descriptors: Chemistry, Science Education, Computation, Scientific Concepts
Bingham, Mindy – Childhood Education, 2023
While the author can see many ways that artificial intelligence can be used as an adult, a professional, and a business owner, she also realized what it was going to do for children who are learning their basic skills, such as how to write, how to work with numbers, how to think for themselves, and how to make considered choices. What would this…
Descriptors: Artificial Intelligence, Technology Uses in Education, Children, Cognitive Development
Galit Wellner; Ilya Levin – Learning, Media and Technology, 2024
The paper proposes a framework for thinking about digital technologies, including AI, in education. The framework combines Don Ihde's postphenomenology and Seymour Papert's constructionism. The former is rooted in the philosophy of technology, the latter -- in education and technology. The intersections between the two theories have been mentioned…
Descriptors: Philosophy, Children, Phenomenology, Constructivism (Learning)
Greenslade, Thomas B., Jr. – Physics Teacher, 2022
As I approach my 70th year in physics, let me tell my younger colleagues about my adventures with computation. When I was 14, my father gave me a slide rule because I appeared to be headed toward a career in physics. Since then, I have had experience with many other calculating devices.
Descriptors: Physics, Science Instruction, Educational Technology, Calculators
Wolf, Mark E.; Norris, J. Widener; Fynewever, Herb; Turney, Justin M.; Schaefer, Henry F., III – Journal of Chemical Education, 2022
Over the past half century, computational chemistry has evolved from a niche field to a ubiquitous pillar of modern chemical research. Driven by the increased demand for computational chemistry in research settings, the undergraduate curriculum has evolved alongside to ensure that students are well-equipped for modern research. Toward this end,…
Descriptors: Science Instruction, Science Laboratories, Chemistry, Computer Simulation
Caerols, Hugo; Asenjo, Felipe A. – Physics Teacher, 2020
From ancient times, the different features of planets and moons have created a huge interest. Aristarchus was one of the first to study the relative relations among Earth, Moon, and Sun. This interest has remained until today, and therefore it is always relevant to make this knowledge more appealing to the younger generations. Nowadays, smartphone…
Descriptors: Science Instruction, Astronomy, Telecommunications, Handheld Devices
Roy, George J.; Cunningham, Matthew; Rafanan, Kenneth – Mathematics Teacher: Learning and Teaching PK-12, 2023
In this article, the authors explain how they leveraged the popularity of the "Star Wars" franchise to introduce a task steeped in popular culture as a fun way to engage their students in investigating complex mathematics that have real-life connections to careers in toy design and engineering design in general. The authors share various…
Descriptors: Popular Culture, Films, Learner Engagement, Mathematics Instruction
Hadi D. Arman; Tu M. Ho; Kaitlyn Varela; Cynthia S. Veliz; Richard B. Zanni; Armando Rodriguez; Zhiwei Wang; Francis K. Yoshimoto – Journal of Chemical Education, 2023
Eleven different laboratory experiments were designed and executed throughout a semester to provide a meaningful research experience for 23 undergraduate biochemistry majors at UTSA. The topic of the semester was based on the idea of exploring new aspects to enhance our understanding of how the human body uses cytochrome P450 enzymes to metabolize…
Descriptors: Biochemistry, Science Laboratories, Undergraduate Students, Undergraduate Study
Yara C. Almanza-Arjona; Juan C. Durán-Álvarez; Ernesto Fernández-Urtusástegui; Claudia S. Castrejón-Perezyera – Journal of Chemical Education, 2022
The reaction rate and rate law are chemical kinetics concepts that undergraduate students have difficulty understanding and applying in real life. A further challenge is the overall reaction rate of consecutive reactions. Herein we present a creative teaching practice using the analogy-based approach to exploit the similarities between the…
Descriptors: Logical Thinking, Kinetics, COVID-19, Pandemics
Kritzer, Karen L.; Green, Laurie – American Annals of the Deaf, 2021
While focusing on numeracy is essential in preschool classrooms with deaf and hard of hearing (DHH) children, it is also important that concepts of numeracy be taught in a way that incorporates executive functions, introduces computational thinking, and prepares students for life in a 21st-century world. Technology-enhanced teaching resources…
Descriptors: Programming, Numeracy, Mathematical Concepts, Deafness
France, Paul Emerich – Educational Leadership, 2021
The author presented a math task asking all his 3rd graders to find ways to count seven sets of eight donuts, arranged in grids of two-by-four. He hoped this task would lead students toward fluency in single-digit multiplication, albeit in a manner that was inherently personalized learning, with students choosing their own methods to reach an…
Descriptors: Grade 3, Elementary School Mathematics, Mathematics Instruction, Mathematics Skills
Jason Knight Belnap; Amy Parrott – Mathematics Teacher: Learning and Teaching PK-12, 2020
This article discusses how technology, in conjunction with carefully designed tasks and orchestrated discussions, has the potential to both reveal students' mathematical practices and to provide opportunities to shape those practices. Four specific mathematical practices that tend to be associated with problem-solving situations are examined: (1)…
Descriptors: Educational Technology, Technology Uses in Education, Problem Solving, Models
Kostadinov, Boyan; Thiel, Johann; Singh, Satyanand – PRIMUS, 2019
The goal of this paper is to promote the use of R and Python as high-level, free, open-source programming environments that can be used as a computational and visualization tool for teaching differential equations. Both R and Python also allow for creating reproducible dynamic documents using Markdown, which combines live code, plain text, and…
Descriptors: Mathematics Instruction, College Mathematics, Undergraduate Study, Programming
Souza, P. V. S.; Alves, R. L.; Balthazar, W. F. – Physics Teacher, 2019
Fractals are geometric objects used to describe irregular shapes that have a fractional dimension and commonly appear in nature. Although several proposals for the study of perfect fractals at the basic level are present in the literature, only few proposals for the study of real fractals exist, which does not seem reasonable considering the…
Descriptors: Science Instruction, Geometric Concepts, Teaching Methods, Computation
Ching, Yu-Hui; Hsu, Yu-Chang; Baldwin, Sally – TechTrends: Linking Research and Practice to Improve Learning, 2018
The aim of this article is to provide an overview of the opportunities for developing computational thinking in young learners. It includes a review of empirical studies on the educational technologies used to develop computational thinking in young learners, and analyses and descriptions of a selection of commercially available technologies for…
Descriptors: Educational Technology, Technology Uses in Education, Thinking Skills, Computation

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