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Atanu Bhattacharya; Kalyan Dasgupta; Binoy Paine – Journal of Chemical Education, 2024
In this paper, we present a computational chemistry project that demonstrates the quantum dynamics of a free particle, using both classical and quantum computing algorithms. This project can be used in a computational quantum chemistry course in which the instructor introduces quantum computing. Students write their own programs to simulate the…
Descriptors: Chemistry, Science Education, Quantum Mechanics, Computer Science
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Dragan Zlatkovic´; Miljana Ðordevic´ Zlatkovic´; Niko Radulovic´ – Journal of Chemical Education, 2023
Herein, we present a program implemented in Python that utilizes a simple complete-search algorithm to determine the geometry of a lanthanide-substrate (LS) complex. The program serves as a practical project in a programming course for chemistry students, specifically aimed at illustrating fundamental concepts such as decision-making, repetition,…
Descriptors: Programming, Problem Solving, Chemistry, Science Education
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Peel, Amanda; Sadler, Troy D.; Friedrichsen, Patricia – Journal of Science Education and Technology, 2022
Computing has become essential in modern-day problem-solving, making computational literacy necessary for practicing scientists and engineers. However, K-12 science education has not reflected this computational shift. Integrating computational thinking (CT) into core science courses is an avenue that can build computational literacies in all…
Descriptors: Computation, Thinking Skills, Problem Solving, Science Education
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Lee, Okhee; Campbell, Todd – Journal of Science Teacher Education, 2020
The COVID-19 pandemic is a historic global event that has extended to all parts of society and shaken the core of what we know and how we live. During this pandemic, the work of STEM professionals has taken center stage. Through our close observations of how the events of the pandemic have been unfolding across the globe, we propose an…
Descriptors: COVID-19, Pandemics, Science Teachers, Science Education
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Love, Tyler S.; Duffy, Brian C.; Loesing, Mary L.; Roy, Kenneth R.; West, Sandra S. – Technology and Engineering Teacher, 2020
The purpose of this article is to examine the level of emphasis placed on safety concepts and guidelines in "Standards for Technological and Engineering Literacy" ("STEL") (ITEEA, 2020) in comparison to other current science, technology, engineering, and math (STEM) content area standards and frameworks. The authors who…
Descriptors: STEM Education, Occupational Safety and Health, Content Analysis, Safety Education
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Renu, N.; Sunil, K. – Higher Education for the Future, 2023
Integration of computational data science (CDS) into the university curriculum offers several advantages for students, faculty and the institution. This article discusses the benefits to students of introducing CDS into the university curriculum with a focus on developing skills in cheminformatics, data analysis, structure--activity relationships,…
Descriptors: Data Science, Higher Education, College Students, Skill Development
Zinth, Jennifer – Education Commission of the States, 2016
Allowing high school students to fulfill a math or science high school graduation requirement via a computer science credit may encourage more student to pursue computer science coursework. This Education Trends report is an update to the original report released in April 2015 and explores state policies that allow or require districts to apply…
Descriptors: High School Graduates, Graduation Requirements, Computer Science Education, Educational Trends
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Mesiti, Leigh Ann; Parkes, Alana; Paneto, Sunewan C.; Cahill, Clara – Journal of Museum Education, 2019
"Building Computational Thinkers," a three-year research study, explored how educators and designers can most effectively support the development of computational thinking capacity, and how these learning experiences could be customized to meet the needs of different learners. This research study focused on three specific exhibit design…
Descriptors: Capacity Building, Thinking Skills, Middle School Students, High School Students
Reiss, Susan; Garrigan, Kathleen; Mixon, Bobbie; Hunter, Dana; Quade, Brittany; Zaninno, Denise – National Science Foundation, 2017
The National Science Foundation's (NSF) decades-long investment in science and engineering (S&E) research helped build the backbone of the U.S. scientific enterprise and transformed universities and colleges into centers of scientific innovation, creativity, knowledge and discovery. It also brought about the benefits of scientific…
Descriptors: Science Education, Engineering Education, Educational Innovation, Scientific Research
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Gonzalez, Avelino J.; Hollister, James R.; DeMara, Ronald F.; Leigh, Jason; Lanman, Brandan; Lee, Sang-Yoon; Parker, Shane; Walls, Christopher; Parker, Jeanne; Wong, Josiah; Barham, Clayton; Wilder, Bryan – International Journal of Artificial Intelligence in Education, 2017
This paper describes an interactive museum exhibit featuring an avatar of Alan Turing that informs museum visitors about artificial intelligence and Turing's seminal Turing Test for machine intelligence. The objective of the exhibit is to engage and motivate visiting children in the hope of sparking an interest in them about computer science and…
Descriptors: Artificial Intelligence, Informal Education, Science Education, Interaction
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Fitzgerald, Brian K.; Barkanic, Steve; Cárdenas-Navia, Isabel; Chen, Janet; Elzey, Karen; Hughes, Debbie; Troyan, Danielle – Industry and Higher Education, 2016
BHEF has achieved particular success in operationalizing its National Higher Education and Workforce Initiative (HEWI) through regional initiatives in data science and analytics (DSA). Leveraging its membership of corporate CEOs, university presidents and government agency leaders, BHEF seeded new undergraduate pathways in DSA at Case Western…
Descriptors: Higher Education, Case Studies, Labor Force, Program Implementation
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Smith, Carmen Petrick; King, Barbara; González, Diana – Teaching Children Mathematics, 2015
There is a growing need for STEAM-based (Science, Technology, Engineering, Arts, and Mathematics) knowledge and skills across a wide range of professions (Brazell 2013). Yet students often fail to see the usefulness of mathematics beyond the classroom (Kloosterman, Raymond, and Emenaker 1996), and they do not regularly make connections between…
Descriptors: STEM Education, Art Education, Mathematics, Mathematical Concepts
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Vaquero, L. M. – IEEE Transactions on Education, 2011
The cloud has become a widely used term in academia and the industry. Education has not remained unaware of this trend, and several educational solutions based on cloud technologies are already in place, especially for software as a service cloud. However, an evaluation of the educational potential of infrastructure and platform clouds has not…
Descriptors: Foreign Countries, Advanced Courses, Course Objectives, Computers
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Armoni, Michal – Journal of Computers in Mathematics and Science Teaching, 2013
Abstraction is a key concept in CS, one of the most fundamental ideas underlying CS and its practice. However, teaching this soft concept to novices is a very difficult task, as discussed by many CSE experts. This paper discusses this issue, and suggests a general framework for teaching abstraction in CS to novices, a framework that would fit into…
Descriptors: Introductory Courses, Computer Science, Novices, Expertise
Craig, Cecilia Dosh-Bluhm – ProQuest LLC, 2014
The fields of engineering, computer science, and physics have a paucity of women despite decades of intervention by universities and organizations. Women's graduation rates in these fields continue to stagnate, posing a critical problem for society. This qualitative grounded theory (GT) study sought to understand how robotics programs influenced…
Descriptors: Robotics, Science Education, Females, Career Choice
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