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Oscar Karnalim; Hapnes Toba; Meliana Christianti Johan – Education and Information Technologies, 2024
Artificial Intelligence (AI) can foster education but can also be misused to breach academic integrity. Large language models like ChatGPT are able to generate solutions for individual assessments that are expected to be completed independently. There are a number of automated detectors for AI assisted work. However, most of them are not dedicated…
Descriptors: Artificial Intelligence, Academic Achievement, Integrity, Introductory Courses
Rosamaria Crisci; Umberto Dello Iacono; Eva Ferrara Dentice – International Journal for Technology in Mathematics Education, 2023
In this paper, we describe an educational activity involving the use of a digital artifact, implemented in a visual programming environment, for mediating the learning of axial symmetry in primary school through algorithmics and computer programming. The educational activity was designed with the aim of bringing out increasingly…
Descriptors: Programming, Algorithms, Elementary Education, Technology Uses in Education
Michael Borcherds; Florian Derflinger; Zoltán Kovács; Ben North – International Journal of Mathematical Education in Science and Technology, 2025
We introduce the free web-app PyGgb -- the combination of the well-known programming language Python and the dynamic mathematics system GeoGebra. Motivated by the desire to provide an introduction to Python coding in the familiar context of mathematics and geometry, PyGgb allows GeoGebra constructions to be created using Python code. We outline…
Descriptors: Programming, Mathematics Education, Coding, Geometry
Kahn, Ken; Winters, Niall – British Journal of Educational Technology, 2021
Constructionism, long before it had a name, was intimately tied to the field of Artificial Intelligence. Soon after the birth of Logo at BBN, Seymour Papert set up the Logo Group as part of the MIT AI Lab. Logo was based upon Lisp, the first prominent AI programming language. Many early Logo activities involved natural language processing,…
Descriptors: Artificial Intelligence, Man Machine Systems, Programming Languages, Programming
Harnejan K. Atwal; Kenjiro W. Quides – Journal of Microbiology & Biology Education, 2024
Many 4-year public institutions face significant pedagogical challenges due to the high ratio of students to teaching team members. To address the issue, we developed a workflow using the programming language R as a method to rapidly grade multiple-choice questions, adjust for errors, and grade answer-dependent style multiple-choice questions,…
Descriptors: Programming Languages, Public Colleges, Grading, Holistic Evaluation
Babak Mahjour; Andrew McGrath; Andrew Outlaw; Ruheng Zhao; Charles Zhang; Tim Cernak – Journal of Chemical Education, 2023
Data science is becoming a mainstay in research. Despite this, very few STEM graduates matriculate with basic formal training in programming. The current lesson plan was developed to introduce undergraduates studying chemistry or biology to chemoinformatics and data science in medicinal chemistry. The objective of this lesson plan is to introduce…
Descriptors: Undergraduate Students, Chemistry, Biology, Information Science
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
Mark Sena; Thilini Ariyachandra – Information Systems Education Journal, 2024
The Titanic disaster is a topic that continues to fascinate. As the importance of analytics continues to grow in industry, data literacy skills have become increasingly important in business education. This project allows students to use the passenger data from the Titanic to build their data literacy skills using an engaging, experiential topic.…
Descriptors: Literacy, Teaching Methods, Experiential Learning, Business Education
Andrew Pilsch – Learning, Media and Technology, 2024
This article considers what 'minimal' might mean in the context of using minimal computing tools in the humanities classroom. Specifically, it recounts experiences teaching students to make websites using Jekyll, a popular minimal website generation tool, using different understandings of 'minimal.' In one, students were encouraged to use a Web…
Descriptors: Educational Technology, Technology Uses in Education, Humanities Instruction, Web Sites
Cronquist, Björn; Fridberg, Marie; Redfors, Andreas – Teaching Science, 2022
Coping with a virtual and abstract reality has become part of everyday life. Therefore, perceptions of what will constitute everyday life experiences for future generations are next to impossible to predict. One way of preparing young children for such a future is the implementation of teaching towards digital competence in curricula around the…
Descriptors: Robotics, Young Children, Technology Uses in Education, Digital Literacy
Kim, Brian; Henke, Graham – Journal of Statistics and Data Science Education, 2021
One of the biggest hurdles of teaching data science and programming techniques to beginners is simply getting started with the technology. With multiple versions of the same coding language available (e.g., Python 2 and Python 3), various additional libraries and packages to install, as well as integrated development environments to navigate, the…
Descriptors: Computer Software, Data Analysis, Programming Languages, Computer Science Education
Hebda, Maryann R. – Gifted Child Today, 2023
As technologically gifted students apply their abilities to computer science, they naturally flow through the talent development stages of potential, competency, and expertise. Processes that have always been important for gifted students to learn as they develop potential are embedded in learning code, which engages the beginning programmer in…
Descriptors: Talent Development, Technology Uses in Education, Technological Literacy, Coding
Miao, Dezhuang; Dong, Yu; Lu, Xuesong – International Educational Data Mining Society, 2020
In colleges, programming is increasingly becoming a general education course of almost all STEM majors as well as some art majors, resulting in an emerging demand for scalable programming education. To support scalable education, teaching activities such as grading and feedback have to be automated. Recently, online judge systems have been…
Descriptors: Programming, Prediction, Error Patterns, Models
Jones, Oliver A. H.; Stevenson, Paul G.; Hameka, Simone C.; Osborne, Dale A.; Taylor, Patrick D.; Spencer, Michelle J. S. – Journal of Chemical Education, 2021
The use of three-dimensional printing in chemistry education has expanded greatly in the past 10 years. The technique has been used to demonstrate a range of concepts including molecular structure, orbitals, and point groups; to produce chemical equipment such as cuvettes and columns; and even to print out mathematical shapes and functions. Here,…
Descriptors: Science Instruction, Chemistry, Spectroscopy, Printing
Martínez, Alexuan; Nieves, Christian; Rúa, Armando – Physics Teacher, 2021
Many physics projects recently designed for high school teachers use Arduino as the main tool for managing sensors and data acquisition. This is a low-cost integrated development environment programmed with a simplified version of the C++ language. In comparison, the Raspberry Pi 3 platform, which also allows for the design of physics projects,…
Descriptors: Science Instruction, Science Laboratories, Physics, Secondary School Science

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