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Aidan Doyle; Pragnya Sridhar; Arav Agarwal; Jaromir Savelka; Majd Sakr – Journal of Computer Assisted Learning, 2025
Background: In computing education, educators are constantly faced with the challenge of developing new curricula, including learning objectives (LOs), while ensuring that existing courses remain relevant. Large language models (LLMs) were shown to successfully generate a wide spectrum of natural language artefacts in computing education.…
Descriptors: Computer Science Education, Artificial Intelligence, Learning Objectives, Curriculum Development
Haduong, Paulina – ProQuest LLC, 2023
In this dissertation, I explore how researchers, teachers, and students can learn together across various contexts in K-12 computing education. These explorations are situated within the development and implementation of the Getting Unstuck curriculum, a set of educative curriculum materials (Davis et al., 2017) designed for upper elementary…
Descriptors: Elementary Secondary Education, Computer Science Education, Researchers, Cooperation
Akcaoglu, Mete; Dogan, Selcuk; Hodges, Charles B. – TechTrends: Linking Research and Practice to Improve Learning, 2022
In this paper, we describe the design, development, and implementation of a curriculum based on teaching computer science using an industry-standard game-design software: Unity 3D. We discuss the theoretical underpinnings of our instructional design process and steps we have taken to introduce complexity and maintain student motivation. We discuss…
Descriptors: Curriculum Design, Curriculum Development, Curriculum Implementation, Coding
Keunjae Kim; Kyungbin Kwon – Journal of Educational Computing Research, 2024
This study presents an inclusive K-12 AI curriculum for elementary schools, focusing on six design principles to address gender disparities. The curriculum, designed by the researchers and an elementary teacher, uses tangible tools, and emphasizes collaboration in solving daily problems. The MANOVA results revealed initial gender differences in AI…
Descriptors: Artificial Intelligence, Curriculum Development, Inclusion, Elementary Secondary Education
Pedagogical Framework for Cultivating Children's Data Agency and Creative Abilities in the Age of AI
Juho Kahila; Henriikka Vartiainen; Matti Tedre; Eetu Arkko; Anssi Lin; Nicolas Pope; Ilkka Jormanainen; Teemu Valtonen – Informatics in Education, 2024
The integration of artificial intelligence (AI) topics into K-12 school curricula is a relatively new but crucial challenge faced by education systems worldwide. Attempts to address this challenge are hindered by a serious lack of curriculum materials and tools to aid teachers in teaching AI. This article introduces the theoretical foundations and…
Descriptors: Personal Autonomy, Data, Children, Creativity
Payne, Brian K.; He, Wu; Wang, Cong; Wittkower, D. E.; Wu, Hongyi – Journal of Information Systems Education, 2021
This paper describes an interdisciplinary effort involving faculty from five different disciplines who came together to develop an interdisciplinary, open, general education cybersecurity course. The course, Cybersecurity, Technology, and Society, brings together ideas from interdisciplinary studies, information technology, engineering, business,…
Descriptors: Computer Security, Interdisciplinary Approach, Curriculum Development, General Education
West, Jason – Computer Science Education, 2018
Emerging careers in technology-focused fields such as data science coupled with necessary graduate outcomes mandate the need for a truly interdisciplinary pedagogical approach. However, the rapid pace of curriculum development in this field of inquiry has meant that curricula across universities has largely evolved in line with the internal…
Descriptors: Interdisciplinary Approach, Curriculum Development, Computer Science Education, Universities
Domeika, Lee; Miller, Lauren; O'Connor, Anna – Jobs for the Future, 2022
The Work-Based Courses Blueprint is a foundational guide for all Tennessee SySTEM school sites engaged in designing and developing work-based courses for 11th and 12th grade students. Specifically, this blueprint covers pertinent work-based courses topics such as building a work-based course team, course design, and course delivery. The blueprint…
Descriptors: High School Students, Grade 11, Grade 12, STEM Education
Fluck, Andrew; Webb, Mary; Cox, Margaret; Angeli, Charoula; Malyn-Smith, Joyce; Voogt, Joke; Zagami, Jason – Educational Technology & Society, 2016
Computer science has been a discipline for some years, and its position in the school curriculum has been contested differently in several countries. This paper looks at its role in three countries to illustrate these differences. A reconsideration of computer science as a separate subject both in primary and secondary education is suggested. At…
Descriptors: Computer Science, Curriculum Development, Elementary Education, Secondary Education
Veletsianos, George; Beth, Bradley; Lin, Calvin; Russell, Gregory – Journal of Educational Computing Research, 2016
"Thriving in Our Digital World" is a technology-enhanced dual enrollment course introducing high school students to computer science through project- and problem-based learning. This article describes the evolution of the course and five lessons learned during the design, development, implementation, and iteration of the course from its…
Descriptors: Computer Science, Computer Science Education, High School Students, Instructional Design
Liu, Feng; Stapleton, Colleen; Stephen, Jacqueline – Association Supporting Computer Users in Education, 2017
The Informatics program at Mercer University is offered at four regional academic centers located throughout the state of Georgia. We serve non-traditional students who have primary responsibilities such as caring for family, working, and participating in their communities. We aim to offer availability and access to all required courses, access to…
Descriptors: Teaching Models, Pilot Projects, Nontraditional Students, Information Science
Qian, Yizhou; Hambrusch, Susanne; Yadav, Aman; Gretter, Sarah – Journal of Research on Technology in Education, 2018
The new Advanced Placement (AP) Computer Science (CS) Principles course increases the need for quality CS teachers and thus the need for professional development (PD). This article presents the results of a 2-year study investigating how teachers teaching the AP CS Principles course for the first time used online PD material. Our results showed…
Descriptors: Computer Science Education, Faculty Development, Online Courses, Electronic Learning
Sauls, Jeff; Gudigantala, Naveen – Journal of Information Systems Education, 2013
Managing IT security and assurance is a top priority for organizations. Aware of the costs associated with a security or privacy breach, organizations are constantly vigilant about protecting their data and IT systems. In addition, organizations are investing heavily in IT resources to keep up with the challenges of managing their IT security and…
Descriptors: Computer Security, College Graduates, Labor Force, Computer Science Education
Robinson, Petra A., Ed.; Allen-Handy, Ayana, Ed.; Bryant, Amber, Ed.; Lewis, Chance W., Ed. – IAP - Information Age Publishing, Inc., 2019
In 2014, The Urban Education Collaborative at the University of North Carolina at Charlotte hosted its first biennial International Conference on Urban Education (ICUE) in Montego Bay, Jamaica. In 2016, the second hosting of the conference took place in San Juan, Puerto Rico. Additionally, in 2018, the third hosting of the conference took place in…
Descriptors: Urban Education, Curriculum Design, Curriculum Development, 21st Century Skills
Dikli, Semire, Ed.; Etheridge, Brian, Ed.; Rawls, Richard, Ed. – IGI Global, 2018
In an effort to enhance the quality of education, universities and colleges are developing programs that help faculty and staff internationalize curriculum. These programs will purposefully develop the intercultural perspectives of students. "Curriculum Internationalization and the Future of Education" is a critical scholarly resource…
Descriptors: Global Approach, Curriculum Development, Educational Trends, Active Learning