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Human Aspects of Cyber Security for Computing Higher Education: Current Status and Future Directions
Kaie Maennel; Olaf Maennel – ACM Transactions on Computing Education, 2025
The human aspects of cyber security are fundamental as these are interlinked with processes and technology in building resilience against an evolving and complex threat landscape. It is vital to teach future cyber security specialists sufficient knowledge about human aspects in order to strengthen the defences and defend against malicious actors.…
Descriptors: Computer Security, Computer Science Education, College Curriculum, Teaching Methods
Tang Wee Teo; Sherwin John San Buenaventura Mabulo; Kim Chwee Daniel Tan; Jin Xin Matilda Ho; Xue Xian Thea Tan – Journal of Science Education and Technology, 2025
STEM (science, technology, engineering, mathematics) hackathons have been conducted to offer opportunities for diverse participants to work collaboratively and intensely on tasks within a short period. However, most literature about hackathons does not offer theoretical discussions on the affordances of such learning contexts for school students.…
Descriptors: Epistemology, STEM Education, Computer Security, Programming
Mark Monnin; Lori L. Sussman – Journal of Cybersecurity Education, Research and Practice, 2024
Data transfer between isolated clusters is imperative for cybersecurity education, research, and testing. Such techniques facilitate hands-on cybersecurity learning in isolated clusters, allow cybersecurity students to practice with various hacking tools, and develop professional cybersecurity technical skills. Educators often use these remote…
Descriptors: Computer Science Education, Computer Security, Computer Software, Data
Daniel T. Hickey; Ronald J. Kantor – Journal of Cybersecurity Education, Research and Practice, 2024
The cybersecurity threat landscape evolves quickly, continually, and consequentially. This means that the "transfer" of cybersecurity learning is crucial. We compared how different recognized "cognitive" transfer theories might help explain and synergize three aspects of cybersecurity education. These include "teaching and…
Descriptors: Transfer of Training, Computer Science Education, Computer Security, Metacognition
Crowdsourcing Cyber Experts to Determine Relevant Topics during Cyber Curriculum Development Efforts
Ngac, Brian K.; Boicu, Mihai – Innovations in Education and Teaching International, 2023
The cyber security environment, its threats, and its defence strategies are constantly changing. Educational programmes and their curriculum are known to be slow changing and at times out-of-date, resulting in content that may not be as relevant to their students and the industry. This research paper will 1 -- present an overview of the curriculum…
Descriptors: Expertise, Curriculum Development, Computer Security, Computer Science Education
OConnor, T. J.; Brown, Dane; Jackson, Jasmine; Payne, Bryson; Schmeelk, Suzanna – Journal of Cybersecurity Education, Research and Practice, 2023
To support the workforce gap of skilled cybersecurity professionals, gamified pedagogical approaches for teaching cybersecurity have exponentially grown over the last two decades. During this same period, e-sports developed into a multi-billion dollar industry and became a staple on college campuses. In this work, we explore the opportunity to…
Descriptors: Computer Security, Computer Science Education, Gamification, Competition
Gina Childers; Weverton Ataide Pinheiro; Oluwatosin Daramola; C. Lindsay Linsky; Bryson Payne; Jack Byers; Daniel Baker – Journal of Cybersecurity Education, Research and Practice, 2025
Because K-12 teachers have access to private educational data, they are increasingly at risk of being affected by cybersecurity threats. Examining how teachers conceptualize cybersecurity is vital so that cybersecurity training can be tailored to teachers' understanding of cybersecurity. This study examined K-12 teachers' (n = 255) personalized…
Descriptors: Teacher Attitudes, Knowledge Level, Definitions, Computer Security
David P. Bunde; John F. Dooley – PRIMUS, 2024
We present a detailed description of a Cryptography and Computer Security course that has been offered at Knox College for the last 15 years. While the course is roughly divided into two sections, Cryptology and Computer Security, our emphasis here is on the Cryptology section. The course puts the cryptologic material into its historical context…
Descriptors: Technology, Coding, Computer Security, Mathematics Education
Samson O. Adeoye; Heather Lindberg; B. Bagby; Anne M. Brown; Feras A. Batarseh; Eric K. Kaufman – NACTA Journal, 2023
Cyberbiosecurity is an emerging field at the convergence of life sciences and the digital world. As technological advances improve operational processes and expose them to vulnerabilities in agriculture and life sciences, cyberbiosecurity has become increasingly important for addressing contemporary concerns. Unfortunately, at this time,…
Descriptors: Computer Security, Biology, Biological Sciences, Labor Force Development
Agarsha Manoharan; Abiniah Sriskantharajah; H. M. K. K. M. B. Herath; L. G. P. K. Guruge; S. L. P. Yasakethu – Education and Information Technologies, 2025
MetaHuman technology's development and the Metaverse's growth have transformed virtual interactions and brought up new cybersecurity risks. This research provides cybersecurity awareness education tools for phishing attacks in the metaverse realm that use MetaHuman avatars, which turned out to be more dishonest than conventional phishing…
Descriptors: Information Security, Computer Security, Computer Simulation, Risk
Jeff Hanson; Blair Taylor; Siddharth Kaza – Information Systems Education Journal, 2025
Cybersecurity content is typically taught and assessed using Bloom's Taxonomy to ensure that students acquire foundational and higher-order knowledge. In this study we show that when students are given the objectives written in the form of a competency-based statements, students have a more clearly defined outcome and are be able to exhibit their…
Descriptors: College Students, Universities, Competency Based Education, Educational Objectives
Maria Lamond; Suzanne Prior; Karen Renaud; Lara A. Wood – Discover Education, 2025
Digital technology is a part of children's everyday lives, yet very little known about teachers' perceptions and practice of cybersecurity education in primary education. This study aimed to shed light on this, focusing primarily on children's password practices. A questionnaire was distributed to primary school teachers across Scotland, with 114…
Descriptors: Elementary School Teachers, Teacher Attitudes, Computer Security, Information Security
Jin Wei-Kocsis; Moein Sabounchi; Gihan J. Mendis; Praveen Fernando; Baijian Yang; Tonglin Zhang – IEEE Transactions on Education, 2024
Contribution: A novel proactive and collaborative learning paradigm was proposed to engage learners with different backgrounds and enable effective retention and transfer of the multidisciplinary artificial intelligence (AI)-cybersecurity knowledge. Specifically, the proposed learning paradigm contains: 1) an immersive learning environment to…
Descriptors: Computer Security, Artificial Intelligence, Interdisciplinary Approach, Models
Loïs Vanhée; Karin Danielsson; Lena Enqvist; Kalle Grill; Melania Borit – European Journal of Education, 2024
Whereas hackathons are widespread within and outside academia and have been argued to be a valid pedagogical method for teaching interdisciplinarity, no detailed frameworks or methods are available for conceptualizing and organizing educational hackathons, i.e., hackathons dedicated to best achieving pedagogic objectives. This paper is dedicated…
Descriptors: Interdisciplinary Approach, Learning Activities, Programming, Computer Security
Kevin Hilliard; Xiaohong Yuan; Kelvin Bryant; Jinsheng Xu; Jinghua Zhang – Journal of Cybersecurity Education, Research and Practice, 2024
Gamification has proven to be effective in engaging and encouraging people to work towards and achieve goals. Many students struggle to focus on schoolwork, due to a lack of interest, lack of understanding, or other factors unique to the student. Applying gamification elements to education can help engage these students in learning their course…
Descriptors: Gamification, Mastery Learning, Computer Security, Computer Networks

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