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Novak, Elena; Khan, Javed I. – TechTrends: Linking Research and Practice to Improve Learning, 2022
Implementing computer science education in an elementary classroom is at the forefront of computing education. Nevertheless, the literature on K-12 Computer Science (CS) education offers limited guidance for developing elementary CS curricula that lead to multiple career paths through project-based learning. Particularly, more research is needed…
Descriptors: Computer Science Education, Elementary Education, Culturally Relevant Education, Student Diversity
Casey, Cindy Lou – ProQuest LLC, 2022
The objective of this study is to survey existing and emerging post-secondary computing and technology programs and employment trends in Pennsylvania to determine if college graduates are being prepared for careers in artificial intelligence. Due to low enrollment, colleges and universities are continually revising or restructuring their existing…
Descriptors: Artificial Intelligence, Postsecondary Education, Program Evaluation, Computer Science Education
Takada, Shingo; Cuadros-Vargas, Ernesto; Impagliazzo, John; Gordon, Steven; Marshall, Linda; Topi, Heikki; van der Veer, Gerrit; Waguespack, Leslie – Education and Information Technologies, 2020
Various computing subdisciplines, such as computer science and software engineering, each have their own curricular guidelines. They can be very difficult to understand and compare for people such as prospective students, industry personnel, and even faculty members. This is compounded by a lack of information surrounding undergraduate computing…
Descriptors: Computer Science Education, Curriculum Development, Academic Standards, Visualization
Hamlen, Karla R.; Chu, Pong P. – IEEE Transactions on Education, 2023
Background: Engineering curricula often consist of separate courses that do not form a cohesive learning experience. Researchers revised an undergraduate computer engineering curriculum at an urban university, seeking to improve motivation and achievement in an important population that is traditionally underrepresented in STEM fields.…
Descriptors: Spiral Curriculum, Student Projects, Class Activities, Student Motivation
Karen Woo; Garry Falloon – Computer Science Education, 2025
Background and context: Coding and computational thinking are often taught through integrated curricula, despite a paucity of classroom-based research on their effectiveness. Objective: To investigate evidence of learning resulting from cross-curricular coding tasks in middle-school classrooms, and the school environment factors that impact upon…
Descriptors: Coding, Computer Science Education, Curriculum Development, Thinking Skills
Rita Garcia; Michelle Craig – ACM Transactions on Computing Education, 2025
Introduction: Computer Science Education does not have a universally defined set of concepts consistently covered in all introductory courses (CS1). One approach to understanding the concepts covered in CS1 is to ask educators. In 2004, Nell Dale did just this. She also collected their perceptions on challenging topics to teach. Dale mused how the…
Descriptors: Replication (Evaluation), Teaching Methods, Computer Science Education, Introductory Courses
Ayaan M. Kazerouni; Melissa Lee; Aleata Hubbard Cheuoua; Aakash Gautam; Sahar Hooshmand; Paul Salvador Inventado; Eun-Young Kang; Jane Lehr; Yu Sun; Kevin A. Wortman; Ilmi Yoon; Zoë Wood – ACM Transactions on Computing Education, 2025
Background and Context. Computing is considered a fundamental skill for civic engagement, self-expression, and employment opportunity. Despite this, there exist significant equity gaps in post-secondary computing enrollment and retention. Specifically, in the California State University (CSU) system, which serves close to half a million…
Descriptors: Computer Science Education, Social Responsibility, Introductory Courses, Undergraduate Students
Humayun Zafar; Carole L. Hollingsworth; Tridib Bandyopadhyay; Adriane B. Randolph – Journal of Cybersecurity Education, Research and Practice, 2024
This research article examines conversations happening between cybersecurity academics and industry leaders with a goal to improve the development of cybersecurity professionals. We specifically focus on efforts in the Southeast region of the United States. The discussion features insights from a panel consisting of an academic cybersecurity…
Descriptors: Computer Security, Career Pathways, Computer Science Education, Industry
Sharin Rawhiya Jacob; Mark Warschauer – CATESOL Journal, 2024
Over the last decade, there has been an explosion of national interest in computer science (CS) education. In response to this, several organizations and initiatives have emerged in recent years to expand the CS pipeline. However, within these broad and laudable efforts, one important area has been largely overlooked--the instruction of CS to…
Descriptors: Elementary School Students, Artificial Intelligence, Computer Science Education, Technology Uses in Education
Baucks, Frederik; Wiskott, Laurenz – International Educational Data Mining Society, 2022
Curriculum research is an important tool for understanding complex processes within a degree program. In particular, stochastic graphical models and simulations on related curriculum graphs have been used to make predictions about dropout rates, grades, and degree completion time. There exists, however, little research on changes in the curriculum…
Descriptors: Curriculum Development, Educational Change, Educational Policy, Prerequisites
Shapna Sultana Pal – ProQuest LLC, 2022
Educators of graduate cybersecurity education lack decision methodologies to aid in selecting and prioritizing cybersecurity criteria and tools to provide hands-on learning in cyber courses. Educators are challenged with keeping the cybersecurity tools in the education curriculum relevant and updated. The risk of not doing so, is possibly…
Descriptors: Computer Security, Information Security, Computer Science Education, Decision Making
Carol Tate – ProQuest LLC, 2022
The "Computer Science for All" (CS for All) movement launched in 2016, following a decade of increasing support for broadening access to computer science education in K-12. In the years since, it has grown into a broad-based effort to equip all students with the skills they need to thrive in a digital society. CS for All follows a long…
Descriptors: Computer Science, Elementary Secondary Education, Access to Education, Curriculum Development
Michael Lachney; Briana Green; Aman Yadav; Matt Drazin; Madison C. Allen Kuyenga; Andre Harris – Educational Technology Research and Development, 2024
In the United States, culturally responsive computing is a framework that aims to support broadening the participation of racially and linguistically diverse children in computing and technology education through bottom-up interventions that are community-oriented, technology rich, and culturally dynamic. Despite the important role that youth…
Descriptors: Culturally Relevant Education, Computer Uses in Education, Athletics, Computer Science Education
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
Anne-Kathrin Peters; Rafael Capilla; Vlad Constantin Coroama; Rogardt Heldal; Patricia Lago; Ola Leifler; Ana Moreira; João Paulo Fernandes; Birgit Penzenstadler; Jari Porras; Colin C. Venters – ACM Transactions on Computing Education, 2024
Research shows that the global society as organized today, with our current technological and economic system, is impossible to sustain. We are living in an era in which human activities in highly industrialized countries are responsible for overshooting several planetary boundaries, with poorer communities contributing the least to the problems…
Descriptors: Computer Science Education, Sustainability, Educational Research, Educational Practices

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