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Margaret F. Quinn; Lori A. Caudle; Frances K. Harper – Early Childhood Education Journal, 2025
Computational thinking (CT) is an important twenty-first century skill that begins developing early. Recent interest in incorporating early CT experiences in early childhood education (i.e., preschool) has increased. In fact, the early years mark an important time during which initial competencies are acquired, interest and motivation begins to…
Descriptors: Early Childhood Education, Preschool Children, Computation, STEM Education
Deborah O. Agbanimu; Peter A. Okebukola; Franklin U. Onowugbeda; Esther O. Peter; Adekunle I. Oladejo; Olasunkanmi A. Gbeleyi; Ibukunolu A. Ademola – Journal of Educational Research, 2025
This study investigates the effectiveness of a culturo-techno-contextual approach (CTCA) in teaching flowcharts and algorithms to junior secondary school students. Despite their importance in programming, these concepts are often difficult for students to grasp. The study involved 196 students (average age 12) who were divided into experimental…
Descriptors: Junior High School Students, Flow Charts, Algorithms, Computer Science Education
Shana V. White; Sonia Koshy; Allison Scott – Journal of Research on Technology in Education, 2025
To address racial and gender inequality in K-12 computer science (CS) education, there needs to be a multi-pronged approach. In addition to curricula that are culturally responsive and sustaining inclusive, K-12 CS teachers need to be equipped to implement the curriculum, pedagogy, and instruction to mitigate the racial and gender gaps in…
Descriptors: Computer Science Education, Culturally Relevant Education, Elementary Secondary Education, Faculty Development
Christopher Perdriau; Meron Solomon; Amy Ko – ACM Transactions on Computing Education, 2024
Introduction: Computer science (CS) lacks representation from people who identify as one or more of the following identities: woman, Black, Indigenous, Hispanic, Latina/Latino/Latinx, or disabled. We refer to these groups as historically underrepresented groups (HUGs). Informal learning, like CS summer camps and hackathons, can increase interest…
Descriptors: Informal Education, Computer Science Education, Student Recruitment, Elementary Secondary Education
Daniel L. Hoffman; Peter Leong; Rochelle Pi'ilani Hussey Ka'aloa; Seungoh Paek – Educational Media International, 2024
The Advancing Culturally-Relevant Computing Project is a collaboration between researchers and practitioners in Hawai'i focused on preparing elementary teachers to meaningfully incorporate culturally relevant Computer Science (CS) into their classrooms. This paper introduces a hybrid instructional design framework designed to facilitate the…
Descriptors: Culturally Relevant Education, Computer Science Education, Learning Modules, Program Effectiveness
Rebecca Woodland; Ann M. Leonard; Itza D. Martinez – Teacher Development, 2024
Professional learning communities (PLCs) are a powerful school improvement strategy designed to advance teacher professional development. Protocols are tools for structuring teacher conversations in PLCs. In this article the authors present the results of a qualitative study of teacher perspectives about the value and effects of systematic…
Descriptors: Elementary School Teachers, Urban Schools, Communities of Practice, Faculty Development
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
Hoffman, Daniel L.; Leong, Peter; Ka'aloa, Rochelle Pi'ilani H.; Paek, Seungoh – TechTrends: Linking Research and Practice to Improve Learning, 2022
Culturally-relevant computing has been discussed as a way to promote K-12 Computer Science education and address ongoing challenges related to diversity, equity, and inclusion. What is not well understood about the practice of culturally-relevant computing, however, is how to bring together existing cultural frameworks and Computer Science…
Descriptors: Culturally Relevant Education, Computer Science Education, Teacher Attitudes, Educational Principles
Codding, Diane; Alkhateeb, Bataul; Mouza, Chrystalla; Pollock, Lori – Journal of Technology and Teacher Education, 2021
The field of computer science continues to lack diverse representation from women and racially minoritized individuals. One way to address the discrepancies in representation is through systematic changes in computer science education from a young age. Pedagogical and instructional changes are needed to promote meaningful and equitable learning…
Descriptors: Computer Science Education, Teacher Attitudes, Culturally Relevant Education, Computer Science
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
Steven Worker; Fe Moncloa; Vernelle Mitchell-Hawkins – Journal of Youth Development, 2024
Science, technology, engineering, and mathematics (STEM) fields face persistent disparities in racial, ethnic and gender representation; these disparities are even more pronounced in computer science (CS) fields where women of color comprise 1 percent or less of all employees. These inequalities, and their causes, are complex, systemic, and result…
Descriptors: Computer Science Education, Racial Identification, Self Concept, Social Justice
Naomi Blaushild; Raisa Blazquez; Steven McGee; Randi McGee-Tekula – Computer Science Education, 2025
This study investigated how Chicago Public Schools (CPS) computer science (CS) teachers and instructional coaches navigated remote professional development (PD) during the pandemic. Analyzing multiple sources of qualitative data, we explored how coaches adapted PD to address teachers' unique needs and how teachers experienced remote PD. We found…
Descriptors: Public School Teachers, Computer Science Education, Faculty Development, Distance Education
Aman Yadav; Michael Lachney; Richard Hill; Andrew Lapetina; Anne Drew Hu; Hyein Jee; Madison C. Allen Kuyenga – Journal of Research on Technology in Education, 2025
While computer science is widely recognized as crucial for all U.S. high school students, challenges persist for teachers' pedagogical, content, and culturally responsive-sustaining education. In this paper, we explore how a co-teaching model with an experienced CS instructor shaped three novice CS teachers' knowledge while implementing Advanced…
Descriptors: Computer Science Education, Beginning Teachers, Team Teaching, Experienced Teachers
Awaah, Fred; Okebukola, Peter; Shabani, Juma; Solarin, Daniel; Emmanuel Okyere, Ekwam – Cogent Education, 2022
The Culturo-Techno-Contextual Approach (CTCA) is a teaching method based on culture, technology, and context to ease difficulties in students' understanding of concepts. Python Programming as a concept in computer studies is difficult for students to understand at the secondary school level. This study investigates the efficacy of the CTCA in…
Descriptors: Teaching Methods, Computer Science Education, Programming Languages, Secondary School Students
Jessica Gale; Meltem Alemdar; Katherine Boice; Diley Hernández; Sunni Newton; Douglas Edwards; Marion Usselman – Journal for STEM Education Research, 2022
This study explores student agency in the context of a culturally authentic computer science (CS) curriculum implemented in an introductory CS course in two high schools. Drawing on focus group and interview data, the study utilizes qualitative research methods to examine how students exercise critical agency as they engage in the course and how…
Descriptors: Personal Autonomy, Computer Science Education, Self Concept, Student Projects