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Jose Antonio Lecea Yanguas – ProQuest LLC, 2022
This dissertation presents the first Systemic Functional Linguistics-based analysis of the teaching/learning of computational thinking through computer programming and comprehensive analysis of discourse of a whole computer programming course at any educational level. The current educational research raises questions about the nature of authentic…
Descriptors: Middle School Students, Logical Thinking, Thinking Skills, Communication (Thought Transfer)
Kwon, Kyungbin; Cheon, Jongpil – International Journal of Computer Science Education in Schools, 2019
Although teachers need to assess computational thinking (CT) for computer science education in K-12, it is not easy for them to evaluate students' programs based on the perspective. The purpose of this study was to investigate students' CT skills reflected in their Scratch programs. The context of the study was a middle school coding club where…
Descriptors: Computer Science Education, Computation, Thinking Skills, Coding
Qing Li; Mahnaz Moallem; Jeremy Boettinger; Qijie Cai; Michael Levi – Educational Technology Research and Development, 2025
Aiming to promote equity in computing, this study proposes an educational model that offers an alternative approach to inspire K-12 students to become interested in CS and develop their computational thinking (CT) skills. It also examines the experience of marginalized students during the COVID pandemic in a learning environment grounded in the…
Descriptors: Equal Education, Student Experience, COVID-19, Pandemics
Scharber, Cassandra; Peterson, Lana; Chang, Yu-Hui; Barksdale, Sarah; Sivaraj, Ramya – Pedagogies: An International Journal, 2021
We recommend the conceptualization of computing as a critical literacy, and ground this conceptualization in considerations of historical and current realities in computing. The frameworks of connected learning and computational participation are recommended as guides for "doing" critical computing literacy. We present the findings from…
Descriptors: Critical Theory, Computer Science Education, Elementary Secondary Education, After School Programs
Leonard, Jacqueline; Djonko-Moore, Cara M.; Ellington, Roni; Santoro, Anthony; Miller, Mikhail – AERA Online Paper Repository, 2020
This paper highlights the year-one (pilot) findings of a three-year project on emerging technologies where students engaged in computer modeling, 3D printing, flight simulation, and drones during summer camps and afterschool programs in rural and urban districts. The pilot was iterative as different interventions were field-tested in specific…
Descriptors: Elementary School Students, Middle School Students, Computation, Thinking Skills
Mouza, Chrystalla; Pan, Yi-Cheng; Yang, Hui; Pollock, Lori – Journal of Educational Computing Research, 2020
In this work, we examine whether repeated participation in an after-school computing program influenced student learning of computational thinking concepts, practices, and perspectives. We also examine gender differences in learning outcomes. The program was developed through a school-university partnership. Data were collected from 138 students…
Descriptors: After School Programs, Thinking Skills, Computer Science Education, Repetition
Sung, Woonhee; Black, John B. – Journal of Research on Technology in Education, 2021
This study examined what factors might have a positive impact on students' learning outcomes in mathematical understanding and computational thinking skills. Specifically, whether the proposed instructional design combining computational perspectives and an embodied approach in mathematics learning improves (a) mathematics learning, (b)…
Descriptors: Instructional Design, Mathematics Instruction, Teaching Methods, Outcomes of Education
Newton, Kristie J.; Leonard, Jacqueline; Buss, Alan; Wright, Christopher G.; Barnes-Johnson, Joy – Journal of Research on Technology in Education, 2020
This mixed methods study examined how engagement in robotics and game design influenced students' self-efficacy, STEM attitudes, and computational thinking (CT) skills. Predominantly African-American students engaged in engineering and computer science tasks during informal learning environments. Results revealed students' self-efficacy scores on…
Descriptors: Robotics, STEM Education, Self Efficacy, Student Attitudes