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Lorien W. Cafarella – ProQuest LLC, 2023
Many middle school students come to Computer Science (CS) classes without any previous CS instruction or any Computational Thinking (CT) skills that are needed to be successful. To overcome this, many curriculums and programming environments have been used to engage students and to instill a love of CS. Which curriculum should be used to develop…
Descriptors: Middle School Students, Computer Science, Computer Science Education, Program Effectiveness
Anh Duong; Maria Valero; John Oakley; Miloslava Plachkinova – Journal of Information Systems Education, 2025
This teaching tip offers valuable insights into establishing a GenCyber student camp in underserved communities. It provides teaching tips and best practices for designing a curriculum tailored to high school students. The study highlights effective strategies for recruiting a diverse group of participants, addressing the global shortage in the…
Descriptors: Camps, Disadvantaged Youth, High School Students, Program Development
Peer reviewedRebecca Casciano – Grantee Submission, 2025
This study evaluated the implementation and impact of the School of Interactive Arts (SIA), a scalable, in-class instructional model designed to introduce high school students to computer science and video game design through a virtual platform called Ghost School. Conducted in New York City Department of Education public high schools, the study…
Descriptors: Program Implementation, Program Evaluation, Program Effectiveness, High School Students
Olha V. Barna; Olena H. Kuzminska; Serhiy O. Semerikov – Discover Education, 2025
This study investigates how integrating STEM content in computer science education enhances the implementation of Universal Design for Learning (UDL) principles and its impact on digital competence development in Ukrainian secondary schools. The digital transformation of education demands innovative pedagogical approaches that accommodate diverse…
Descriptors: STEM Education, Computer Science Education, Access to Education, Technological Literacy
Peer reviewedJessica Brown; Jacqueline DeLisi; Lukas Winfield; Makoto Hanita; Anne Wang – Grantee Submission, 2025
The EIR-funded Work-Based Learning for Computer Science (WBL4CS) grant implemented a three-course, two-year Computer Science (CS) pathway in 20 Rhode Island High Schools. Evaluators from Education Development Center (EDC) employed a cluster randomized controlled trial to study the impact of integrating a Work-Based Learning course into the first…
Descriptors: Work Based Learning, Computer Science Education, High School Students, Career Pathways
Salih Gülen; Ismail Dönmez; Fatma Betül Sengönül; Miyase Aslantas; Turgut Saritas; Ömer Sukenari; Emrah Eke; Semih Uçar – SAGE Open, 2025
STEM education aims to develop 21st-century skills, support economic growth and promote gender equality in STEM fields. It is known that gender stereotypes play a significant role in the formation of STEM identity. The most important factor preventing some high school-level female students from pursuing STEM careers is their lack of participation…
Descriptors: Robotics, Computer Science Education, Programming, High School Students
Deborah J. Holtzman; Kathleen T. Jones; Charles Blankenship – American Institutes for Research, 2025
This report describes the evaluation of Lone Star AP CSP, a program developed by the National Mathematics + Science Initiative and funded by a 2019 Education Innovation and Research grant. The three-year program aimed to increase student access to and success in the Advanced Placement (AP) Computer Science Principles (CSP) course in 37 Texas high…
Descriptors: Advanced Placement Programs, Computer Science Education, High School Students, High School Teachers
Rafael Herrero-Álvarez; Rafael Arnay; Eduardo Segredo; Gara Miranda; Coromoto Leon – IEEE Transactions on Learning Technologies, 2025
RoblockLLy is an educational robotics simulator designed for primary and secondary school students, whose goal is to increase their interest in science, technology, engineering, and mathematics. In the particular case of computer science, it allows developing computational thinking skills. It has been designed with ease of use in mind. This free…
Descriptors: Secondary School Students, STEM Education, Computer Science Education, Robotics
Ni, Lijun; Bausch, Gillian; Benjamin, Rebecca – Computer Science Education, 2023
Background & Context: Many efforts have been dedicated to building computer science (CS) teacher capacity through offering professional development (PD) programs. Previous reviews indicated the need to offer more continual support for teachers. Recent research has shifted its focus to scaling up PD and sustaining teaching capacity by…
Descriptors: Computer Science Education, Elementary School Teachers, Secondary School Teachers, Faculty Development
Kiliç, Servet; Çakiroglu, Ünal – Technology, Knowledge and Learning, 2023
Since teaching robotics in schools is still new for teachers, studies on how to integrate computational thinking concepts in robotics courses are still rare. In this direction, teacher training sessions for teaching robotics should be visited. Accordingly, in this exploratory case study, a professional development program for teachers was…
Descriptors: Program Development, Program Implementation, Program Evaluation, Faculty Development
Dolores D. Lopez; Susan Yonezawa; Seaera Juarez; Ericka Tapia – Journal of Research on Technology in Education, 2025
Multilingual learners, also known as English learners (ELs), are underrepresented in K-12 computer science (CS) courses, where they often struggle. This paper demonstrates how a Computer Science for English Learners (CSforEL) professional development (PD) program supported Advanced Placement CS Principles (APCSP) teachers in attending to both…
Descriptors: Computer Science Education, English Learners, Advanced Placement, Faculty Development
Steven M. Worker; Roshan Nayak; Fe Moncloa – Journal of Extension, 2024
Young people need digital competency and confidence to effectively harness computing power to solve problems and design solutions; a core component is improving young people's computational thinking. Unfortunately, access to computer science education is lacking for all youth, and in particular for youth who live in lower-income households, who…
Descriptors: Youth Clubs, Computer Science Education, Computation, Thinking Skills
Meghan L. McSherry; Becca A. Leininger; Maria L. Johnson; AnnMarie P. Thomas; Susan Outlaw; Douglas C. Orzolek – Journal of Science Education for Students with Disabilities, 2024
The purpose of this research project was to design, deliver, and informally assess the content and methodology of an introductory online course for the educators of Deaf and Hard of Hearing students (N=20) that focused on the block-based coding language, Scratch. Prior work by The Playful Learning Lab examined various STEM resources and their…
Descriptors: Deafness, Hard of Hearing, Online Courses, Summer Programs
I Gusti Putu Asto Buditjahjanto; Juki Irfansyah – Journal of Technology and Science Education, 2023
The use of computer applications as learning media has been widely used in the learning process. One such computer application is Augmented Reality. Augmented Reality has advantages in ease of use, media appeal, and mobility because it can be used on cell phones and tablets. Creative thinking is a skill that students need in solving problems in a…
Descriptors: Computer Simulation, Creative Thinking, Program Effectiveness, Academic Achievement
Amelia Auchstetter; Eben Witherspoon; Oluchi Ozuzu; Jonathan Margolin; Lawrence B. Friedman – American Institutes for Research, 2023
The purpose of this study was to evaluate the implementation and impact of the Pack program. The Pack was developed by the New York Hall of Science (NYSCI) and includes a digital game and set of curricular and professional development resources that aim to support computational thinking teaching and learning in middle school science and computer…
Descriptors: Computation, Thinking Skills, Educational Games, Program Implementation

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