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Showing 1 to 15 of 42 results Save | Export
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Jessica 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
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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
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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
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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
Warner, Jayce R.; Fletcher, Carol L.; Torbey, Ryan; Garbrecht, Lisa S. – Texas Education Research Center, 2020
Students living in rural areas are less likely to attend schools that offer computer science (CS) courses largely because educational institutions in these remote areas lack the resources to staff teaching positions for these courses. This study investigated the impact of WeTeach_CS, a program designed to train teachers to become certified to…
Descriptors: Rural Schools, Computer Science Education, Faculty Development, High School Teachers
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Jacqueline DeLisi; Jessica Brown; Lukas Winfield; Makoto Hanita; Anne Wang – Grantee Submission, 2025
In 2019, the Rhode Island Department of Education (RIDE), in partnership with the University of Rhode Island (URI), launched the Work-Based Learning for Computer Science (WBL4CS) project through an Education Innovation Research (EIR) grant. The initiative aimed to expand access to computer science (CS) education for high school students,…
Descriptors: Work Based Learning, Computer Science Education, High School Students, Career Pathways
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Stephen Hiller; Jessica Campbell; Patricia Muller; Anne-Maree Ruddy – Grantee Submission, 2024
The Green River Regional Educational Cooperative (GRREC) and its partners administered the STEM-CS intervention to support the professional learning of middle and high school STEM teachers in rural southcentral Kentucky counties. The goals of the STEM-CS intervention were to improve teacher STEM-CS knowledge, practice, implementation, and…
Descriptors: High School Teachers, Rural Schools, Faculty Development, STEM Education
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Yepes, Igor; Barone, Dante Augusto Couto; Porciuncula, Cleber Mateus Duarte – Informatics in Education, 2022
With the growing search for qualified professionals in the exact area, teaching in STEM (Science, Technology, Engineering, and Mathematics) areas is gaining importance. In parallel, it appears that drones are an increasingly present reality in the civil area; however, there are few scientific studies of their application in the pedagogical…
Descriptors: STEM Education, Aviation Technology, Robotics, Teaching Methods
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David Rutledge; Paige Prescott; Raena Cota; Francis Vigil; Enrico Pontelli; Yolanda Lozano; Andrew Sedillo – Journal of Technology and Teacher Education, 2025
Schools in underserved communities are less likely to be able to offer computer science (CS) classes and when available the teacher lacks a background in CS but is also new to the teaching profession (Banilower et al., 2018). CS teachers without the proper preparation in the content area struggle to support their students including ways of…
Descriptors: Culturally Relevant Education, Computer Science Education, Teacher Competencies, Teacher Collaboration
Education Week, 2023
Schools experienced a massive expansion of technology over the past few years. They put in place 1-to-1 computing programs, are now using a record number of digital learning tools, and improved the availability of home-internet access for students. It was essentially a "fast-forward" for the evolution of digital learning in schools. But…
Descriptors: Educational Technology, Technology Uses in Education, Computer Science Education, High School Students
Shuqiong Lin; Megha Joshi; Kate Caton; Joseph Patrick Wilson – American Institutes for Research, 2024
The American Institutes for Research® (AIR®) partnered with Girls Who Code (GWC) to conduct an independent study evaluating the effectiveness of two GWC summer virtual programs, the Summer Immersion Program (SIP) and the Self-Paced Program (SPP), on promoting the pursuit of Computer Science (CS)-related postsecondary education for high school…
Descriptors: Females, Womens Education, Summer Programs, Program Effectiveness
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Goode, Joanna; Ivey, Allison; Johnson, Stephany RunningHawk; Ryoo, Jean J.; Ong, Christine – Computer Science Education, 2021
Background and Context: Though computer science education is marked by a pronounced racial participation gap, there is little research about effective ways that teachers can be supported in creating racially-just and equitable computer science learning opportunities for students. Objectives: This paper examines how teachers engage in learning…
Descriptors: Computer Science Education, Race, Teacher Attitudes, Equal Education
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Husaeni, Dwi Fitria Al; Budisantoso, Enrico Nabil Qois; Urwah, Mushfani Ainul; Azizah, Nissa Nur; Dinata, Putri Zukhruf; Apriliany, Shandini; Siregar, Herbert – Journal of Science Learning, 2022
This study aims to evaluate the effect of the use and development of interactive and visual learning media in learning looping by utilizing a web-based digital platform called Loopers. The research design used a qualitative descriptive with case study approach in-depth interview technique. The subjects of this research are five students of the…
Descriptors: Foreign Countries, Educational Technology, Technology Uses in Education, Vocational Education
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Lawlor, Grace; Byrne, Philip; Tangney, Brendan – ACM Transactions on Computing Education, 2020
The provision of all-female computer science outreach programmes is a common strategy used to foster greater interest in the subject for high school aged girls. Based on key factors that affect girls' interest in computer science (CS), outreach programmes often share much in their approach. Nonetheless, there is criticism from a research…
Descriptors: Outreach Programs, Program Effectiveness, Program Evaluation, Evaluation Methods
Clements, Peggy; Auchstetter, Amelia; Lin, Shuqiong; Savage, Corey – American Institutes for Research, 2022
This is the final report of an independent evaluation of the CompuPower program that was developed by Arizona State University's Center for Gender Equity in Science and Technology (ASU CGEST). CompuPower is a multifaceted program for high school students that is centered on a culturally responsive computing course that includes four key…
Descriptors: Computer Science Education, High School Students, Culturally Relevant Education, Secondary School Curriculum
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