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Adeli Ynostroza-Ochoa; Sylvia Celedón-Pattichis; Marios S. Pattichis; Irán Tovar; Melissa Ibarra – International Journal of Multicultural Education, 2025
Although there have been efforts to broaden the participation of underrepresented students in Science, Technology, Engineering, and Mathematics (STEM), few studies have focused on how Latine bilingual students in rural contexts can access computer programming. The purpose of this case study is to examine how translanguaging facilitates…
Descriptors: Computer Science Education, Code Switching (Language), Second Language Learning, Native Language
Ren, Xinyue – TechTrends: Linking Research and Practice to Improve Learning, 2022
The participation and engagement of traditionally underrepresented students remained low in computer science subjects and career paths, especially women and women of color. In terms of the urgent need to achieve intellectual diversity within the computer science field, many institutions strived to broaden the participation of women and women of…
Descriptors: Feminism, Teaching Methods, Computer Science Education, Student Empowerment
Jane W. Kim; Imelda Nava-Landeros; Michael Shriner – Multicultural Education, 2024
Abolitionist dreamers have called for justice-oriented teachers to teach K-12 students with marginalized identities through methods of critical and culturally responsive/sustaining pedagogies (Freire, 1970/2018; Gay, 2018; Ladson-Billings, 1995/2021; Paris & Alim, 2014); acts of love, care, hope, and healing (Ginwright, 2016; Love, 2019); and…
Descriptors: STEM Education, Computer Science Education, Social Justice, Teaching Methods
Lash, Todd – ProQuest LLC, 2021
Computer science impacts our lives every day in a multitude of ways. Despite its ubiquity and power to shape the world, the computer science education community continues to struggle with issues of equity. Problems of access, opportunity, influence and achievement are pervasive and while a handful of scholars have investigated specific approaches…
Descriptors: Equal Education, Access to Education, Minority Group Students, Elementary Secondary Education
Roslyn Arlin Mickelson; Ian Mikkelsen; Mohsen Dorodchi; Bojan Cukic; Caitlin Petro; Zelaya Al Ayeisha; Shakayla Alston; Anthony Teddy; Myat Win; Sandra Wiktor; Barry Sherman; Jeffrey Cook – School Community Journal, 2024
Students from underrepresented populations--females, working class, and youth from marginalized racial/ethnic groups--are less likely than their middle-class Asian and White male peers to study computer science (CS) in college. The dearth of CS undergraduates from these groups contributes to projected labor force shortages. Sources of the dilemma…
Descriptors: Middle School Students, Computer Science Education, Partnerships in Education, Minority Group Students
Huang, Wendy; Looi, Chee-Kit – Computer Science Education, 2021
Background and Context: Computational thinking (CT) is considered as a valuable literacy for all students, and its inclusion in compulsory schooling could increase the numbers of underrepresented students who pursue computing-related careers. Computer Science Unplugged (CSU) had success in making computer science (CS) accessible to K-12 students…
Descriptors: Computer Science Education, Programming, Thinking Skills, Skill Development
Rodriguez, Sarah L.; Doran, Erin E.; Friedensen, Rachel E.; Martinez-Podolsky, Elizabeth; Hengesteg, Paul S. – International Journal of Education in Mathematics, Science and Technology, 2020
Engineering identity plays a vital role in the persistence of engineering students, yet limited research exists on how particular pedagogical approaches influence engineering identity at the college level. This qualitative case study explored how undergraduate student perceptions of design thinking pedagogy influence computer, electrical, and…
Descriptors: Design, Thinking Skills, Teaching Methods, Engineering Education
Olaegbe, Mudasiru K. – ProQuest LLC, 2021
The immense benefits of e-learning cannot be overemphasized. In addition to solving the time and space constraints posed by the traditional/conventional learning methods, it can be more adaptive and interactive to achieve optimum learning output/results. As a consequence of students' varying backgrounds and different learning abilities, the…
Descriptors: Engineering Education, Productivity, Computer Simulation, Self Efficacy
Ryoo, Jean J. – ACM Transactions on Computing Education, 2019
The Computer Science (CS) for All movement has taken hold of the United States and CS education is rapidly expanding across nations throughout the world. Yet, as curricula and professional development opportunities are developed, key questions remain about what "works" for engaging youth in CS education, especially those who are…
Descriptors: Computer Science Education, Access to Education, Equal Education, Teaching Methods
Leonard, Hayley C.; Sentance, Sue – International Journal of Computer Science Education in Schools, 2021
The underrepresentation of certain groups in computing has led to increasing efforts to develop computing curricula that is responsive and relevant to a more diverse group of learners. The current paper used a Quick Scoping Review methodology to identify research that has implemented and evaluated culturally responsive and relevant K-12 computing…
Descriptors: Culturally Relevant Education, Computer Science Education, Student Attitudes, Curriculum Development
Shah, Niral; Christensen, Julie A.; Ortiz, Nickolaus A.; Nguyen, Ai-Khanh; Byun, Sunghwan; Stroupe, David; Reinholz, Daniel L. – Computer Science Education, 2020
Background and Context: Computing is being integrated into a range of STEM disciplines. Still, computing remains inaccessible to many minoritized groups, especially girls and certain people of color. In this mixed methods study, we investigated racial and gendered patterns of equity and inequity in high school physics classrooms incorporating…
Descriptors: Physics, Science Instruction, Gender Differences, Equal Education
Buzzetto-Hollywood, Nicole A.; Wang, Hwei C.; Elobeid, Magdi; Elobaid, Muna E. – Interdisciplinary Journal of e-Skills and Lifelong Learning, 2018
Aim/Purpose: The digital divide and educational inequalities remain a significant societal problem in the United States, and elsewhere, impacting low income, first-generation, and minority learners. Accordingly, institutions of higher education are challenged to meet the needs of students with varying levels of technological readiness with…
Descriptors: Information Literacy, Access to Computers, Disadvantaged, Minority Group Students
Oldham, Jennifer – Education Next, 2021
Despite a growing belief among parents, administrators, and students in computer science's benefits, and millions of dollars allocated to offering it in K-12 schools, gaps in access and participation among Black, Hispanic, and white students persist. Today, computer-science-for-all leaders acknowledge they've hit a plateau and that they need more…
Descriptors: Computer Science Education, Access to Education, Kindergarten, Elementary Secondary Education
Sepehr Vakil – ProQuest LLC, 2016
Computer science is rapidly emerging as a distinct feature of K-12 public education in the United States. Calls to expand computer science education are often linked to equity and diversity concerns around expanding access to girls and historically underrepresented students of color. In this dissertation, I argue that in addition to expanding…
Descriptors: Computer Science Education, Teaching Methods, Equal Education, Diversity
Ryoo, Jean J.; Margolis, Jane; Lee, Clifford H.; Sandoval, Cueponcaxochitl D. M.; Goode, Joanna – Learning, Media and Technology, 2013
Despite the fact that computer science (CS) is the driver of technological innovations across all disciplines and aspects of our lives, including participatory media, high school CS too commonly fails to incorporate the perspectives and concerns of low-income students of color. This article describes a partnership program -- Exploring Computer…
Descriptors: Computer Science, High Schools, At Risk Students, Low Income Groups