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Paula Nazario; Jean J. Ryoo; Julie Flapan; Roxana Hadad; Nicol R. Howard; Adriana Ruiz Alvarado; Rocio Mendoza; Nicole Broadnax – Journal of Research on Technology in Education, 2025
Research demonstrates a connection between parent perspectives and children's decisions to pursue careers in STEM (e.g. Albritton et al., 2020; Fouad et al., 2016). However, there is limited research on parents' impact on CS education advocacy. Through one-on-one parent interviews, this study found that parents engage in educational advocacy, but…
Descriptors: Computer Science Education, Parents, Parent Attitudes, Parent Influence
Bruno, Paul; Pérez, Mariam Saffar; Lewis, Colleen M. – Policy Analysis for California Education, PACE, 2022
High schools in California--and around the country--increasingly offer computer science (CS) and often would like to expand CS offerings further. However, these expansions pose a number of challenges for administrators and policymakers, especially if they are going to happen effectively and equitably. We consider four of the most pressing…
Descriptors: High Schools, Computer Science Education, Equal Education, Teacher Supply and Demand
Knudson, Joel; Handjojo, Candice; Sunde, Ashley – American Institutes for Research, 2021
Computer science (CS) education in California has grown substantially in the last decade. Early grassroots efforts have evolved into a broad coalition of educators, industry leaders, and other members of the CS community known as Computer Science for California (CSforCA). At the same time, developments in multiple aspects of state policy reflect…
Descriptors: State Policy, Educational Policy, Computer Science Education, Educational Development
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Shaw, Mia S.; Fields, Deborah A.; Kafai, Yasmin B. – Computer Science Education, 2020
Background and context: Promoting open-ended projects presents new opportunities and challenges for inclusive teaching in CS classrooms. While efforts have been made to develop inclusive curricula, little research has focused on ways teachers apply curricula in their classrooms to promote inclusion. Objective: To understand the challenges faced in…
Descriptors: Computer Science Education, Inclusion, High School Teachers, Electronic Learning
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Vakil, Sepehr – Harvard Educational Review, 2018
In this essay, Sepehr Vakil argues that a more serious engagement with critical traditions in education research is necessary to achieve a justice-centered approach to equity in computer science (CS) education. With CS rapidly emerging as a distinct feature of K-12 public education in the United States, calls to expand CS education are often…
Descriptors: Ethics, Self Concept, Access to Education, Role
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Fields, Deborah Ann; Kafai, Yasmin; Nakajima, Tomoko; Goode, Joanna; Margolis, Jane – Equity & Excellence in Education, 2018
Recent discussions of making have focused on developing out-of-school makerspaces and activities to provide more equitable and enriching learning opportunities for youth. Yet school classrooms present a unique opportunity to help broaden access, diversify representation, and deepen participation in making. In turning to classrooms, we want to…
Descriptors: High School Students, Computer Science Education, Teaching Methods, Learning Activities
Martin, Alexis; McAlear, Frieda; Scott, Allison – Online Submission, 2015
"Path Not Found: Disparities in Access to Computer Science Courses in California High Schools" exposes one of the foundational causes of underrepresentation in computing: disparities in access to computer science courses in California's public high schools. This report provides new, detailed data on these disparities by student body…
Descriptors: High School Students, Computer Science Education, Access to Education, Public Schools
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Setzekorn, Kristina, Ed.; Patnayakuni, Nainika, Ed.; Burton, Tina, Ed. – IGI Global, 2020
Education has until recently promoted social mobility, broad economic growth, and democracy. However, modern universities direct policy and resources toward criteria that exacerbate income inequality and reduce social mobility. Online education can make education more socially, geographically, temporally, and financially accessible, impacting the…
Descriptors: Higher Education, Online Courses, Distance Education, Educational Technology
Education Commission of the States, 2018
Business leaders in California cannot find the science, technology, engineering and mathematics (STEM) talent they need to stay competitive. Students' lagging performance in K-12 is a critical reason why. The good news is that the nation's most effective STEM education programs can help turn the tide. California students have made some progress in…
Descriptors: STEM Education, Elementary Secondary Education, Demand Occupations, Mathematics Achievement
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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
Rodriguez, C. Osvaldo – European Journal of Open, Distance and E-Learning, 2012
Open online courses (OOC) with a massive number of students have represented an important development for online education in the past years. A course on artificial intelligence, CS221, at the University of Stanford was offered in the fall of 2011 free and online which attracted 160,000 registered students. It was one of three offered as an…
Descriptors: Foreign Countries, Educational Technology, Electronic Learning, Distance Education
Western Interstate Commission for Higher Education, 2006
In California, the nation's most populous state, the demand for well-educated employees will only increase over the next several years. In the decade leading up to 2012, healthcare occupations will see growth of 28 percent; over 157,000 new practitioners and technicians will be needed. Teachers will be in high demand: over a quarter million new…
Descriptors: Higher Education, Food Service, Dentistry, Labor Force Development