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Yuli Deng – ProQuest LLC, 2021
Personalized learning is gaining popularity in online computer science education due to its characteristics of pacing the learning progress and adapting the instructional approach to each individual learner from a diverse background. Among various instructional methods in computer science education, hands-on labs have unique requirements of…
Descriptors: Individualized Instruction, Experiential Learning, Computer Science Education, Electronic Learning
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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Judson, Eugene; Glassmeyer, Kristi – Computers in the Schools, 2020
In 37 states, an accepted computer science course may qualify or "flex" as a high school graduation requirement in lieu of a traditional requirement, such as mathematics. Applying a first- and second-order barriers framework (i.e., tangible impediments and personal beliefs), we examined views of 60 high school administrators. The…
Descriptors: Administrator Attitudes, Computer Science Education, Graduation Requirements, Mathematics Education
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Judson, Eugene; Glassmeyer, Kristi – Journal of Research on Technology in Education, 2019
Recent policies across the United States support rigorous high school computer science courses acting as flex credit courses. This allows the courses to count as graduation requirements in lieu of traditional mathematics or science courses. In this study, 457 teachers in high schools that had not yet adopted flex credit policies indicated school…
Descriptors: High School Teachers, Computer Science Education, School Readiness, Beliefs
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George, Joey F.; Marett, Kent – Journal of Information Systems Education, 2019
Changes to degree programs in Information Systems are often attributed to quickly-evolving technology and the subsequent changing needs of the employers who hire IS graduates. In this paper, we explore other social and economic factors that were the inspiration for curriculum changes by assigning them to one of four eras in the IS timeline. Using…
Descriptors: Curriculum Development, Programming, Computer Science Education, Bachelors Degrees
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Budinoff, Hannah; McMains, Sara – Engineering Design Graphics Journal, 2018
The impact of spatial visualization ability on student outcomes in a freshman-level, 3D modeling class is explored by analyzing connections between students' spatial ability pre- and post-test scores, course grades, and self-reported difficulty of an assignment. Analysis of the results indicate that spatial visualization ability, as measured by…
Descriptors: Correlation, Visualization, Spatial Ability, Scores
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Andalibi, Mehran – International Journal of Higher Education, 2019
In the study herein aimed at incorporating the entrepreneurship mindset early on in the engineering curriculum of undergraduate students via a final project of an introductory programming course with MATLAB. Students were asked to find a need on campus, in the society, or in the market with a business potential and write a standalone application…
Descriptors: Creative Thinking, Engineering Education, Problem Solving, Entrepreneurship
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Lu, Yihan; Hsiao, I-Han – International Educational Data Mining Society, 2016
Online programming discussion forums have grown increasingly and have formed sizable repositories of problem solving-solutions. In this paper, we investigate programming learners' information seeking behaviors from online discussion forums. We design engines to collect students' information seeking processes, including query formulation,…
Descriptors: Programming, Advanced Students, Reading Processes, Computer Mediated Communication
Education Commission of the States, 2018
Business leaders in Arizona 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. Arizona students have already made real progress…
Descriptors: STEM Education, Elementary Secondary Education, Demand Occupations, Mathematics Achievement