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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing all 11 results
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Bati, Tesfaye Bayu; Gelderblom, Helene; van Biljon, Judy – Computer Science Education, 2014
The challenge of teaching programming in higher education is complicated by problems associated with large class teaching, a prevalent situation in many developing countries. This paper reports on an investigation into the use of a blended learning approach to teaching and learning of programming in a class of more than 200 students. A course and…
Descriptors: Foreign Countries, Teaching Methods, Blended Learning, Educational Technology
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Straub, Jeremy – Computer Science Education, 2014
This article surveys the examination requirements for attaining degree candidate (candidacy) status in computer science doctoral programs at all of the computer science doctoral granting institutions in the United States. It presents a framework for program examination requirement categorization, and categorizes these programs by the type or types…
Descriptors: Computer Science Education, Doctoral Degrees, Universities, Comparative Analysis
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Tenenberg, Josh; Knobelsdorf, Maria – Computer Science Education, 2014
Theories of mind are implicitly embedded in educational research. The predominant theory of mind during the latter half of the twentieth century has focused primarily on the individual mind in isolation, context-free problem-solving and mental representations and reasoning, what we refer to as "cognitivism." Over the last two decades, CS…
Descriptors: Educational Theories, Theory of Mind, Epistemology, Cognitive Psychology
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Armoni, Michal; Gal-Ezer, Judith – Computer Science Education, 2014
The gap between enrollments in higher education computing programs and the high-tech industry's demands is widely reported, and is especially prominent for women. Increasing the availability of computer science education in high school is one of the strategies suggested in order to address this gap. We look at the connection between exposure…
Descriptors: Foreign Countries, Computer Science Education, High School Students, College Preparation
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Miller, Craig S. – Computer Science Education, 2014
When learning to program, students often mistakenly refer to an element that is structurally related to the element that they intend to reference. For example, they may indicate the attribute of an object when their intention is to reference the whole object. This paper examines these reference-point errors through the context of metonymy.…
Descriptors: Computer Science Education, Programming, Novices, Figurative Language
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Harlow, Danielle Boyd; Leak, Anne Emerson – Computer Science Education, 2014
Recent studies in learning programming have largely focused on high school and college students; less is known about how young children learn to program. From video data of 20 students using a graphical programming interface, we identified ideas that were shared and evolved through an elementary school classroom. In mapping these ideas and their…
Descriptors: Programming, Cooperative Learning, Concept Mapping, Elementary School Science
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Major, Louis; Kyriacou, Theocharis; Brereton, Pearl – Computer Science Education, 2014
This work investigates the effectiveness of simulated robots as tools to support the learning of programming. After the completion of a systematic review and exploratory research, a multi-case case study was undertaken. A simulator, named Kebot, was developed and used to run four 10-hour programming workshops. Twenty-three student participants…
Descriptors: Robotics, Computer Simulation, Programming, Teaching Methods
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Beyer, Sylvia – Computer Science Education, 2014
This study addresses why women are underrepresented in Computer Science (CS). Data from 1319 American first-year college students (872 female and 447 male) indicate that gender differences in computer self-efficacy, stereotypes, interests, values, interpersonal orientation, and personality exist. If students had had a positive experience in their…
Descriptors: Computer Science Education, Females, Womens Education, Disproportionate Representation
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Taylor, C.; Zingaro, D.; Porter, L.; Webb, K. C.; Lee, C. B.; Clancy, M. – Computer Science Education, 2014
Concept Inventories (CIs) are assessments designed to measure student learning of core concepts. CIs have become well known for their major impact on pedagogical techniques in other sciences, especially physics. Presently, there are no widely used, validated CIs for computer science. However, considerable groundwork has been performed in the form…
Descriptors: STEM Education, Computer Science Education, Concept Formation, Scientific Concepts
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Herman, Geoffrey L.; Zilles, Craig; Loui, Michael C. – Computer Science Education, 2014
Concept inventories hold tremendous promise for promoting the rigorous evaluation of teaching methods that might remedy common student misconceptions and promote deep learning. The measurements from concept inventories can be trusted only if the concept inventories are evaluated both by expert feedback and statistical scrutiny (psychometric…
Descriptors: Psychometrics, Concept Formation, Measures (Individuals), Teaching Methods
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Vahrenhold, Jan; Paul, Wolfgang – Computer Science Education, 2014
We report on the development, validation, and implementation of a collection of test items designed to detect misconceptions related to first-year computer science courses. To this end, we reworked the development scheme proposed by Almstrum et al. ("SIGCSE Bulletin" 38(4):132-145, 2006) to include students' artifacts and to…
Descriptors: Computer Science Education, Introductory Courses, Test Items, Evaluation Methods