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Showing 1 to 15 of 17 results Save | Export
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Ritter, Frauke; Standl, Bernhard – Informatics in Education, 2023
We live in a digital age, not least accelerated by the COVID-19 pandemic. It is all the more important in our society that students learn and master the key competence of algorithmic thinking to understand the informatics concepts behind every digital phenomena and thus is able to actively shape the future. For this to be successful, concepts must…
Descriptors: Algorithms, Information Science Education, Computer Science Education, COVID-19
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Martínez, Alexuan; Nieves, Christian; Rúa, Armando – Physics Teacher, 2021
Many physics projects recently designed for high school teachers use Arduino as the main tool for managing sensors and data acquisition. This is a low-cost integrated development environment programmed with a simplified version of the C++ language. In comparison, the Raspberry Pi 3 platform, which also allows for the design of physics projects,…
Descriptors: Science Instruction, Science Laboratories, Physics, Secondary School Science
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Mpalami, Nkosinathi – Pythagoras, 2022
Mathematics education remains problematic in South Africa's schools. However, some mathematics educators are deliberately using learners' home languages in tasks to assist learners to understand mathematics. Research-based evidence shows that learners' home languages when used as a resource have a potential to enhance learners' understanding of…
Descriptors: Translation, Mathematics Instruction, Teaching Methods, Native Language
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Apple, Lillian; Baunach, John; Connelly, Glenda; Gahlhoff, Sonia; Romanowicz, Colleen Megowan; Vieyra, Rebecca Elizabeth; Walker, Lucas – Physics Teacher, 2021
Multiple initiatives contend that all students should master computational thinking, including the "Next Generation Science Standards, the K-12 Framework for Computational Thinking," and Code.org. In turn, many physics teachers have begun to explore a variety of approaches to integrating computational modeling through programming. These…
Descriptors: Science Instruction, High Schools, Secondary School Science, Physics
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Anohah, Ebenezer; Suhonen, Jarkko – International Journal of Learning Technology, 2019
There has been minimal investigation into students programming their indigenous projects in relation to blocks of code and mainstream languages in computing education. This study examines high school students' experiences of programming non-western symbols using visual and text-based learning technologies. The high school students were exposed to…
Descriptors: Foreign Countries, Indigenous Knowledge, Coding, Programming
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Weintrop, David; Wilensky, Uri – Informatics in Education, 2014
Research on the effectiveness of introductory programming environments often relies on post-test measures and attitudinal surveys to support its claims; but such instruments lack the ability to identify any explanatory mechanisms that can account for the results. This paper reports on a study designed to address this issue. Using Noss and Hoyles'…
Descriptors: Programming, Programming Languages, Introductory Courses, Constructivism (Learning)
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van Zyl, Sukie; Mentz, Elsa; Havenga, Marietjie – African Journal of Research in Mathematics, Science and Technology Education, 2016
As part of curriculum changes in South Africa, an introductory programming language, Scratch, must first be taught before switching to the well-established teaching of Delphi. The nature of programming in Scratch is considerably different from that in Delphi. It was assumed that the teaching of Scratch as introductory programming language could…
Descriptors: Foreign Countries, Programming Languages, Teaching Methods, Guidelines
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Liberman, Neomi; Beeri, Catriel; Kolikant, Yifat Ben-David – ACM Transactions on Computing Education, 2011
This article reports on difficulties related to the concepts of inheritance and polymorphism, expressed by a group of 22 in-service CS teachers with an experience with the procedural paradigm, as they coped with a course on OOP. Our findings are based on the analysis of tests, questionnaires that the teachers completed in the course, as well as on…
Descriptors: Programming, Teaching Methods, Computer Science Education, Questionnaires
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Khenner, Evgeniy; Semakin, Igor – ACM Transactions on Computing Education, 2014
This article deals with some aspects of studying Informatics in Russian schools. Those aspects are part of the "third dimension" of the Darmstadt model (they are also projected on the other two dimensions of this model) and include evolution of the subject, regulatory norms conforming to the Federal Educational Standards, the learning…
Descriptors: Foreign Countries, Information Technology, Computer Science Education, Secondary Education
Spycher, Pamela, Ed.; Haynes, Erin F., Ed. – IAP - Information Age Publishing, Inc., 2019
Multilingual students, multidialectal students, and students learning English as an additional language constitute a substantial and growing demographic in the United States. But these groups of students tend to receive unequal access to and inadequate instruction in Science, Technology, Engineering, Arts, and Mathematics (STEAM), with their…
Descriptors: Student Diversity, Cultural Differences, Multilingualism, Language Usage
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Paz, Tamar; Leron, Uri – Journal for Research in Mathematics Education, 2009
Functions are all around us, disguised as actions on concrete objects. Composition of functions, too, is all around us, because these actions can be performed in succession, the output of one serving as the input for the next. In terms of Gray and Tall's (2001) "embodied objects" or Lakoff and Nunez's (2000) "mathematical idea…
Descriptors: Concept Formation, Mathematics Instruction, Mathematical Concepts, Algebra
Webb, Heidi Cornelia – ProQuest LLC, 2013
Advances in technology have caused high schools to update their computer science curricula; however there has been little analogous attention to technology-related education in middle schools. With respect to computer-related knowledge and skills, middle school students are at a critical phase in life, exploring individualized education options…
Descriptors: Middle School Students, Computer Science Education, Computer Literacy, Thinking Skills
Holm, Jennifer, Ed.; Mathieu-Soucy, Sarah, Ed. – Canadian Mathematics Education Study Group, 2019
In June 2018 the Canadian Mathematics Education Study Group/Groupe Canadien d'étude en didactique des mathématiques (CMESG/GCEDM) held its 42nd meeting in the idyllic setting of Squamish, British Columbia. This meeting marked the first time CMESG/GCEDM had been in British Columbia since 2010 and the first time it had been held at Quest University.…
Descriptors: Mathematics Education, Mathematics Teachers, Teaching Methods, Interdisciplinary Approach
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Kolikant, Y. Ben-David; Mussai, M. – Computer Science Education, 2008
We studied students' conceptions of correctness and their influence on students' correctness-related practices by examining how 159 students had analyzed the correctness of error-free and erroneous algorithms and by interviewing seven students regarding their work. We found that students conceptualized program correctness as the sum of the…
Descriptors: Misconceptions, Computer Science Education, Science Instruction, Programming
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Holmboe, Christian – Computer Science Education, 2005
Constructing a data model for a problem area requires identifying and formulating some symbolic representation of the concepts involved, their characteristics, and the relationships between them. Taking a socio-cultural perspective on learning, analysis of classroom dialog is used to identify cognitive challenges met by novice students of data…
Descriptors: Concept Formation, Concept Teaching, Psycholinguistics, Metalinguistics
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