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Hijón Neira, Raquel; García-Iruela, Miguel; Connolly, Cornelia – International Journal of Computer Science Education in Schools, 2021
Effective and reliable assessment approaches to computational thinking in secondary education are in demand. This paper uses a guided technological pedagogical content knowledge (TPACK) framework, incorporating a visual execution environment (VEE) and Scratch project for secondary school students as a method to teach and assess computational…
Descriptors: Computation, Thinking Skills, Pedagogical Content Knowledge, Technological Literacy
W. Brian Lane; Terrie M. Galanti; X. L. Rozas – Journal for STEM Education Research, 2023
Integrating computational thinking (CT) into STEM disciplines requires secondary teachers to develop their pedagogical content knowledge of computing and content integration. Experienced teachers who choose to integrate CT in their secondary STEM courses may struggle in the same ways as novice teachers as they learn about programming and its…
Descriptors: Physics, Teaching Methods, Grounded Theory, Capacity Building
Suters, Leslie; Suters, Henry; Anderson, Adam – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2021
This paper describes a 54-hour summer institute for grades 6-12 mathematics and science teachers (N = 19) with a comprehensive approach to preparing teachers to use computational thinking (CT) in their classrooms, including training in Python computer programming with Lego® Mindstorms® robotics, mathematics content sessions, and opportunities to…
Descriptors: Algebra, Mathematics Instruction, Pedagogical Content Knowledge, Programming
Paulina Haduong; Karen Brennan – Journal of Technology and Teacher Education, 2024
Online professional learning experiences can address K¬--12 computing teachers' need for content knowledge and professional communities. However, it can be difficult to design effective, large-scale experiences that reach broader audiences while addressing individual teachers' professional needs. We facilitated a two-week online professional…
Descriptors: Computer Science Education, Electronic Learning, Faculty Development, Learning Experience
Qian, Yizhou – ProQuest LLC, 2018
With the expansion of computer science (CS) education, CS teachers in K-12 schools should be cognizant of student misconceptions and be prepared to help students establish accurate understanding of computer science and programming. This exploratory design-based research (DBR) study implemented a data-driven approach to identify secondary school…
Descriptors: Misconceptions, Data, Decision Making, Computer Science Education
Solvang, Lorena; Haglund, Jesper – Physics Education, 2021
Recently, GeoGebra, a mathematics education software, has entered the scene of physics education; however, research on how the software can be used to support teaching and learning physics is limited and scattered. The aim of this article is to present a review of the current literature on how GeoGebra can be used to support physics education in…
Descriptors: Physics, Computer Software, Mathematics Instruction, Secondary School Students
Casler-Failing, Shelli – Research in Learning Technology, 2021
A multiple case study was conducted to investigate how Lego robotics instruction incorporated into a middle grades mathematics methods course could inform pre-service teachers' (PSTs) TPACK through the lens of Social Constructivist Theory. The qualitative data analysis revealed that when instruction on Lego robotics technology is integrated into…
Descriptors: Mathematics Instruction, Instructional Effectiveness, Technology Integration, Educational Technology
Qian, Yizhou; Hambrusch, Susanne; Yadav, Aman; Gretter, Sarah; Li, Yue – Journal of Educational Computing Research, 2020
A quality computer science (CS) teacher needs to understand students' common misconceptions in learning CS. This study explored one aspect of CS teachers' understanding of student misconceptions: their perceptions of student misconceptions related to introductory programming. Perceptions in this study included three parts: teachers' perceived…
Descriptors: Teacher Attitudes, Misconceptions, Introductory Courses, Programming
Qian, Yizhou; Lehman, James D. – SAGE Open, 2019
With the expansion of computer science (CS) education, CS teachers in K-12 schools should be cognizant of student misconceptions and be prepared to help students establish accurate understanding of computer science and programming. Digital tools, such as automated assessment systems, can be useful and supportive in teaching CS courses. This…
Descriptors: Feedback (Response), Student Attitudes, Misconceptions, Introductory Courses
Suters, Leslie; Suters, Henry – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2020
National standards and frameworks for mathematics, computer science, and technology emphasize the importance of teaching all children computational thinking (CT) skills. These skills are important for preparing citizens that are literate in science, technology, engineering, and mathematics and for participation in a society that is rapidly…
Descriptors: Programming, Computation, Thinking Skills, Middle School Mathematics
Akgunduz, Devrim; Mesutoglu, Canan – Science Education International, 2021
The goals of this study were to investigate technical and vocational education (TVET) teachers' progress in their knowledge, perceptions, and competencies related to Industry 4.0 components and Science, Technology, Engineering, and Mathematics (STEM) within the context of a professional development program. A case study design was followed to…
Descriptors: STEM Education, Vocational Education, Vocational Education Teachers, Industry
von Wangenheim, Aldo; von Wangenheim, Christiane Gresse; Pacheco, Fernando S.; Hauck, Jean C. R.; Ferreira, Miriam Nathalie F. – International Journal of Computer Science Education in Schools, 2017
Computing education in schools faces several problems, such as a lack of computing teachers and time in an already overloaded curriculum. A solution can be a multidisciplinary approach, integrating the teaching of computing within other subjects, creating the need to motivate teachers from other disciplines to teach computing in middle school.…
Descriptors: Middle School Teachers, Teacher Motivation, Workshops, Computer Science Education
Ronaldsson, Lennart; Skogh, Inga-Britt – ACM Transactions on Computing Education, 2014
In this article, the development of the Swedish informatics curriculum during the 1970s, 1980s and 1990s is studied and described. The study's design is inspired by the curriculum theory presented by Lindensjö and Lundgren [2000], who suggest using the concept of arenas (the arenas of enactment, transformation and realisation) when discussing…
Descriptors: Foreign Countries, Information Science, Curriculum Development, Educational History
Saeli, Mara; Perrenet, Jacob; Jochems, Wim M. G.; Zwaneveld, Bert – Journal of Educational Computing Research, 2012
The scope of this article is to understand to what extent Computer Science teachers can find support for their Pedagogical Content Knowledge (PCK) in teaching material. We report the results of a study in which PCK is used as framework to develop a research instrument to examine three high school computer science textbooks, with special focus on…
Descriptors: Foreign Countries, Computer Science Education, Beginning Teachers, Pedagogical Content Knowledge
Saeli, Mara; Perrenet, Jacob; Jochems, Wim M. G.; Zwaneveld, Bert – Informatics in Education, 2012
In this article we report about a study to assess Dutch teachers' Pedagogical Content Knowledge (PCK), with special focus on programming as a topic in secondary school Informatics education. For this research, we developed an online research instrument: the Online Teacher PCK Analyser (OTPA). The results show that Dutch teachers' PCK scores…
Descriptors: Programming, Pedagogical Content Knowledge, Secondary School Science, Secondary School Teachers
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