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Rita Neves Rodrigues; Cecília Costa; Sofia Gonçalves; Fernando Martins – Educational Process: International Journal, 2025
Background/purpose: Computational Thinking is a content that has been integrated into primary education curricula in several countries. Its proper integration into education is not limited to its inclusion in the educational curricula, and teachers and pre-service teachers must develop the necessary knowledge to integrate it into their practices…
Descriptors: Computation, Thinking Skills, Preservice Teachers, Elementary School Teachers
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Roy Ardiansyah; Soetarno Joyoatmojo; Gunarhadi; Idam Ragil Widianto Atmojo; Ira Wati Subandi; Rizqi Karisma Rahmadian – Educational Process: International Journal, 2025
Background/purpose. 21st-century skills are essential across all aspects of life in the modern era. Pre-service elementary school teachers must also develop computational thinking skills as part of the problem-solving process--one of the most critical 21st-century competencies. These skills are critical in science learning and serve as fundamental…
Descriptors: Preservice Teachers, Elementary School Teachers, Scientific Concepts, Computation
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Johanna S. Carroll; Hedieh Najafi; Martina Steiner – Biochemistry and Molecular Biology Education, 2025
Virtual Labs (vLabs) have been gaining popularity in high school and undergraduate education, but there are few studies looking at their use in graduate-level courses. In this study, we investigated the use of six Labster vLabs assigned as homework in a graduate-level in-person Genomic Methodologies course at the University of Toronto. This course…
Descriptors: Computer Simulation, Science Laboratories, Graduate Students, Genetics
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Treschman, Keith – Teaching Science, 2022
The topic of the seasons is covered in both primary and secondary schools in Australia. It may be difficult for some students to comprehend how the Sun alters its position throughout the year. This article shows how to calculate the changing rising and setting positions of the Sun for one's locality and the extremes of its elevation near noon over…
Descriptors: Science Instruction, Astronomy, Computation, Motion
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Hernandez, Eder; Campos, Esmeralda; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2023
Electricity and magnetism are closely related phenomena with a well-known symmetry found in Maxwell equations. An essential part of any electricity and magnetism course includes the analysis of different field source distributions through Gauss's and Ampere's laws to compute and interpret different physical quantities, such as electric flux,…
Descriptors: Energy, Magnets, Science Instruction, Scientific Concepts
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Tu, Tao; Li, Chuan-Feng; Xu, Jin-Shi; Guo, Guang-Can – Physical Review Physics Education Research, 2023
In the context of quantum mechanics, students are often asked to use delta functions to solve problems. Here, we investigate three typical problem-solving processes using delta functions: a delta function potential well problem, a position space delta function problem, and a momentum space delta function problem. We studied students'solutions in…
Descriptors: Quantum Mechanics, Science Instruction, Problem Solving, Scientific Concepts
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Ogegbo, Ayodele Abosede; Ramnarain, Umesh – African Journal of Research in Mathematics, Science and Technology Education, 2022
Although there is a lot of interest in the development of computational thinking (CT) and the benefits it could have for every student, integrating it into science classrooms may be more difficult than traditional teaching. This can be very challenging for South African science teachers. Thus, there is an increasing need to prepare teachers and…
Descriptors: Thinking Skills, Computation, Science Instruction, Teacher Attitudes
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Rachmatullah, Arif; Wiebe, Eric N. – Journal of Science Teacher Education, 2023
The inclusion of computational thinking (CT) into science curricula has advocated implementing a computationally rich science learning environment where students learn science via building models in a computer programming platform. Such an approach may influence teachers' self-efficacy for teaching science which may also be associated with their…
Descriptors: Middle School Teachers, Self Efficacy, Science Instruction, Educational Environment
Herwinarso; Elisabeth Pratidhina; Pramono Adam; Heru Kuswanto; Anggi Datiatur Rahmat – Journal of Education and e-Learning Research, 2023
Computational thinking (CT) skills are essential with the rapid advancement of technology. Developing CT attitudes in students is also required for improving CT skills. On the other hand, science process skills are also emphasized in high school physics classes. This study aims to design and implement collaborative modeling-based learning for high…
Descriptors: Computation, Thinking Skills, High School Students, Science Instruction
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Yildiz Durak, Hatice; Atman Uslu, Nilüfer; Canbazoglu Bilici, Sedef; Güler, Bekir – Education and Information Technologies, 2023
In this study, the role of science and computational thinking (CT) in teaching self-efficacy and design thinking variables were examined to explain the technological pedagogical content knowledge (TPACK) knowledge forms needed by science teachers for integrated Science, Technology, Engineering and Mathematics (STEM) within the framework of the…
Descriptors: Predictor Variables, Pedagogical Content Knowledge, Technological Literacy, STEM Education
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Suritno Fayanto; I Nyoman Sudana Degeng; Syaad Patmanthara; Saida Ulfa – Science Education International, 2024
Design-Based Learning and computational thinking (CT) are two key components that support each other specifically in the learning process involving the development of experimental design. Both components emphasize the importance of integration between computational thinking and design-based learning to support a creative, innovative and data…
Descriptors: Computation, Thinking Skills, Teacher Effectiveness, Courses
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Oliveira, Vitor – Physics Education, 2022
We discuss the limits of the equation of the period of a simple pendulum, T[subscript s] = 2[pi][square root]l/g, frequently used in high-school and university classrooms to measure the acceleration of gravity. We evaluate the relative error in determining the acceleration of gravity with this simple equation instead of a more realistic one,…
Descriptors: Physics, Teaching Methods, Science Instruction, Accuracy
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Avraham Merzel; Efraim Yehuda Weissman; Nadav Katz; Igal Galili – Physical Review Physics Education Research, 2024
Teaching quantum physics (QP) to high school (HS) students is gaining momentum, necessitating the exploration of various effective methods. Specifically, the research on quantitative teaching methods is still in its early stages. Understanding the power of Dirac notation (DN) in teaching is crucial for grasping the complexities of QP, as it…
Descriptors: High School Students, Secondary School Science, Science Education, Physics
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Miguel Reina; Itzel Guerrero-Ri´os; Antonio Reina – Journal of Chemical Education, 2022
We describe a remote pedagogical approach based on chemical thinking to study metal-carbonyl complexes by analyzing simulated IR spectra. The proposed approach, implemented due to the COVID-19 pandemic, can be employed in classrooms that have very limited laboratory equipment for evaluating toxic metal-carbonyl compounds, as well as for…
Descriptors: Chemistry, Distance Education, Scientific Concepts, Concept Formation
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Aydan Aytekin; Mustafa Sami Topcu – Journal of Science Education and Technology, 2024
In the digital age in which we live, one of the primary goals of education is to nurture individuals who are capable of thinking creatively, solving problems, and being innovative and productive. Computational thinking is an analytical process that requires defining problems and at the same time solving these problems by proceeding in creative…
Descriptors: Creative Thinking, Problem Solving, Skill Development, Thinking Skills
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