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András Juhász – European Journal of Physics Education, 2022
In this part we introduce the Smart Dreamcatcher (SD) network, a visualization of the Microcosmos. The SD-network is a geometrical structure (3-uniform hypergraph) which allows a comprehensible explanation of quantitative characteristics of hadron particles at the level of elaboration by physics of 1970's-80's. The elementary particles correspond…
Descriptors: Networks, Nuclear Physics, Models, Science Instruction
Timoštšuk, Inge; Lumi, Neeme – Journal of Teacher Education for Sustainability, 2022
It is important to be able to make better informed decisions about issues such as sustainability and climate change that have both personal and global impact as early as possible in life. Primary teachers have a significant role in supporting students' learning and understanding of these concepts. One important teaching skill that needs to be…
Descriptors: Concept Mapping, Concept Formation, Concept Teaching, Models
Jensen, Marc – Montessori Life: A Publication of the American Montessori Society, 2020
As children develop an understanding of their place in the universe, their mental model of the solar system should really go beyond a list of planet names and attributes to become a dynamic concept of bodies in motion and interaction. Montessori educators can help build a Sensorial impression of the cosmos by physically modeling the nature of…
Descriptors: Montessori Schools, Montessori Method, Astronomy, Science Education
Vasconcelos, André; Monsores, Jomar; Almeida, Tania; Quadros, Laura; Ogasawara, Eduardo; Quadros, João – Education and Information Technologies, 2023
The use of information technology in the academic environment has grown. Building different didactic techniques to help students learn and practice with Information Technology (IT) resources is common. However, applying these techniques does not necessarily mean that students may acquire knowledge. The differential idea of this work is to create…
Descriptors: Foreign Countries, Elementary Education, Elementary School Students, Computer Science Education
Fuad, Ah. Zakki; Alfin, Jauharoti; Fauzan; Astutik, Sri; Prahani, Binar Kurnia – International Journal of Instruction, 2019
Group Science Learning (GSL) is collaborative problem solving based learning by design to improve collaborative problem solving skills, science process skills, and self-confidence of primary schools teacher candidates. This research aims to analyze the effectiveness of GSL model to improve collaborative problem solving skills and self-confidence…
Descriptors: Cooperative Learning, Problem Solving, Models, Self Esteem
Brigas, Carlos Jorge – Research in Social Sciences and Technology, 2019
In science education, there is a need to evaluate the behavior of dynamic systems. Representing and explaining processes through educational models or simulations enables students to perform activities where it is easier to understand these processes and discover the essential properties of a system. Performing modeling or simulation activities…
Descriptors: Science Education, Models, Simulation, Teaching Methods
Miller, Matthew; Hanley, Daniel; Brobst, Joseph – Journal of Science Teacher Education, 2019
This article focuses on the impacts of a program designed to prepare elementary classroom teachers to mentor preservice teachers for effective science instruction. The mentor preparation program was grounded in research on effective science instruction and learning-focused mentoring. The goals of the mentoring professional development were to (a)…
Descriptors: Models, Program Effectiveness, Mentors, Elementary Education
Hutchison, Amy; Evmenova, Anya S. – Intervention in School and Clinic, 2022
States increasingly are adopting computer science standards to help students develop coding and computational thinking skills. In an effort to support teachers in introducing computer science content to their students with high-incidence disabilities, a new model, computer science integration planning plus universal design for learning (CSIP+),…
Descriptors: Computer Science Education, Students with Disabilities, Access to Education, Computation
Zhong, Baichang; Xia, Liying; Su, Siyu – Education and Information Technologies, 2022
One of the aspects of programming that novices often struggle with is the understanding of abstract concepts, such as variables, loops, expressions, and especially Boolean operations. This paper aims to explore the effects of programming tools with different degrees of embodiment on learning Boolean operations in elementary school. To this end, 67…
Descriptors: Programming Languages, Programming, Novices, Elementary Education
Günbatar, Mustafa Serkan; Bakirci, Hasan – Education and Information Technologies, 2019
The aim of the study is to examine the Science, Technology, Engineering and Mathematics (STEM) teaching intention of science and primary school pre-service teachers in terms of Computational Thinking (CT) skill, gender, grade level, daily computer usage, internet usage, smartphone usage, and the department variables. The study employs the…
Descriptors: STEM Education, Intention, Computation, Thinking Skills
Setiani, Rahyu; Sanjaya, I Gusti Made; Jatmiko, Budi – International Journal of Instruction, 2019
The ARICESA model was designed to improve learning motivation and understanding of student concepts. This study aims to develop a valid, practical, and effective ARICESA model to improve learning motivation and conceptual understanding of science teacher pre-service elementary school. The model was developed using the Plomp design with a…
Descriptors: Learning Motivation, Student Attitudes, Models, Foreign Countries
Rangasammy, Godfrey – ProQuest LLC, 2017
Innovative and ambitious efforts are taking place to implement the new vision for science education--the Next Generation of Science Standards (NGSS) in the United States. To implement this new vision, teachers must reconsider how they use their science content knowledge (SCK) and pedagogical content knowledge (PCK) in new ways that require…
Descriptors: Science Instruction, Outcomes of Education, Self Efficacy, Elementary Education
Ross, Danielle K.; Cartier, Jennifer L. – Journal of Science Teacher Education, 2015
Without the science content knowledge required to effectively teach this discipline, many elementary teachers struggle without the support of curriculum materials. Curriculum materials are often the main means by which these science practices and canonical knowledge are incorporated into lessons. As part of a 5-year longitudinal research and…
Descriptors: Preservice Teachers, Elementary Education, Science Instruction, Methods Courses
So, Winnie Wing-mui; Kong, Siu-cheung; Wan, Zhihong; Chen, Yu – Curriculum and Teaching, 2018
This study proposed frameworks for designing inquiry approaches with multimedia in science e-textbooks through exploring the extent and features of inquiry approaches with science topics in a digital textbook. Results revealed that the experiential, evidence-based and predict-observe-explain approaches are designed in 70% of the science topics.…
Descriptors: Inquiry, Models, Multimedia Instruction, Science Education
Hill-Cunningham, P. Renee; Mott, Michael S.; Hunt, Anna-Blair – School Science and Mathematics, 2018
STEM education in elementary school is guided by the understanding that engineering represents the application of science and math concepts to make life better for people. The Engineering Design Process (EDP) guides the application of creative solutions to problems. Helping teachers understand how to apply the EDP to create lessons develops a…
Descriptors: STEM Education, Elementary Education, Elementary School Students, Relevance (Education)