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Showing 1 to 15 of 159 results Save | Export
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Siu-Cheung Kong; Ming Lai; Yugen Li; Tak-Yue Dickson Chan – Education and Information Technologies, 2025
Concepts and practices are widely used to assess students' development in computational thinking (CT). However, less is known about how the development of each construct relates to that of the other. With a sample of 997 grade 6 students (average age = 11.43 at the beginning of the school year) from 14 primary schools, we examined the…
Descriptors: Computation, Thinking Skills, Elementary School Students, Student Development
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Heri Purnomo; Cholis Sa'dijah; Erry Hidayanto; Sisworo; Anita Adinda; Abdul Halim Abdullah – Mathematics Teaching Research Journal, 2023
Students have varying degrees of creativity and can develop their creative abilities in specific disciplines through various stimuli. Tracing the students' mathematical creativity is very important since creativity is not a gift for specific students; rather, all students have it. The participants of this study were 170 urban and rural middle…
Descriptors: Mathematics Education, Middle School Students, Foreign Countries, Problem Solving
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Charles Hohensee; Matthew Melville; Crystal Collier; Yue Ma – Journal for Research in Mathematics Education, 2025
This study examined "backward transfer," which we define as how students' ways of reasoning about previously encountered concepts are modified when learning about new concepts. We examined the backward transfer produced when students learned about quadratic functions. We were specifically interested in how backward transfer may vary for…
Descriptors: Mathematical Concepts, Mathematics Instruction, Prior Learning, Problem Solving
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Vanessa C. Zubieta; Minie Rose C. Lapinid – Mathematics Teaching Research Journal, 2024
This paper examined the ability of students to pose a problem in a free posing situation about sets in terms of the problem text, compatibility with mathematics principles, the problem type and structure, solvability, and mathematical complexity. Additionally, students were probed to determine the difficulties they encountered during the problem…
Descriptors: Mathematics Instruction, Problem Solving, Difficulty Level, Student Attitudes
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Sevilay Tavsan; Alaattin Pusmaz – International Journal of Mathematical Education in Science and Technology, 2023
The purpose of the present study is to examine the mathematical reasoning and the argumentation process of 7th-grade students during problem-solving and their views on this process. The case study method was employed in line with the purpose. The study group was determined by criterion sampling. Considering the criteria of students' scores on the…
Descriptors: Grade 7, Mathematics Education, Mathematical Logic, Problem Solving
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Yeliz Yazgan; Tugçe Kozakli Ülger – International Journal of Mathematical Education in Science and Technology, 2023
Problem posing is an indispensable constituent of mathematical thinking, which makes it a requisite ability for students of all grades. Therefore, pre- and in-service teachers should carry out problem posing activities of high quality, and having them pose non-routine problems may be a good way to make this happen. In this context, this study…
Descriptors: Problem Solving, Middle School Teachers, Mathematics Teachers, Mathematics Instruction
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Yu-Jen Sie; Kuen-Yi Lin – Journal of Baltic Science Education, 2025
Project-based learning (PBL) plays a critical role in fostering interdisciplinary integration within science, technology, engineering, and mathematics (STEM) education. However, its complexity often hinders students' ability to apply knowledge and solve problems, particularly in environments that lack psychological and cognitive support. This…
Descriptors: Resilience (Psychology), Positive Attitudes, STEM Education, Internet
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Lorien Cafarella; Lucas Vasconcelos – Education and Information Technologies, 2025
Middle school students often enter Computer Science (CS) classes without previous CS or Computational Thinking (CT) instruction. This study evaluated how Code.org's block-based programming curriculum affects middle school students' CT skills and attitudes toward CT and CS. Sixteen students participated in the study. This was a mixed methods action…
Descriptors: Middle School Students, Computation, Thinking Skills, Problem Solving
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Maria Nielsen Stewart; Noah Brown; Amber Candela; Samuel Otten; Zandra de Araujo – Mathematics Teacher: Learning and Teaching PK-12, 2025
The authors developed an instructional nudges as part of a larger research project. These instructional nudges are designed to be small but powerful changes to teachers' existing practices. Some instructional nudges focus on modifying tasks used in classrooms. In this article, the authors share Rate and Review. The goal of Rate and Review is to…
Descriptors: Teaching Methods, Mathematics Instruction, Persuasive Discourse, Task Analysis
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Jun Moriyama; Toshikazu Yamamoto; Hiroyuki Muramatsu; Hirotsugu Taguchi; Tadashi Ohtani; Ping Yang; Akira Kikuchi; Koushi Ueno; Yoichi Miyagawa; Shigekazu Watanabe – Design and Technology Education, 2024
It is considered important to clarify the role of technology and engineering education for evolving STEM/STEAM education in each country. However, in Japan, unlike in other countries, the focus on STEAM education began after 2018, so the relevance of STEAM education to technology and engineering education has not yet been fully discussed.…
Descriptors: Foreign Countries, Educational Technology, Technological Literacy, Engineering Education
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Kilicoglu, Elif; Kaplan, Abdullah – Athens Journal of Education, 2022
In this study, it was investigated whether it would be possible to observe abstraction processes of secondary school 7th graders using the Revised Bloom's Taxonomy. For this purpose, eight students participated in the study. The study was conducted at a state secondary school in Turkey. Purposeful sampling method was used in the selection of…
Descriptors: Secondary School Students, Grade 7, Mathematics Skills, Abstract Reasoning
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Nursel Ugur; Ünal Çakiroglu – International Journal of Technology in Education and Science, 2024
Facilitating Computer Science Unplugged (CS-unplugged) activities with reflective thinking activities lead students to in-depth reviews of their decisions and think of ways to solve the CS-unplugged problems. This study aims to evaluate the instruction enriched with reflective thinking activities to develop computational thinking skills. The study…
Descriptors: Reflection, Thinking Skills, Computer Science Education, Computation
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Meeli Rannastu-Avalos; Leo A. Siiman; Mario Mäeots – Journal of Baltic Science Education, 2025
Collaborative problem-solving (CPS) is increasingly essential in both scientific practice and modern education, yet remains difficult to embed authentically in classrooms. This study addressed that gap by integrating CPS into a ninth-grade biology lesson using a smartphone-based asymmetric simulation. The innovative three-phase instructional…
Descriptors: Cooperative Learning, Problem Solving, Telecommunications, Handheld Devices
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Kite, Vance; Park, Soonhye – Journal of Science Teacher Education, 2023
Recognizing that the power of computation has changed the practice of science, science education standards in a number of countries have included a call for the inclusion of computational thinking (CT) in K-12 science education. As CT is a relatively new construct, preparing inservice science teachers to implement CT-infused learning experiences…
Descriptors: Computation, Thinking Skills, Science Teachers, Teacher Attitudes
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Sandomierski, Therese; Martinez, Stephanie; Webster, Rebecca; Winneker, Anna; Minch, Devon – Preventing School Failure, 2022
Root Cause Analysis (RCA) has been recommended as a specific problem-solving approach for addressing disproportionate discipline outcomes. RCA differs from other problem-solving models through its in-depth analysis that draws from the perspectives of individuals who are impacted by the issue being addressed. When applied to disproportionate…
Descriptors: Discipline, Disproportionate Representation, Problem Solving, Data Use
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