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No Child Left Behind Act 20011
Showing 1 to 15 of 347 results Save | Export
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Ümit Karabiyik – Problems of Education in the 21st Century, 2025
Mathematical problem-posing and modeling are essential skills in developing students' analytical thinking and problem-solving abilities. This study aims to examine correlation between 9th-grade students' problem-posing and mathematical modeling skills within the learning domain of numbers and algebra. Additionally, it evaluates students'…
Descriptors: Secondary School Students, Mathematical Concepts, Models, STEM Education
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Helena Rocha; Floriano Viseu; Sara Matos – European Journal of Science and Mathematics Education, 2024
This study was conducted while 9th grade students learn to solve inequalities and seeks to understand their approach to solving problems with a real-life context. Specifically, the aim is to understand: (1) What are the main characteristics of the students' approaches to the proposed problems? (2) What is the impact of the real context on the…
Descriptors: Problem Solving, Secondary School Students, Grade 9, Mathematics Education
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Mudaly, Vimolan; Narriadoo, Drisana – African Journal of Research in Mathematics, Science and Technology Education, 2023
Learners in general struggle when working with word problems. South African learners in particular have an added barrier owing to the many official languages that have been legislated. The South African Department of Basic Education, through its curriculum statements, envisages that problem solving will play a fundamental part in mathematics…
Descriptors: Grade 9, Foreign Countries, Secondary Education, Word Problems (Mathematics)
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Böswald, Valentin; Schukajlow, Stanislaw – ZDM: Mathematics Education, 2023
According to expectancy-value models, two important motivational constructs are task value and self-efficacy expectations. As students work intensively on mathematical problems in the classroom, teachers need the competence to judge whether students value solving the problem and how confident they are that they will succeed. However, not much is…
Descriptors: Mathematics Instruction, Problem Solving, Value Judgment, Self Esteem
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Treepob, Hongnapa; Hemtasin, Chulida; Thongsuk, Tawan – International Education Studies, 2023
Making predictions and observations, interpreting data, and drawing conclusions are all examples of scientific problem-solving procedures. The purpose of this research was 1) to develop scientific problem-solving skills by applying problem-based learning as a basis for students in grade 9 to pass the 70 percent requirement and 2) to study the…
Descriptors: Problem Solving, Problem Based Learning, Grade 9, Student Satisfaction
Bekin, Mahmut – ProQuest LLC, 2023
SWLD are often underperforming in STEM courses compared to their peers without learning difficulties. Furthermore, how students perform in 9th grade is found to be a strong predictor of high school success, graduation, enrolling, and persisting in college (Easton et al., 2017). The study aimed to investigate whether the use of PBA, a…
Descriptors: Students with Disabilities, Learning Problems, STEM Education, Grade 9
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Hartmann, Luisa-Marie; Krawitz, Janina; Schukajlow, Stanislaw – ZDM: Mathematics Education, 2021
As problem posing has been shown to foster students' problem-solving abilities, problem posing might serve as an innovative teaching approach for improving students' modelling performance. However, there is little research on problem posing regarding real-world situations. The present paper addresses this research gap by using a modelling…
Descriptors: Problem Solving, Problem Based Learning, Word Problems (Mathematics), Teaching Methods
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Rino Richardo; Siti Irene Astuti Dwiningrum; Rahayu Condro Murti; Ariyadi Wijaya; Robiatul Adawiya; Ivan Luthfi Ihwani; Martalia Ardiyaningrum; Anggi Erna Aryani – Journal of Education and Learning (EduLearn), 2025
The aim of this qualitative research is to describe the thinking process as a profile of students' mathematical computational thinking (CT) skills in terms of CT attitudes. The subjects in this study were 66 junior high school students in grade IX. There were three students taken by purposive sampling based on high, medium, and low CT attitude.…
Descriptors: Computation, Thinking Skills, Junior High School Students, Grade 9
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Rafi' Safadi; Nadera Hawa – Mathematics Teacher: Learning and Teaching PK-12, 2025
Graded Troubleshooting (GTS) is a powerful routine that teachers can use easily to engender students' metacognitive thinking and boost their understanding of mathematics concepts and procedures. This article describes a new GTS activity designed to prompt students to efficiently exploit worked examples when asked to diagnose erroneous examples…
Descriptors: Mathematics Education, Mathematics Instruction, Problem Solving, Troubleshooting
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Fadrik Adi Fahrudin; Cholis Sa'Dijah; Erry Hidayanto; Hery Susanto – Qualitative Research in Education, 2024
Reversibility thinking carried out mentally in mathematical operations has an important role in the process of understanding concepts as it involves developing a thinking process from beginning to end and from end to beginning. This qualitative research aims to describe students' reversible thinking processes in solving algebra problems,…
Descriptors: Foreign Countries, Grade 9, Mathematics Education, Algebra
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Eeva S. H. Haataja; Anniina Koskinen-Salmia; Visajaani Salonen; Miika Toivanen; Markku S. Hannula – Educational Studies in Mathematics, 2025
Teacher gestures support mathematics learning and promote student collaboration. Aligned with speech, gestures can help students to notice the important visual information of geometry tasks. However, students' visual attention to the teacher's gestural cues during collaborative problem solving remains a largely unexplored field in mathematics…
Descriptors: Nonverbal Communication, Cues, Attention, Cooperative Learning
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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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Biber, Abdullah Çagri – Cypriot Journal of Educational Sciences, 2020
Similar triangles in questions are usually given as separate, adjacent or overlapped. Furthermore, similarity types such as Side-Angle-Side (S.A.S.), Side-Side-Side (S.S.S.) and Angle-Angle (A.A.) are requested in the questions. Students have more trouble in other types of questions. The purpose of this study is to investigate the difficulties of…
Descriptors: Foreign Countries, High School Students, Grade 9, Geometric Concepts
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Philile Nobuhle Mathaba; Anass Bayaga; Daniela Tîrnovan; Michael J. Bossé – Journal on Mathematics Education, 2024
This research investigates errors and misconceptions among learners in algebraic education by utilizing Koch's error analysis method alongside the Structure of the Observed Learning Outcome (SOLO) taxonomy. The primary aim of the investigation is to discern the kinds of errors and cognitive stages demonstrated by Grade 9 students when engaged in…
Descriptors: Algebra, Misconceptions, Cognitive Ability, Mathematics Education
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Debora Lui; Deborah A. Fields; Yasmin B. Kafai – Cognition and Instruction, 2024
Debugging (or troubleshooting) provides a rich context to foster problem-solving. Yet, while we know much about some problems and strategies that novices face in programming on-screen, we know far less about debugging and troubleshooting in the context of physical computing, where coding issues may overlap with materially embedded problems. In…
Descriptors: Grade 9, STEM Education, Troubleshooting, Public Schools
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