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Linda Parish – Australian Primary Mathematics Classroom, 2023
Using mathematical modelling to solve problems appears in all year levels in the Australian Curriculum: Mathematics (v. 9), and is probably the most authentic way of teaching mathematics in context. However, the term mathematical modelling, even if familiar to teachers, may not be well understood or enacted confidently by teachers in their…
Descriptors: Mathematical Models, Teaching Methods, Mathematics Instruction, Elementary School Students
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Manu Kapur; Janan Saba; Ido Roll – npj Science of Learning, 2023
A frequent concern about constructivist instruction is that it works well, mainly for students with higher domain knowledge. We present findings from a set of two quasi-experimental pretest-intervention-posttest studies investigating the relationship between prior math achievement and learning in the context of a specific type of constructivist…
Descriptors: Mathematics Achievement, Constructivism (Learning), Teaching Methods, Failure
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Jamaal Rashad Young; Danielle Bevan; Miriam Sanders – International Journal of Education in Mathematics, Science and Technology, 2024
Since its first notable appearance in the "Second Handbook of Research on Mathematics Teaching and Learning," the phrase productive struggle has garnered support from a few, yet very influential, educational researchers. However, since the phrase was popularized by Hiroko Warshauer in 2011, examinations of the productive struggle have…
Descriptors: Mathematics Education, Mathematics Instruction, Problem Solving, Productive Thinking
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Marah Sutherland; David Furjanic; Joanna Hermida; Ben Clarke – Intervention in School and Clinic, 2024
This article illustrates how teachers can use number lines to support students with or at risk for learning disabilities (LD) in mathematics. Number lines can be strategically used to help students understand relations among numbers, approach number combinations (i.e., basic facts), as well as represent and solve addition and subtraction problems.…
Descriptors: Number Concepts, Arithmetic, Mathematics Instruction, Teaching Methods
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Monika Kamola; Francesca Granone; Kristin Grøsvik; Elin Reikerås – European Early Childhood Education Research Journal, 2024
Recent studies have shown that playing with coding toys enhances children's skills in STEM-subjects, especially problem-solving abilities. However, there is limited knowledge of early childhood education and care (ECEC) teachers' roles in facilitating children's problem-solving through coding-toy play activities and the high-quality pedagogical…
Descriptors: Foreign Countries, Coding, Toys, Problem Solving
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Gregory J. Crowther; Victoria L. VanHeel; Sasha D. Gradwell; Casey J. Self; Krista L. Rompolski – Advances in Physiology Education, 2024
The field of anatomy is often seen by nonanatomists as concerned primarily with the tasks of locating, naming, and describing structures; these tasks, in turn, are often assumed to require only lower-order cognitive skills (LOCSs), i.e., the Knowledge or Comprehension levels of Bloom's taxonomy. Many nonanatomists may thus believe that studying…
Descriptors: Human Body, Anatomy, Science Process Skills, Educational Objectives
Jenny R. Root; Alicia Saunders; Sarah K. Cox; Deidre Gilley; Amy Clausen – TEACHING Exceptional Children, 2024
Word problem solving is the premise for students to generalize their problem solving skills to real world problems. This includes students with autism spectrum disorder (ASD) and intellectual disability (ID). Modified Schema-based Instruction (MSBI) is one strategy that research has shown is effective for teaching students with ASD/ID to acquire…
Descriptors: Word Problems (Mathematics), Problem Solving, Students with Disabilities, Autism Spectrum Disorders
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Sudarsono; Kartono; Mulyono; Mariani, Scolastika – International Journal of Instruction, 2022
In STEM, learning skills and knowledge are learned simultaneously by students. Things that are different from the STEM aspect will require a connecting line that makes the four disciplines studied and applied simultaneously in learning. The utilization of local cultural characters in the STEM learning model is expected to provide solutions to the…
Descriptors: STEM Education, Problem Solving, Foreign Countries, Cultural Influences
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O'Dell, Jenna R.; Langrall, Cynthia W.; Cullen, Amanda L. – Mathematics Teacher: Learning and Teaching PK-12, 2022
In typical school mathematics, students experience problem solving in different ways. Sometimes students learn about problem solving by being introduced to different strategies, such as making a table or drawing a picture. Other times, problem solving is presented as a context for applying previously learned mathematics skills and concepts.…
Descriptors: Mathematics Skills, Problem Solving, Mathematics Instruction, Teaching Methods
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Cam, Emre; Kiyici, Mubin – Journal of Educational Technology and Online Learning, 2022
Because of their traditional programming structures that have user-hostile interfaces and complicated syntax, programming languages education doesn't catch students' attention and most of them find programming difficult and consider it as a job that only professionals can do. In order to minimalize the difficulty and drawback and help students…
Descriptors: Robotics, Programming, Problem Solving, Student Motivation
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Shin, Namsoo; Bowers, Jonathan; Roderick, Steve; McIntyre, Cynthia; Stephens, A. Lynn; Eidin, Emil; Krajcik, Joseph; Damelin, Daniel – Instructional Science: An International Journal of the Learning Sciences, 2022
We face complex global issues such as climate change that challenge our ability as humans to manage them. Models have been used as a pivotal science and engineering tool to investigate, represent, explain, and predict phenomena or solve problems that involve multi-faceted systems across many fields. To fully explain complex phenomena or solve…
Descriptors: Systems Approach, Thinking Skills, Computation, Models
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Laurent Cervoni; Julien Brasseur – International Association for Development of the Information Society, 2022
A Prolog program consists of a set of facts and rules rather than imperative statements, commonly used in most other programming languages. Therefore, the Prolog language is used to encode logic, from which the inference engine deduces logical conclusions. In this article, we argue that the use of the Prolog language can be useful to help students…
Descriptors: Teaching Methods, Mathematics Instruction, Problem Solving, Programming Languages
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Hossein Bozorgian; Esmat Shamsi – International Journal of Listening, 2025
Metacognitive instruction supports L2 listening learners to enhance their listening comprehension skill. To date, some review studies have investigated this topic; however, none of them has reported quantitative and qualitative findings in the form of a systematic literature review. This research addresses this gap by collecting, analyzing, and…
Descriptors: Metacognition, Listening Comprehension, Problem Solving, Databases
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Masatoshi Sato; Steven L. Thorne; Marije Michel; Theodora Alexopoulou; John Hellermann – Modern Language Journal, 2025
With a forward-looking and problem-solving mindset, this article aims to combine theoretical knowledge and empirical evidence from different schools of thought in the field of second language (L2) learning and teaching--namely, instructed second language acquisition, generative linguistics, and an ecological perspective that includes multiple…
Descriptors: Educational Policy, Second Language Learning, Second Language Instruction, Teaching Methods
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Blerina Çibukçiu – Discover Education, 2025
This study examines the impact of constructivist methods on students' performance in mathematical problem-solving, which is a significant issue in contemporary educational research. Traditional teaching methods, which are often oriented towards rote learning and memorization, have limitations in increasing students' performance in solving…
Descriptors: Constructivism (Learning), Mathematics Instruction, Teaching Methods, Mathematics Skills
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