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Erik-Jan van Kesteren; Daniel L. Oberski – Structural Equation Modeling: A Multidisciplinary Journal, 2022
Structural equation modeling (SEM) is being applied to ever more complex data types and questions, often requiring extensions such as regularization or novel fitting functions. To extend SEM, researchers currently need to completely reformulate SEM and its optimization algorithm -- a challenging and time-consuming task. In this paper, we introduce…
Descriptors: Structural Equation Models, Computation, Graphs, Algorithms
Man, Yiu-Kwong – International Journal of Mathematical Education in Science and Technology, 2020
A simple forward approach for solving linear Diophantine equations is presented, which does not involve using backward substitutions. It is suitable for teaching undergraduate students as an alternative to the backward substitution method commonly described in mathematics textbooks.
Descriptors: Problem Solving, Equations (Mathematics), Mathematics Instruction, Undergraduate Students
Ülker, Ezgi Deniz – Cypriot Journal of Educational Sciences, 2020
The ability of analysing and designing an algorithm is quite essential for computer science education. The students in the Analysis and Design of Algorithms (ADA) course are expected to be able to solve problems by choosing one of the proper design methods and to analyse the algorithm's performance in terms of various aspects. Instead of using…
Descriptors: Computer Science Education, Design, Mathematics, Programming
Shahbari, Juhaina Awawdeh; Tabach, Michal – Educational Studies in Mathematics, 2020
Mathematical models that are constructed through modeling activities should be appropriate for the situation at hand. In this study, we seek to monitor the modeling routes of different learners as well as their modeling sub-competencies in order to learn how these are related to the semiotic characteristics of the resulting mathematical models.…
Descriptors: Mathematical Models, Semiotics, Preservice Teachers, Mathematics Teachers
Hartmann, Christian; van Gog, Tamara; Rummel, Nikol – Applied Cognitive Psychology, 2020
Studies on the productive failure (PF) approach have demonstrated that attempting to solve a problem prepares students more effectively for later instruction compared to observing failed problem-solving attempts prior to instruction. However, the examples of failure used in these studies did not display the problem-solving-and-failing…
Descriptors: Failure, Problem Solving, Teaching Methods, Observation
Cross, Rod – Physics Education, 2020
A well known physics problem is to calculate the friction forces required to support a ladder against a wall. A more tractable problem is to calculate the friction forces needed to support an inclined beam on a ball or a cylinder. In the latter case there are three rather than two points of sliding support. Measurements and calculations are…
Descriptors: Physics, Science Instruction, Scientific Concepts, Science Experiments
Ott, Barbara – Educational Studies in Mathematics, 2020
The use of written or graphic representations is essential in mathematics. Graphic representations are mainly used and researched as instruments for problem solving. There is a gap in research for interventions that use learner-generated graphic representations as documents for reflection processes for promoting the development of children's…
Descriptors: Graphs, Word Problems (Mathematics), Problem Solving, Mathematics Skills
Tisdell, Christopher C. – International Journal of Mathematical Education in Science and Technology, 2020
Recently, Lima lamented on the 'time-consuming and tiresome' pedagogical nature of repeated integration by parts, throwing down the challenge of providing a pencil-and-paper solution to a related problem in a few seconds. Lima put forth a simple formula as an alternative. In this work, I offer a response to Lima's challenge and his formula.…
Descriptors: Teaching Methods, Mathematics Instruction, Mathematical Formulas, Problem Solving
Köymen, Bahar; O'Madagain, Cathal; Domberg, Andreas; Tomasello, Michael – Child Development, 2020
In collaborative problem solving, children produce and evaluate arguments for proposals. We investigated whether 3- and 5-year-olds (N = 192) can produce and evaluate arguments against those arguments (i.e., counter-arguments). In Study 1, each child within a peer dyad was privately given a reason to prefer one over another solution to a task. One…
Descriptors: Young Children, Persuasive Discourse, Evaluative Thinking, Problem Solving
Molad, Osnat; Levenson, Esther S.; Levy, Sigal – Educational Studies in Mathematics, 2020
Promoting mathematical creativity is an important aim of mathematics education, which may be promoted by engaging students with open-ended tasks. Most studies of students' creativity have investigated the creativity of students working individually. This study concerns the mathematical creativity of students working as individuals as compared with…
Descriptors: Postsecondary Education, Mathematics Skills, Creativity, Geometry
Rivera-Figueroa, Antonio; Rivera-Rebolledo, José Manuel – International Journal of Mathematical Education in Science and Technology, 2020
Recently, Christopher C. Tisdell questions some claims and results that appear in our article [Rivera-Figueroa A, Rivera-Rebolledo JM. A new method to solve the second-order linear difference equations with constant coefficients. Int J Math Educ Sci Technol. 2016;47(4):636-649.] regarding the novelty and simplicity of a method to solve…
Descriptors: Equations (Mathematics), Mathematical Concepts, Mathematics Instruction, Problem Solving
Tawfik, Andrew A.; Graesser, Arthur; Gatewood, Jessica; Gishbaugher, Jaclyn – Educational Technology Research and Development, 2020
Many theories and models describe the various cognitive processes individuals engage in as they solve ill-structured problems. While diverse in perspectives, these theories and models uniformly agree that essential aspects of complex problem solving include iteration and inquiry. This paper further argues that an important yet overlooked component…
Descriptors: Inquiry, Active Learning, Taxonomy, Questioning Techniques
Shakya, Anup; Rus, Vasile; Venugopal, Deepak – International Educational Data Mining Society, 2023
Understanding a student's problem-solving strategy can have a significant impact on effective math learning using Intelligent Tutoring Systems (ITSs) and Adaptive Instructional Systems (AISs). For instance, the ITS/AIS can better personalize itself to correct specific misconceptions that are indicated by incorrect strategies, specific problems can…
Descriptors: Equal Education, Mathematics Education, Word Problems (Mathematics), Problem Solving
Childress, David; Jones, Charlotte – UNESCO International Institute for Educational Planning, 2023
As part of its project on instructional leaders at the middle tier, International Institute for Educational Planning (IIEP) and Education Development Trust (EDT) conducted case studies in five jurisdictions, exploring the professional practices and perceived impacts of instructional leaders and the enabling factors present in the systems in which…
Descriptors: Cooperative Learning, Middle Management, Professionalism, Educational Change
Wang, Karen D.; Cock, Jade Maï; Käser, Tanja; Bumbacher, Engin – British Journal of Educational Technology, 2023
Technology-based, open-ended learning environments (OELEs) can capture detailed information of students' interactions as they work through a task or solve a problem embedded in the environment. This information, in the form of log data, has the potential to provide important insights about the practices adopted by students for scientific inquiry…
Descriptors: Data Use, Educational Environment, Science Process Skills, Inquiry

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