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Erick H. Ramos-Rivas; Erick S. Vasquez-Guardado – Chemical Engineering Education, 2025
Students often struggle in calculating the Real Thermodynamic Properties (RTP) of pure substances, including enthalpy (H), entropy (S), specific volume (V), and internal energy (U). Project-Based Learning (PBL) offers an alternative instructional approach that integrates computational tools with inductive teaching methods. This study evaluates the…
Descriptors: Thermodynamics, Computation, Science Education, Student Projects
Tirpáková, Anna; Gonda, Dalibor; Wiegerová, Adriana; Navrátilová, Hana – Educational Studies in Mathematics, 2023
The presented article is dedicated to a new way of teaching substitution in algebra. In order to effectively master the subject matter, it is necessary for students to perceive the equal sign equivalently, to learn to manipulate expressions as objects, and to perceive and use transformations based on defining their own equivalences. According to…
Descriptors: Mathematics Instruction, Teaching Methods, Instructional Innovation, Mathematical Concepts
Jiang, Xina; Harteveld, Casper; Yang, Yuqin; Fung, Anthony; Huang, Xinyuan; Chen, Shihong – Educational Technology Research and Development, 2023
Computational thinking (CT) has become an important skill for the new generation, and CT teaching games have been introduced to lower the barriers that novices face in learning programming. However, despite the prevalence of and demand for these games, little is known about the effectiveness of their design or about the principles that are…
Descriptors: Literature Reviews, Design, Computation, Thinking Skills
Arik, Merve; Topçu, Mustafa Sami – Journal of Science Education and Technology, 2022
Studies maintain that computational thinking (CT) is associated with science content and scientific processes as well as with many disciplines. It is thought that designing teaching processes in which science and CT processes take place together makes science learning more meaningful. With this in mind, in this study, the researchers integrated…
Descriptors: Computation, Thinking Skills, Science Process Skills, Science Education
Zhang, Xiangling; Tlili, Ahmed; Guo, Junhong; Griffiths, David; Huang, Ronghuai; Looi, Chee-Kit; Burgos, Daniel – Journal of Educational Research, 2023
The lack of teachers and equipment is a major obstacle to the implementation of Computational Thinking (CT) in education, particularly for rural schools. Although CT education has been investigated for many years, less attention has been paid to lower primary schools in rural areas. This study contributes to filling this gap by investigating the…
Descriptors: Foreign Countries, Thinking Skills, Computation, Game Based Learning
Katai, Zoltan – Educational Technology Research and Development, 2020
We proposed to investigate whether properly calibrated e-learning environments can efficiently promote computational thinking of both sciences- and humanities-oriented people. We invited two groups of students (sciences- vs. humanities-oriented members) to participate in a six-stage learning session: to watch a folk-dance illustration (s1) and an…
Descriptors: Computation, Thinking Skills, Intellectual Disciplines, Instructional Design
Paliwal, Veena – Current Issues in Middle Level Education, 2018
Manipulatives have been found to be effective in increasing mathematics achievement when they are put to good use (Canny, 1984; Clements & Battista, 1990; Clements, 1999; Sowell, 1989; Suydam, 1984), but their use in mathematics instruction is not clear and it is often debated to be effective (Ball, 1992; McNeil & Jarvin, 2007). The…
Descriptors: Manipulative Materials, Preservice Teachers, Pedagogical Content Knowledge, Comprehension
Vieira, Camilo; Magana, Alejandra J.; García, R. Edwin; Jana, Aniruddha; Krafcik, Matthew – Journal of Science Education and Technology, 2018
Computational tools and methods have permeated multiple science and engineering disciplines, because they enable scientists and engineers to process large amounts of data, represent abstract phenomena, and to model and simulate complex concepts. In order to prepare future engineers with the ability to use computational tools in the context of…
Descriptors: Thermodynamics, Integrated Curriculum, Computation, Learning Modules
Mix, Kelly S.; Smith, Linda B.; Stockton, Jerri DaSha; Cheng, Yi-Ling; Barterian, Justin A. – Journal of Cognition and Development, 2017
Two experiments examined whether concrete models support place value learning. In Experiment 1 (N = 149), 7-year-olds were trained with either a) symbols alone or b) symbols and base-10 blocks. Children in both groups showed significant growth overall, but there were specific effects favoring one training type over another. Symbols-only training…
Descriptors: Symbols (Mathematics), Models, Number Concepts, Mathematics Instruction
Velázquez-Iturbide, J. Ángel; Castellanos, M. Eugenia; Hijón-Neira, Raquel – IEEE Transactions on Education, 2016
Recursion is one of the most difficult programming topics for students. In this paper, an instructional method is proposed to enhance students' understanding of recursion tracing. The proposal is based on the use of rules to translate linear recursion algorithms into equivalent, iterative ones. The paper has two main contributions: the…
Descriptors: Computer Science Education, Programming, Teaching Methods, Mathematics
Teaching an Application of Bayes' Rule for Legal Decision-Making: Measuring the Strength of Evidence
Satake, Eiki; Murray, Amy Vashlishan – Journal of Statistics Education, 2014
Although Bayesian methodology has become a powerful approach for describing uncertainty, it has largely been avoided in undergraduate statistics education. Here we demonstrate that one can present Bayes' Rule in the classroom through a hypothetical, yet realistic, legal scenario designed to spur the interests of students in introductory- and…
Descriptors: Bayesian Statistics, College Mathematics, Mathematics Instruction, Statistics
Hudson, Siobhan; Kadan, Sarah; Lavin, Karen; Vasquez, Tylita – Online Submission, 2010
The students of the targeted fourth, fifth, sixth, and ninth grade classes exhibited difficulties with number sense that interfered with understanding and recall of basic math facts. Evidence for the existences of the problem included teacher observation, test scores, and student and teacher surveys. The research participants included 42 children…
Descriptors: Intervention, Grades (Scholastic), Action Research, Observation

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