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Lu Cao; Polly K. Lai; Hongzhi Yang – Instructional Science: An International Journal of the Learning Sciences, 2024
This study explored the use of an innovative instructional approach called Productive Failure (PF) to design an educational game and its support. The study then examined the effects of two different types of instruction--PF vs. Direct Instruction (DI)--on learning genetics and relevant mathematical knowledge in a Game-Based Learning (GBL)…
Descriptors: Failure, Problem Solving, Genetics, Biological Sciences
Jonathan Robert Bowers – ProQuest LLC, 2024
To make sense of our interconnected and algorithm driven world, students increasingly need proficiency with computational thinking (CT), systems thinking (ST), and computational modeling. One aspect of computational modeling that can support students with CT, ST, and modeling is testing and debugging. Testing and debugging enables students to…
Descriptors: Troubleshooting, Thinking Skills, Computation, Computer Science Education
Cramer, Claes – Physics Education, 2022
The principle of relativity is of fundamental importance in practice when we are solving problems in physics since the axiom states that the result of any physical experiment is the same when performed with identical initial conditions relative to any inertial coordinate system. Hence, conceptual knowledge of coordinate systems is central in any…
Descriptors: Physics, Science Instruction, Secondary School Science, Scientific Principles
Elliott Ewell; Hailey Haglid; Emily Truszkowski; Clare Walicki; Patrick De Meulder; Matthew De Meulder; Theodore Stephens; Xun Zhang; Carina Trama; Ashli Hamilton; David Mo; John Wohner; Ryan Furrey; Michael Labowsky; Anthony Perry; Shu Hu; Hsuan Lillian Labowsky – Journal of Chemical Education, 2022
Does invention belong in the chemistry classroom? This article attempts to answer this question by describing how invention education first took root in a chemistry class at Ridgewood High School in Ridgewood, NJ, and then expanded to other students with diverse interests to find a solution to two worldwide problems: satisfying the need for safe…
Descriptors: High School Students, Chemistry, Intellectual Property, Problem Solving
Merga Dinssa Eticha; Adula Bekele Hunde; Tsige Ketema – Journal of Science Education and Technology, 2024
Learner-centered instructional practices, such as the metacognitive strategies scaffolding the problem-solving method for Biology instruction, have been shown to promote students' autonomy and self-direction, significantly enhancing their understanding of scientific concepts. Thus, this study aimed to elucidate the importance and procedures of…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Secondary School Teachers
Elevator Speech: Students' Discussions of Forces and Acceleration by Means of a Scale in an Elevator
Johansen, Astrid; Bungum, Berit – LUMAT: International Journal on Math, Science and Technology Education, 2022
Students' challenges in learning mechanics are well documented from test situations, and group discussions are considered a fruitful way to meet these challenges. In this paper, we present a study from an authentic teaching setting where upper secondary students in groups solve the task of calculating the acceleration of an elevator by means of a…
Descriptors: Physics, Secondary School Students, Secondary School Science, Group Activities
Burkholder, Eric; Salehi, Shima; Sackeyfio, Sarah; Mohamed-Hinds, Nicel; Wieman, Carl – Physical Review Physics Education Research, 2022
Introductory calculus-based mechanics ("Physics 1") is an important gateway course for students desiring to pursue a science, technology, engineering, and mathematics (STEM) career. A major challenge with this course is the large spread in the students' incoming physics preparation. This level of preparation is strongly predictive of a…
Descriptors: Science Instruction, Mechanics (Physics), STEM Education, Calculus
Alfanisa Dwi Pramudia Wardani; Wirawan Fadly; Juan David Martinez Zayas – Journal of Science Learning, 2024
One of the points of science learning is to extend students' competence, counting problem-solving and analytical thinking. Conditions within the field appear that most students encounter trouble in fathoming relevant issues including the application of science concepts in real-world circumstances. This condition appears the require for compelling…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Science Instruction
Christensen, Dana; Lombardi, Doug – International Journal of Science Education, 2023
The purpose of this study was to quantitatively assess the integration of computational thinking with learning about biological evolution. Specifically, we investigated the effectiveness of a framework from a recently developed learning progression that emphasises the complex nature of teaching both computational thinking and biological evolution.…
Descriptors: Computation, Thinking Skills, Biology, Evolution
Avraham Merzel; Efraim Yehuda Weissman; Nadav Katz; Igal Galili – Physical Review Physics Education Research, 2024
Teaching quantum physics (QP) to high school (HS) students is gaining momentum, necessitating the exploration of various effective methods. Specifically, the research on quantitative teaching methods is still in its early stages. Understanding the power of Dirac notation (DN) in teaching is crucial for grasping the complexities of QP, as it…
Descriptors: High School Students, Secondary School Science, Science Education, Physics
Bissell, J. J.; Nagaitis, A. M. – Physics Education, 2022
Puzzles involving infinite networks of resistors are an engaging way for students to explore the idea of infinity and self-similarity in physics. Recently K Atkin has described one such puzzle, alongside a solution based on an equivalent finite network (2022 "Phys. Educ." 57 025015). Here we present a generalisation of this problem which…
Descriptors: Science Instruction, Physics, Puzzles, Scientific Concepts
Inbar Haimovich; Malka Yayon; Vered Adler; Hagit Levy; Ron Blonder; Shelley Rap – Journal of Chemical Education, 2022
Chemical escape rooms (ChEsRms) are educational games in which students use their brain, chemical knowledge, intuition, and a bit of luck to solve a mystery. At the Weizmann Institute, we have developed ChEsRms that are implemented by teachers in their classes. Since the COVID-19 pandemic stopped all the educational activities that took place in…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Science Activities
Gwo-Jen Hwang; Wen-Hua Chuang; Lu-Ho Hsia – Education and Information Technologies, 2024
Many scientific concepts and theorems are often abstract and challenging to relate to real-life problems, making it difficult for students to grasp them. Therefore, some researchers have attempted to enhance students' understanding by employing a contextual learning approach, which allows students to apply scientific knowledge to real situations…
Descriptors: Secondary School Students, Secondary School Science, Chemistry, Science Instruction
Mageswary Karpudewan; Noor Haslina Daman Huri – Journal of Chemical Education, 2023
Transforming the chemistry curriculum to an interdisciplinary perspective is essential for preparing students to meet interdisciplinary career demands and to brace themselves for the challenges of complex environmental and health issues. The study introduces four interdisciplinary electrochemistry STEM-lab activities as an alternative to the…
Descriptors: Interdisciplinary Approach, Science Instruction, Teaching Methods, Chemistry
Gojkovic, Ljubomir; Malijevic, Stefan; Armakovic, Stevan – Physics Education, 2020
In this work three examples of textbook circuits (resistor-capacitor, resistor-inductor and resistor-inductor-capacitor) have been modeled by employing the Euler method for the approximate solution of differential equations using algorithms implemented in the "Python" programming language. The aim of this work was to demonstrate how…
Descriptors: Science Instruction, Programming Languages, Teaching Methods, Mathematics