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Melaku, Samuel; Dabke, Rajeev B. – Journal of Chemical Education, 2021
Interlocking toy building blocks (e.g., Lego) as chemistry teaching modules are presented. Interlocking building blocks were assembled on a baseplate to depict chemistry concepts of Lewis structures, chemical bonding, conjugate acid-base pairs, types of chemical reactions, irregularity in ionization energy trends, and the decay of a radioactive…
Descriptors: Toys, Teaching Methods, Undergraduate Students, Introductory Courses
Brecher, Kenneth; Cross, Rod – Physics Teacher, 2019
The PhiTOP® (or FTOP®) is a physics toy designed not only to act as a spinning top but also to appeal to the eye and to the scientifically curious mind.1 It is currently made in two versions, one from solid aluminum and the other solid brass. Each top is highly polished, and is elliptical in one cross section and circular in another. Its name…
Descriptors: Physics, Toys, Science Instruction, Teaching Methods
McAllister, Deborah A.; Glidden, Jared L.; Moyer, Peggy S.; Finch, Dorothy L. – Online Submission, 2022
This program focused on exploring science and mathematics content and pedagogy for elementary and middle grades, pre-service teachers, including those students preparing to teach in regular and exceptional education classrooms. A total of 31 individuals participated in one or more workshops. The activities contained within the Lego BricQ Motion…
Descriptors: Toys, Teaching Methods, Science Instruction, Scientific Concepts
Rajeev B. Dabke; Kerri L. Shelton; Samuel Melaku – Journal of Chemical Education, 2022
The use of interlocking toy building blocks (e.g., LEGO) as teaching modules with a focus on the topics in organic chemistry is presented. Interlocking building blocks were assembled on a baseplate to depict chemistry concepts of hydrogenation of alkenes, hydration of alkenes, Markovnikov's rule, cis and trans isomers, hydrogen bonding, optical…
Descriptors: Toys, Manipulative Materials, Teaching Methods, Organic Chemistry
Tiribilli, Bruno; Basso, Michele; Quercioli, Franco; Vassalli, Massimo – Physics Education, 2019
A mechanical model of light propagation helps to show that optical refraction is related to the speed of light and how it changes from one medium to another. A tricycle toy robot is used to realize the model. Left and right wheels independently change their speed (high or low) in response to the local color (white or black, respectively) of the…
Descriptors: Physics, Science Instruction, Optics, Light
Crujeiras-Pérez, Beatriz – Research in Science Education, 2022
This paper analyses the epistemic criteria that pre-service teachers consider when assessing the quality of a scientific investigation about friction force. The participants were 71 pre-service primary teachers working in 18 small groups of three or four participants (N = 18), who were enrolled in a science teaching methods course that addressed…
Descriptors: Epistemology, Preservice Teachers, Physics, Science Instruction
Lin, Henry J.; Lehoang, Jennifer; Kwan, Isabel; Baghaee, Anita; Prasad, Priya; Ha-Chen, Stephanie J.; Moss, Tanesha; Woods, Jeremy D. – Biochemistry and Molecular Biology Education, 2018
The 8 studs on a 2 × 4 Lego brick conveniently represent the outer shell of electrons for carbon, nitrogen, and oxygen atoms. We used Lego bricks to model these atoms, which are then joined together to form molecules by following the Lewis octet rule. A variety of small biological molecules can be modeled in this way, such as most amino acids,…
Descriptors: Toys, Molecular Biology, Science Instruction, Teaching Methods
Levanov, Alexander V.; Isaikina, Oksana Ya. – Journal of Chemical Education, 2020
Investigation of the kinetics of phosphorescence decay is a suitable learning task in studying the formal kinetics, and also properties of crystal phosphors. Kinetics of phosphorescence decay of crystal phosphors can be experimentally investigated at home as part of distance learning, using a conventional digital photo camera and a luminescent…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Distance Education
Dwivedi, Rajeev; Kumar, Arpan; Babu, Bharathy; Grandhi, Nipun; Meka, Rishi; Ahuja, Varun – Education Sciences, 2021
Finding context, examples, and ample hands-on experimentation is fundamental for understanding complex ideas in subjects such as science and math. Recent popularity of competitive robotics has become a catalyst in the development of DIY and hobby kits. Manufacturers have made available easy to work, re-configurable, and functional, structural…
Descriptors: Competition, Robotics, Class Activities, Skill Development
Peppler, Kylie; Wohlwend, Karen; Thompson, Naomi; Tan, Verily; Thomas, AnnMarie – Journal of Science Education and Technology, 2019
While circuitry lessons have traditionally been first introduced in late elementary school, they remain challenging conceptually for undergraduates in physics and engineering courses. Seeking to provide a higher quality and earlier introduction to circuitry learning for young children (ages 3-5), this paper investigates the affordances of…
Descriptors: Electronics, Physics, Preschool Education, Nursery Schools
de Jesus, V. L. B.; Sasaki, D. G. G. – Physics Teacher, 2018
Nowadays, in almost any country in the world, it is difficult to find a young person who has never played with, seen, or heard of the most famous toy in 2017: the fidget spinner. According to Wikipedia: "The fidget spinner is a toy that consists of a ball-bearing in the center of a multi-lobed flat structure made from metal or plastic…
Descriptors: Physics, Science Instruction, Toys, Scientific Concepts
Talbot, Christopher – School Science Review, 2018
A wide variety of chemical concepts and principles can be taught and demonstrated with LEGO bricks. They are an excellent teaching tool for reinforcing theoretical and abstract chemical concepts and for conveying structure--function relationships. They are ideal for conceptual learning or problem-based learning and a great way of stimulating…
Descriptors: Chemistry, Science Instruction, Toys, Teaching Methods
Mesquita, Lucas; Brockington, Guilherme; de Almeida, Pamella Aline; Truyol, Maria Elena; Testoni, André; Sousa, Paula, F. F. – Physics Education, 2018
In 2017, almost everywhere in the world, there was a boom in sales of fidget spinners. A toy that has 'multi-lobes' that can rotate freely from a thrust performed with the fingers. Thereby, we analysed the physics concepts that involved in this toy, such as angular and linear velocity. We did the analysis using the software Tracker, a laboratory…
Descriptors: Physics, Science Instruction, Teaching Methods, Toys
Westman, Brittainy; Whitworth, Brooke A. – Science and Children, 2019
PEOE (predict, explain, observe, explain) is a strategy that supports conceptual change (Dial et al. 2009). "Conceptual change" is a process through which students can change their understandings, ideas, or beliefs (diSessa 1993; Konicek-Moran and Keeley 2015). This style of lesson allows students to express their scientific ideas…
Descriptors: Science Instruction, Toys, Physics, Scientific Concepts
Preston, Christine – Teaching Science, 2018
If you think physics is only for older children, think again. Much of the playtime of young children is filled with exploring--and wondering about and informally investigating--the way objects, especially toys, move. How forces affect objects, including: change in position, motion, and shape are fundamental to the big ideas in physics. This…
Descriptors: Science Instruction, Teaching Methods, Toys, Physics