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Joana Conceição; Margarida Rodrigues – Mathematics Teacher: Learning and Teaching PK-12, 2024
Can You Build It? is an engaging Improve It! task that asks children to construct 3D shapes based on 2D depictions. Students' initial 3D creations often need revision, and as they build and re-build, they develop spatial relationships. This task was implemented in a first-grade class, connected to composing 3D geometric shapes to address the…
Descriptors: Mathematics Instruction, Geometric Concepts, Task Analysis, Grade 1
Tian, Mi; Luo, Tianrui – Early Child Development and Care, 2021
Symbolic representation refers to the use of physical or psychological processes to represent an object in a symbolic form. The present study investigated the development of children's symbolic representation using a new measure of children's block constructions. Ninety children (44 girls) in three age groups (3-4, 4-5, and 5-6 years) were…
Descriptors: Child Development, Architecture, Age Groups, Developmental Stages
Shechter, Taly; Eden, Sigal; Spektor-Levy, Ornit – Journal of Cognitive Education and Psychology, 2021
The objective of this study was to examine in what ways and to what extent preschoolers (5-6 years of age) manifest early Engineering Habits of Mind (EHoM) while engaging in an open-ended problem-solving construction task. The study comprised 228 children (120 boys and 108 girls). The study implemented a quantitative approach. The main research…
Descriptors: Preschool Children, Thinking Skills, Engineering, Problem Solving
Mills, Reece; Tomas, Louisa; Whiteford, Chrystal; Lewthwaite, Brian – Research in Science Education, 2020
Given that interest is associated with learning in educational research, understanding how its development can be supported in different learning contexts represents an important line of inquiry. In this study, we investigate the influence of the slowmation construction process on middle school students' interest in learning science and geology.…
Descriptors: Middle School Students, Student Interests, Student Attitudes, Science Education
Mitts, Charles – Technology and Engineering Teacher, 2013
The kite design activity described in this article is "hands-on" and provides students the opportunity to learn and apply STEM concepts in the process of building and flying a traditional diamond-shaped bowed kite from scratch. Important components of the activity are that students read and follow instructions and lessons about the…
Descriptors: Hands on Science, Design, Science Activities, Scientific Concepts
Barton, Keith C. – Theory and Research in Social Education, 2015
Elicitation techniques are a category of research tasks that use visual, verbal, or written stimuli to encourage participants to talk about their ideas. These tasks are particularly useful for exploring topics that may be difficult to discuss in formal interviews, such as those that involve sensitive issues or rely on tacit knowledge. Elicitation…
Descriptors: Questioning Techniques, Dialogs (Language), Interviews, Research Methodology
Levy, Sharona T. – International Journal of Technology and Design Education, 2013
The present study explored young 5-6-year old children's design-based learning of science through building working physical systems and examined their evolving conceptions of water flow. Fifteen children in an experimental group individually built water-pipe systems during four sessions that included end-of-session interviews. In addition,…
Descriptors: Young Children, Physics, Water, Hands on Science
Hackling, Mark; Barratt-Pugh, Caroline – Teaching Science, 2012
Australia's Early Years Learning Framework and leading international researchers argue for more intentional and purposeful teaching of science in the early years. This case study of exemplary practice illustrates intentional teaching of science materials which opened-up learning opportunities in literacy and number. Student-led hands-on…
Descriptors: Foreign Countries, Educational Change, Science Instruction, Peer Teaching
Hawkins, Harry – Tech Directions, 2004
This article describes how to construct a laser level. This laser level can be made using a typical 4' (or shorter) bubble level and a small laser point. The laser unit is detachable, so the bubble level can also be used in the conventional way. However, the laser level works better than a simple bubble level. Making this inexpensive device is an…
Descriptors: Lasers, Physics, Material Development, Design Requirements

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