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Amber Simpson; Jing Yang; Adam Maltese – Journal of Pre-College Engineering Education Research, 2024
Research has consistently highlighted the importance of promoting child-parent interactions. In this essay, we describe the development of MAKEngineering kits that provide collaborative learning experiences for children in Grades 2-6 to engage in engineering design tasks with members of their families in their home environment. First, we present…
Descriptors: Instructional Design, Engineering Education, Cooperative Learning, Elementary School Science
Jhon Holguin-Alvarez; Juana Cruz-Montero; Jenny Ruiz-Salazar; Raquel Leonor Atoche Wong; Irene Merino-Flores – Contemporary Educational Technology, 2025
The application of gamification methods is still complex for most Latin American teachers who apply gamified pedagogies. Many confuse their nature with cognitivist classes that are totally confusing when using gamified tools for active learning of their students. The background information states the reduction of academic obstacles for students to…
Descriptors: Feedback (Response), Gamification, Cognitive Processes, Educational Technology
Mulligan, Joanne; Kirk, Melinda; Tytler, Russell; White, Peta – Australian Primary Mathematics Classroom, 2021
In this article the authors provide an overview of the Interdisciplinary Mathematics and Science project conducted in Grades 1 to 6 in four Australian schools. The project teachers implemented an enquiry-based pedagogical model through 12 interrelated topics. This paper details how a range of mathematics and science concepts can be effectively…
Descriptors: Foreign Countries, Interdisciplinary Approach, Mathematics Instruction, Elementary School Mathematics
Drayton, Brian; Bernstein, Debra; Schunn, Christian; McKenney, Susan – Science Education, 2020
This study examines and compares how developers designed two primary science curricula to support teacher adaptation and enable use of innovative materials at scale. The two cases--"Literacy Science" (a science and literacy curriculum for grades 2-5) and "Science as Inquiry" (a curriculum focused on matter for grades 3-5)--were…
Descriptors: Elementary School Science, Science Curriculum, Curriculum Development, Literacy Education
Zakharov, Wei; Strobel, Johannes; Diefes-Dux, Heidi A. – International Journal of Research in Education and Science, 2020
This study investigates the impact of an elementary engineering education teacher professional development program on student learning. The results show a significant increase in students' knowledge in science from pre- to post-test as well as in engineering design from grade two to grade four. Further, the study uses multilevel modeling to…
Descriptors: Academic Achievement, Engineering Education, Faculty Development, Social Capital
Grinnell, Sandie; Angal, Sharon – Science and Children, 2016
In a 2012 blog post, John Maeda discusses the idea that while science, technology, engineering, and mathematics (STEM) education plays an important role in innovation, limitations exist when we focus exclusively on STEM. Maeda advocates for the addition of the "A" for Art to the acronym, insisting that the arts promote the creativity and…
Descriptors: STEM Education, Interdisciplinary Approach, Art Education, Elementary Education
Grotzer, Tina A.; Solis, S. Lynneth; Tutwiler, M. Shane; Cuzzolino, Megan Powell – Instructional Science: An International Journal of the Learning Sciences, 2017
Understanding complex systems requires reasoning about causal relationships that behave or appear to behave probabilistically. Features such as distributed agency, large spatial scales, and time delays obscure co-variation relationships and complex interactions can result in non-deterministic relationships between causes and effects that are best…
Descriptors: Elementary School Students, Elementary School Science, Kindergarten, Grade 2
Fouad, Khadija E.; Masters, Heidi; Akerson, Valarie L. – Science & Education, 2015
Science lessons using inquiry only or history of science with inquiry were used for explicit reflective nature of science (NOS) instruction for second-, third-, and fourth-grade students randomly assigned to receive one of the treatments. Students in both groups improved in their understanding of creative NOS, tentative NOS, empirical NOS, and…
Descriptors: Elementary School Science, Elementary School Students, Science Instruction, Inquiry
Morgan, Emily; Ansberry, Karen – Science and Children, 2016
It's easy to see the connections between science, technology, engineering, art, and mathematics (STEAM) in daily life, but they may not be so obvious in the classroom. This month's lessons allow students to explore the components of STEAM through a favorite art supply, the crayon, and a beloved American tradition, the Macy's Thanksgiving Day…
Descriptors: STEM Education, Art Education, Freehand Drawing, Art
Louca, Loucas T.; Zacharia, Zacharias C. – Journal of Science Education and Technology, 2015
Despite the abundance of research in Modeling-based Learning (MbL) in science education, to date there is only limited research on MbL practices among K-6 novice modelers. More specifically, there is no information on how young/novice modelers' modeling enactments look so that researchers and educators have an idea of what should be expected from…
Descriptors: Elementary School Science, Science Education, Modeling (Psychology), Teaching Methods
Grotzer, Tina A.; Solis, S. Lynneth – Journal of Research in Science Teaching, 2015
Spatial discontinuity between causes and effects is a feature of many scientific concepts, particularly those in the environmental and ecological sciences. Causes can be spatially separated from their effects by great distances. Action at a distance, the idea that causes and effects can be separated in physical space, is a well-studied concept in…
Descriptors: Elementary School Science, Elementary School Students, Grade 2, Grade 4
Osterhaus, Christopher; Koerber, Susanne; Sodian, Beate – Frontline Learning Research, 2015
Experimentation skills are a central component of scientific thinking, and many studies have investigated whether and when primary-school children develop adequate experimentation strategies. However, the answers to these questions vary substantially depending on the type of task that is used: while discovery tasks, which require children to…
Descriptors: Elementary School Students, Experiments, Knowledge Level, Psychometrics
Hefty, Lukas J. – Teaching Children Mathematics, 2015
The National Council of Teachers of Mathematics' (NCTM's) "Principles and Standards for School Mathematics" (2000) outlines fi ve Process Standards that are essential for developing deep understanding of mathematics: (1) Problem Solving; (2) Reasoning and Proof; (3) Communication; (4) Connections; and (5) Representation. The Common Core…
Descriptors: Mathematics Instruction, Problem Solving, Mathematical Logic, Validity
Ciascai, Liliana; Dulama, Maria-Eliza – Acta Didactica Napocensia, 2013
The results of Romanian students at international comparative TIMSS and PISA tests have constantly proven to be unsatisfactory. The present paper aims at analyzing the school syllabi "Mathematics and Environment exploration", "Environmental Education" and "Natural Sciences" studied during primary education in Romania…
Descriptors: Foreign Countries, Achievement Tests, Science Process Skills, Elementary School Science
Wilcox, Jesse; Richey, Lindsey R. – Science and Children, 2012
Although most elementary students have had experiences with magnets, they generally have misconceptions about magnetism (Driver et al. 1994; Burgoon, Heddle, and Duran 2010). For example, students may think magnets can attract all metals or that larger magnets are stronger than smaller magnets. Students often confuse magnets with magnetic…
Descriptors: Physics, Elementary School Students, Misconceptions, Grade 2