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Kym Fry; Judith Hillman; Rhonda Horne; Elizabeth Rasmussen – Mathematics Education Research Group of Australasia, 2024
The revised Australian curriculum presents a new emphasis in primary schools on the process of Mathematical Modelling. A modelling focus brings close attention to confidence and capability with a potentially new problem-solving process, associated language, and pedagogical processes. This paper presents a Year 4 classroom modelling experience that…
Descriptors: Foreign Countries, Elementary School Mathematics, Elementary School Students, Mathematics Instruction
Wu, Ting-Ting; Liu, Wei-Shan – Educational Technology & Society, 2022
Innovation in the design of curricula is widely discussed. Innovative curricula expose students to a diverse range of learning environments and prompt them to ask questions, stimulating their creativity and allowing them to develop a sense of initiative and to hone their problem-solving skills and ability to apply knowledge to practice. The…
Descriptors: Instructional Effectiveness, Toys, Authentic Learning, Creative Thinking
Kristin Zorn; Kym Fry; Kevin Larkin; Peter Grootenboer – Mathematics Education Research Group of Australasia, 2024
Problems presented in mathematics classrooms often focus on routine tasks with students practicing mathematical techniques demonstrated by the teacher. However, this does not reflect the problem-solving process in the real world, and students often find it difficult to connect school mathematics with authentic contexts. This paper discusses…
Descriptors: Problem Solving, Mathematics Instruction, Video Technology, Teaching Methods
Nemiro, Jill E. – Educational Studies, 2021
School robotics programmes help students learn science and maths curriculum and acquire needed social skills, such as collaboration. The aim of this observational study was to compare the level of seven variables indicative of student collaborative behaviour (focus, effort/contribution, communication, problem-solving, engagement in inquiry,…
Descriptors: Cooperation, Student Behavior, Elementary School Students, Robotics
Jonathan Brown; Erin Turner; Delia Sotelo Fierros – Mathematics Teacher: Learning and Teaching PK-12, 2025
Mathematical modeling involves using mathematics to represent, analyze, and make predictions or decisions about real- world situations. Garfunkel and Montgomery (2016) elaborate on six components of the mathematical modeling process, including identifying the problem, making assumptions and identifying variables, doing the math, analyzing and…
Descriptors: Mathematical Models, Mathematics Instruction, Teaching Methods, Problem Solving
Dolapcioglu, Sevda; Doganay, Ahmet – International Journal of Mathematical Education in Science and Technology, 2022
The aim of this study was to examine how fifth grade students' critical thinking and problem-solving skills can be developed using practices based on Newman and Weglage's (1993. Five standarts for authentic instruction. "Educational Leadership," 50(7), 8-12) authentic learning standards ("high-order thinking," "depth of…
Descriptors: Critical Thinking, Thinking Skills, Mathematics Instruction, Teaching Methods
Amy Been Bennett; Julia Aguirre; Erin E. Turner; Elzena McVicar; Erin Carll – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
Mathematical modeling is a process in which students investigate authentic problems and everyday situations using mathematics. In doing so, they bring their multiple mathematical knowledge bases and cultural funds of knowledge into their solution strategies. During a task called "Abuelo's Birthday", 297 students in grades 3-5 decided how…
Descriptors: Mathematical Models, Teaching Methods, Elementary School Students, Cultural Background
Jessica F. Cantlon; Katherine T. Becker; Caroline M. DeLong – Journal for STEM Education Research, 2024
STEM experiences that capture students' curiosity have a unique role in inspiring awe in science, enculturing science engagement, and recruiting students to pursue STEM careers. Here, we present a unique interdisciplinary STEM experience for elementary school students that teaches them to write computer code to test primate intelligence at a zoo…
Descriptors: Authentic Learning, Interdisciplinary Approach, STEM Education, Elementary School Students
Feille, Kelly; Wildes, Annie; Pyle, Janet; Marshall, Jessica – Science and Children, 2021
At a time when changes in standards and curriculum compound the pressures of fifth-grade state testing, the authors wanted to find an engaging way to involve students in authentic science and engineering. Rather than put their efforts into a traditional science fair that would inevitably lead to inequitable input by parents and students alike,…
Descriptors: Engineering Education, Grade 5, Elementary School Students, Science Education
Sun, Fu-Rong; Pan, Long-Fei; Wan, Rong-Gen; Li, Hui; Wu, Shu-Jing – Interactive Learning Environments, 2021
This research aims to explore the latent effect of elementary student engagement in a Spherical Video-based Virtual Reality (SVVR) environment for a school-based course on higher level competence development. Student engagement and higher level competence development were investigated using a valid sample of 324 students from five elementary…
Descriptors: Learner Engagement, Elementary School Students, Computer Simulation, Skill Development
Sekerci, Hanifi – Participatory Educational Research, 2021
It is difficult to inculcate the knowledge, skills, competence, quality and values that students need to gain through traditional approaches of teaching. Therefore, approaches of teaching which make students active in learning, which lead them to solve daily life problems and thus inculcate in them the upper order thinking skills need to be used…
Descriptors: Authentic Learning, Social Studies, Teacher Attitudes, Case Studies
Hwang, Wu-Yuin; Utami, Ika Qutsiati; Purba, Siska Wati Dewi; Chen, Holly S. L. – IEEE Transactions on Learning Technologies, 2020
This paper aimed to investigate the effect of a mobile app on mathematics learning in authentic contexts. Authentic contexts contain rich resources wherein students can use authentic objects as aid in advanced educational technology-assisted mathematics learning. We designed Ubiquitous-Fraction (U-Fraction), a mobile application that helps…
Descriptors: Instructional Effectiveness, Mathematics Instruction, Mathematics Achievement, Web Based Instruction
Cheng, Shu-Chen; Hwang, Gwo-Jen; Chen, Chih-Hung – British Journal of Educational Technology, 2019
Several previous studies have emphasized the importance of situating students in authentic learning or problem-solving contexts to enhance their learning performances. However, some challenges of situated learning have been stated, such as the lack of effective learning support or concrete objective design to improve students' learning engagement,…
Descriptors: Active Learning, Experiential Learning, Authentic Learning, Electronic Learning
Stagg, Bethan C. – Research in Science & Technological Education, 2020
Background: Children's interest in science is known to decline around the upper primary age, and botanical topics are unpopular with students. Drama in education has the potential to increase motivation and interest in school science. Purpose: The study examined the impact of immersive drama on knowledge about biological classification and…
Descriptors: Drama, Science Education, Plants (Botany), Elementary School Students
Lin, Xiao-Fan; Tang, Dandan; Lin, Xuanjun; Liang, Zhong-Mei; Tsai, Chin-Chung – International Journal of Science Education, 2019
This study aimed to explore the relationships between students' perceived learning practices and associated self-efficacies regarding mobile-assisted seamless science learning. The learning practices for mobile-assisted seamless science learning questionnaire was developed with three scales that denote learning supported by mobile technology.…
Descriptors: Self Efficacy, Telecommunications, Handheld Devices, Educational Technology
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