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Showing 1 to 15 of 112 results Save | Export
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A. Susan Gay; Jeanine Haistings; Jason L. Rucker; Lindsay Garcia; Megan Koenigsman – Mathematics Teacher: Learning and Teaching PK-12, 2024
The lesson described in this article was developed and taught by a team of mathematics educators and physical therapists, with the shared goal of broadening students' perception of how mathematics concepts are applied in the real world. This lesson gives students authentic experience with the Gait Speed Test as a physical therapist would…
Descriptors: Mathematics Instruction, Physical Therapy, Mathematics Activities, Authentic Learning
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Luecha Ladachart; Visit Radchanet; Wilawan Phothong; Ladapa Ladachart – Research in Science & Technological Education, 2024
Integrating science, technology, engineering, art, and mathematics (STEAM) education has become an emphasis in many countries' K-12 curricula. Design-based learning is an instructional approach that allows students to learn STEAM in more integrated ways than the traditional method. Using design thinking as a pedagogical framework, design-based…
Descriptors: Foreign Countries, Middle School Students, Grade 8, STEM Education
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Senol Namli – International Education Studies, 2024
This study investigates the problem-solving strategies employed by ninth-grade students when addressing symbolic and real-world contextual problems involving trigonometric ratios. Conducted with 46 ninth-grade students from a Turkish public high school, this research employed a worksheet consisting of six problems aligned with the Turkish…
Descriptors: Foreign Countries, High School Students, Grade 9, Trigonometry
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Sarah Hohrath; Sandra Aßmann; Heiko Krabbe; Maria Opfermann – European Journal of Psychology of Education, 2024
Non-formal learning settings like out-of-school labs provide students with insights into authentic learning situations. For example, in physics, students are engaged in experimenting as an authentic method. However, increasing the authenticity in experimentation can lead to overwhelming demands and hinder concept development and does not even need…
Descriptors: Foreign Countries, Grade 7, Grade 8, Nonformal Education
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Ying-Chih Chen; Jongchan Park; Jamie G. Rapkiewcz – American Biology Teacher, 2024
Productive struggle is a process in which students expend effort to grapple with perplexing problems and make sense of something that is not immediately apparent and beyond their current level of understanding and capacity. The experience encourages students to reflect on and restructure their existing knowledge toward a new understanding of…
Descriptors: Error Correction, Biology, Science Education, Teaching Methods
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Jeffrey Nordine; Marcus Kubsch; David Fortus; Joseph Krajcik; Knut Neumann – Journal of Research in Science Teaching, 2024
One reason for the widespread use of the energy concept across the sciences is that energy analysis can be used to interpret the behavior of systems even if one does not know the particular mechanisms that underlie the observed behavior. By providing an approach to interpreting unfamiliar phenomena, energy provides a lens on phenomena that can set…
Descriptors: Middle School Students, Energy, Scientific Concepts, Science Instruction
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Cirkony, Connie – International Journal of Science Education, 2023
To promote scientific literacy in school science, students need to learn key concepts in science, along with the nature of scientific knowledge and how it is generated. Ideally, this learning mirrors authentic scientific inquiry through student engagement in three key epistemic practices: flexibility and creativity, knowledge construction, and…
Descriptors: Science Instruction, Authentic Learning, Inquiry, Active Learning
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Aynas, Naciye; Aslan, Mecit – Educational Research Quarterly, 2021
This study aimed to analyze the effects of authentic learning practices -applied in science course- on academic success. A quasi-experimental design with pre-test and post-test control groups was used in the study. The data of the study were collected from 92 students (31 of those in the experimental group, 31 of those in the control-I group and…
Descriptors: Authentic Learning, Academic Achievement, Science Instruction, Instructional Effectiveness
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Alina Knabbe; Dominik Leiss; Timo Ehmke – International Journal of Science and Mathematics Education, 2025
Acquiring mathematical literacy requires students to apply mathematics in various real-world contexts. However, mathematics classes often provide brief, content-focused descriptions of reality-based tasks and tasks that describe the situation as more complex, closer to reality, are still lacking. Students with different sociodemographic…
Descriptors: High School Students, Grade 9, Grade 10, Mathematics Instruction
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Andersen, Martin Stolpe; Klingenberg, Sara; Petersen, Gustav Bøg; Creed, Peter A.; Makransky, Guido – Journal of Computer Assisted Learning, 2023
Background: Research suggests that head-mounted displays (HMD) can spark situational interest when they are used to provide science learning experiences that are not possible in traditional classroom settings. However, few studies have investigated the lasting effects of using HMDs in an authentic instructional intervention. Objectives: We…
Descriptors: Science Interests, Computer Simulation, Science Instruction, Authentic Learning
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Wienecke, Lisa-Marie; Leiss, Dominik; Ehmke, Timo – International Electronic Journal of Mathematics Education, 2023
This study investigates the extent to which student and task-related characteristics are associated with different types of note-taking and analyzes how task success depends on these elements. For this purpose, a sample of n=866 students (age: mean=13.99) completing two reality-based tasks as part of a paper and pencil test are considered. The…
Descriptors: Notetaking, Problem Solving, Mathematics Education, Authentic Learning
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
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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
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Goldberg, Sabrina; Dean, Jana; Portaankorva-Koivisto, Paivi – Journal of Global Education and Research, 2023
Two middle school educators earned a Fulbright Distinguished Award in Teaching fellowship. A Fulbright Finland Foundation inter-country travel grant provided the grantees with a unique opportunity to connect and collaborate at the University of Helsinki. Within this research, they described their inquiry experiences. The research included…
Descriptors: Mathematics Education, Awards, Fellowships, Middle School Teachers
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Kruse, Jerrid; Kent-Schneider, Isaiah; Voss, Sarah; Zacharski, Kinsey; Rockefeller, Molly – Science & Education, 2021
The study seeks to explore the extent to which students think pedagogical activities exemplifying various degrees of contextualization accurately reflect the work of scientists. Arguing for scaffolding across multiple degrees of contextualization, Clough (2006) reasoned that different contextualization plays different, but complimentary, roles in…
Descriptors: Student Attitudes, Scientific Principles, Science Activities, Authentic Learning
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