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Ramon Mayor Martins; Christiane Gresse von Wangenheim; Marcelo Fernando Rauber; Jean Carlo Hauck – International Journal of Artificial Intelligence in Education, 2024
Although Machine Learning (ML) is found practically everywhere, few understand the technology behind it. This presents new challenges to extend computing education by including ML concepts in order to help students to understand its potential and limits and empowering them to become creators of intelligent solutions. Therefore, we developed an…
Descriptors: Artificial Intelligence, Information Technology, Technology Uses in Education, Computer Software
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Coskun, Mehmet; Koç, Yasemin – Psycho-Educational Research Reviews, 2021
The purpose of this study is to investigate the effect of augmented reality and mobile application supported instruction on students' academic achievement, attitude towards astronomy, anxiety and motivation towards learning science in the "Solar System and Beyond/Earth and Universe" units in seventh grade Science lesson. In the study,…
Descriptors: Computer Simulation, Computer Software, Handheld Devices, Technology Integration
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Chao, Jie; Xie, Charles; Massicotte, Joyce; Schimpf, Corey; Lockwood, Jeff; Huang, Xudong; Beaulieu, Craig – Science Teacher, 2018
As solar energy becomes increasingly affordable, many schools are considering installing new solar power systems. In this article, the authors present Solarize Your School, an engineering project that gives students the opportunity to design and evaluate solar power solutions for their own schools. This STEM project requires students to learn and…
Descriptors: Energy, Natural Resources, STEM Education, Student Projects
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Cai, Su; Chiang, Feng-Kuang; Sun, Yuchen; Lin, Chenglong; Lee, Joey J. – Interactive Learning Environments, 2017
Educators must address several challenges inherent to the instruction of scientific disciplines such as physics -- expensive or insufficient laboratory equipment, equipment error, difficulty in simulating certain experimental conditions. Augmented reality (AR) can be a promising approach to address these challenges. In this paper, we discuss the…
Descriptors: Computer Simulation, Simulated Environment, Science Instruction, Physics
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Eslinger, Eric; White, Barbara; Frederiksen, John; Brobst, Joseph – Journal of Science Education and Technology, 2008
This research addresses the effectiveness of an interactive learning environment, Inquiry Island, as a general-purpose framework for the design of inquiry-based science curricula. We introduce the software as a scaffold designed to support the creation and assessment of inquiry projects, and describe its use in a middle-school genetics unit.…
Descriptors: Instructional Design, Computer Software, Genetics, Inquiry
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Irving, Karen; Sanalan, Vehbi; Shirley, Melissa – Journal of Computers in Mathematics and Science Teaching, 2009
Case-study descriptions of secondary and middle school classrooms in diverse contexts provide examples of how teachers implement connected classroom technology to facilitate formative assessment in science instruction. Connected classroom technology refers to a networked system of handheld devices designed for classroom use. Teachers were…
Descriptors: Formative Evaluation, Computer Uses in Education, Physical Sciences, Science Instruction
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Stern, Luli; Barnea, Nitza; Shauli, Sofia – Journal of Science Education and Technology, 2008
The objective of this study was to evaluate the effect of a dynamic software simulation on the understanding of the kinetic molecular theory by 7th graders. Students in the control group (n = 62) studied a curricular unit that addressed the differences in arrangement and motion of molecules in the three phases of matter. The experimental group (n…
Descriptors: Kinetics, Computer Software, Grade 7, Gender Differences
Herman, Joan L.; Choi, Kilchan – National Center for Research on Evaluation, Standards, and Student Testing (CRESST), 2008
This article articulates a framework for examining the quality of formative assessment practice and provides empirical evidence in support of one of its components. Based on a study of middle school science, the study examines the accuracy of teachers' judgments of students' understanding and the relationship of such accuracy to middle school …
Descriptors: Formative Evaluation, Middle School Students, Secondary School Science, Student Evaluation
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Kademan, Robyn – Science Scope, 2005
One of the most beneficial uses for technology in the science classroom is data manipulation. During labs and other learning experiences, students can quickly put the data they collect into spreadsheets or databases. Then they can make comparisons, create graphs, draw conclusions, sort the data in new ways, and, ultimately, give their data…
Descriptors: Databases, Data Collection, Science Education, Spreadsheets
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Franklin, Teresa J. – Journal of Educational Technology, 2008
This paper presents the development of a 3-D virtual environment in Second Life for the delivery of standards-based science content for middle school students in the rural Appalachian region of Southeast Ohio. A mixed method approach in which quantitative results of improved student learning and qualitative observations of implementation within…
Descriptors: Middle School Students, Secondary School Science, Science Education, Computer Simulation
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Kali, Yael; Linn, Marcia C. – Elementary School Journal, 2008
Research has shown that technology-enhanced visualizations can improve inquiry learning in science when they are designed to support knowledge integration. Visualizations play an especially important role in supporting science learning at elementary and middle school levels because they can make unseen and complex processes visible. We identify 4…
Descriptors: Elementary School Science, Science Instruction, Visualization, Computer Uses in Education
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Zucker, Andrew A.; Tinker, Robert; Staudt, Carolyn; Mansfield, Amie; Metcalf, Shari – Journal of Science Education and Technology, 2008
The Technology Enhanced Elementary and Middle School Science II project (TEEMSS), funded by the National Science Foundation, produced 15 inquiry-based instructional science units for teaching in grades 3-8. Each unit uses computers and probeware to support students' investigations of real-world phenomena using probes (e.g., for temperature or…
Descriptors: Mathematical Models, Effect Size, Virtual Classrooms, Grade 7