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Monsurat M. Lawal; Tugba G. Kucukkal – Journal of Chemical Education, 2024
An undergraduate-level Computational Chemistry project was incorporated initially into a Physical Chemistry course and then into the laboratory curriculum in the subsequent application. Before the introduction of the project, the lectures covered quantum chemistry, spectroscopy, and kinetics while simultaneously including computational chemistry…
Descriptors: Chemistry, Science Instruction, Computation, Active Learning
Wu, Juana; Guo, Rong; Wang, Zhuo; Zeng, Rongqing – Interactive Learning Environments, 2021
Developing the problem-solving abilities of elementary school students has been recognized as an important educational objective. Science curricula, because of their practical and experimental characteristics, are thought to be an important way to develop students' problem-solving ability. The use of Virtual Reality (VR) technology in teaching…
Descriptors: Video Technology, Technology Integration, Computer Simulation, Science Activities
Bicer, Ali – International Journal of Education in Mathematics, Science and Technology, 2021
The purpose of this systematic review is to reveal the research findings that suggest instructional practices to foster the creativity of students in mathematics. Although several studies have investigated the effects of various instructional practices influencing the mathematical creativity of students, little is known about how the findings of…
Descriptors: Educational Research, Mathematics Instruction, Instructional Effectiveness, Creativity
Segal, Ruti; Stupel, Moshe; Sigler, Avi; Jahangiril, Jay – International Journal of Mathematical Education in Science and Technology, 2018
In this paper we present the results of a study which was carried out in an inquiry-based teaching and learning environment with the use of 'what if not' methodology coupled with the integration of dynamic geometry software. The vast majority of the students reported that they perceived themselves as participants rather than spectators. Most of…
Descriptors: Inquiry, Active Learning, Geometry, Computer Software
Koyunlu Unlu, Zeynep; Dokme, Ilbilge – Journal of Education in Science, Environment and Health, 2020
The general aim of this action research was to offer ways of making science and technology education more effective and solving problems in the related field. The specific purpose was to determine how inquiry-based learning supported by instructional technologies improves students' achievement and develops their scientific inquiry skills. Taking…
Descriptors: Active Learning, Inquiry, Instructional Effectiveness, Technology Integration
Schmidt, Alexandra; Williamson-Kefu, Majon – Australian Primary Mathematics Classroom, 2020
This article explores the benefits of using digital technology to support and enhance students' understanding during mathematical inquiry. The use of digital technologies enabled students to focus on the problem-solving aspects of the task such as how to compare and represent the data effectively.
Descriptors: Technology Integration, Elementary School Mathematics, Grade 6, Mathematics Instruction
Disbudak, Ozge; Akyuz, Didem – International Journal for Technology in Mathematics Education, 2019
Concrete manipulatives and dynamic geometry software (DGS) are both commonly used for geometry education in elementary and middle schools. This study sets out to understand which of the two approaches was better in improving the conceptual understanding of quadrilaterals for fifth graders. A pre-/post-test design was conducted in which the same…
Descriptors: Instructional Effectiveness, Mathematics Instruction, Mathematics Achievement, Geometric Concepts
Mills, Kelly; Seligman, Eileen; Ketelhut, Diane Jass – Science Teacher, 2017
The Idea Bank provides tips and techniques for creative teaching, in about 1,000 words. For this article, the authors analyzed 93 educational applications (apps) that have the potential to help students meaningfully engage in the science practices outlined in the Next Generation Science Standards. Some of the ways teachers can use these apps in…
Descriptors: Science Instruction, Educational Technology, Technology Uses in Education, Computer Oriented Programs
Eddy, Colleen M.; Pratt, Sarah S.; Green, Cheyenne N. – Mathematics Teacher, 2018
Have you ever considered how technology could facilitate reasoning and sense making of systems of linear inequalities? In this article, the authors share how to use Google® Maps® and Desmos to achieve this and provide students with opportunities to access mathematics as they build a more formalized understanding. Using an inquiry-based approach,…
Descriptors: Maps, Mathematics Instruction, Mathematical Concepts, Inquiry
Turner, Elizabeth T. – International Journal of Adult Vocational Education and Technology, 2012
There is a significant divide between what students want and what students receive in the classroom. Students increasingly lack interest and motivation to participate and learn. Instructional practices within and across schools vary widely, creating inconsistencies. Teachers' instructional plans may put content and curricular needs above…
Descriptors: Student Needs, Active Learning, Student Projects, Critical Thinking
Meyers, Coby; Molefe, Ayrin; Brandt, Chris – Society for Research on Educational Effectiveness, 2015
Despite years of implementing standards-based accountability systems, many teachers today lack the necessary preparation to develop standards-based instructional strategies and to inform decisions utilizing student assessments. The eMINTS ("Enhancing Missouri's Instructional Networked Teaching Strategies") National Center at the…
Descriptors: Accountability, Educational Strategies, Educational Technology, Professional Development
Kim, Minchi C.; Hannafin, Michael J. – Instructional Science: An International Journal of the Learning Sciences, 2011
In response to the calls to improve and deepen scientific understanding and literacy, considerable effort has been invested in developing sustainable technology-enhanced learning environments to improve science inquiry. Research has provided important guidance for scaffolding learning in mathematics and science. However, these reports have…
Descriptors: Evidence, Classroom Research, Grade 6, Scaffolding (Teaching Technique)
Levin-Goldberg, Jennifer – Journal of Instructional Research, 2014
Over the last decade, WebQuests have grown in popularity in educational environments. In order to effectively implement a WebQuest in the classroom, best pedagogical practices must be employed; however, these best WebQuest practices should reflect the exigent 21st century skills students need to be successful, productive members of the global…
Descriptors: Best Practices, Classroom Techniques, Teaching Methods, Skill Development
Kim, Minchi C.; Hannafin, Michael J. – Computers & Education, 2011
With the expanding availability and capability of varied technologies, classroom-based problem solving has become an increasingly attainable, yet still elusive, goal. Evidence of technology-enhanced problem-solving teaching and learning in schools has been scarce, understanding how to support students' problem solving in classroom-based,…
Descriptors: Problem Solving, Scaffolding (Teaching Technique), Theory Practice Relationship, Science Instruction
Johnson, L.; Adams Becker, S.; Estrada, V.; Freeman, A. – New Media Consortium, 2014
"The NMC Horizon Report" series is the most visible outcome of the New Media Consortium (NMC) Horizon Project, an ongoing research effort established in 2002 that identifies and describes emerging technologies likely to have a large impact on teaching, learning, research, or creative expression within every sector of education in some 65…
Descriptors: Technology Uses in Education, Educational Technology, Elementary Secondary Education, Technological Advancement
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