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Katharine Hubbard; Dominic Henri; Graham Scott; Howard Snelling; Elke Roediger – International Journal of Science Education, 2025
The COVID-19 pandemic posed significant challenges for practical teaching within the sciences. While many instructors adopted innovative alternatives to conventional practicals, many relied on digital approaches that did not give students hands-on experience. In this study we evaluate the use of 'at home' practical kits used in first year physics…
Descriptors: Foreign Countries, Undergraduate Students, Physics, Science Instruction
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Antonio Va´zquez-Lo´pez; Joaqui´n Artigas-Arnaudas; Javier Bedmar – Journal of Chemical Education, 2024
Herein we propose the implementation of an "escape room" activity to reinforce chemistry-related concepts for students of the Bachelor of Arts and Fashion. In this work, a combined online and offline activity is developed, easily adaptable to different environments. The online activity consists of 5 blocks of multiple-quiz questions…
Descriptors: Clothing Instruction, Plastics, Recycling, Problem Solving
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Wanda M. Valsecchi; Jose M. Delfino; Javier Santos; Santiago E. Faraj – Chemistry Education Research and Practice, 2024
When teaching STEM courses, it is important to introduce state-of-the-art techniques. Students need to learn how to conduct experiments, analyse data and choose the most effective approaches to address meaningful situations. Here we present the assessment of the implementation of a structured inquiry-based activity aimed at teaching students about…
Descriptors: Problem Based Learning, Learning Activities, Inquiry, Skill Development
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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
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Kallery, Maria; Sofianidis, A.; Pationioti, P.; Tsialma, K.; Katsiana, X. – International Journal of Early Years Education, 2022
Cognitive style differences, also known as 'empathizing' and 'systemizing' have been argued as one reason that may explain differences in children's motivation to learn science. Researchers claim that people with a 'systemizing' cognitive style are likelier to engage in science than those with an 'empathizing' cognitive style. As such, they…
Descriptors: Cognitive Style, Learning Motivation, Learner Engagement, Inquiry
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Thibaut, Dylan; Schroeder, Kersten T. – Biochemistry and Molecular Biology Education, 2020
With biochemistry forced to transition to remote-teaching online, the cooperative active learning and problem-solving normally in labs have been limited. With little ability to perform experiments with laboratory equipment, determining how to mimic the qualities integral to these labs in an online environment is necessary. We propose one possible…
Descriptors: Online Courses, COVID-19, Pandemics, Learning Activities
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Thornburgh, William; McFadden, Justin; Robinson, Brian – Science and Children, 2020
The "Next Generation Science Standards" ("NGSS") have placed an emphasis on the incorporation of engineering practices into K-12 science instruction. This article details a sequence of physical science lessons that would be part of teaching matter in the second-grade classroom. The goals of these lessons are: (1) to be hands-on…
Descriptors: Standards, Science Education, Engineering Education, Grade 2
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Ceuppens, S.; Deprez, J.; Dehaene, W.; De Cock, M. – Physics Education, 2018
To improve the teaching and learning materials for a curriculum it is important to incorporate the findings from educational research. In light of this, we present creative exercises and experiments to elicit, confront and resolve misconceptions in geometrical optics. Since ray diagrams can be both the cause and the solution for many…
Descriptors: Misconceptions, Optics, Creative Activities, Science Experiments
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Zhang, Xiaoyan; Ye, Ruifang; Hu, Fengxian; Zheng, Yitao; Gao, Shuhong; Wang, Qiyao; Bai, Yunpeng – American Biology Teacher, 2019
In recent years, accreditation standards for international engineering education have led to a dramatic rise in the use of outcome-based education at universities. In this system, enticing new undergraduate students to science and engineering, although challenging, is the first important step toward building students' career competencies. An…
Descriptors: Biotechnology, Undergraduate Students, Acceleration (Education), International Education
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Alpaslan, Muhammet Mustafa – Science Activities: Classroom Projects and Curriculum Ideas, 2017
In recent years, the integration of science and mathematics has become popular among educators because of its potential benefits for student learning. The purpose of this study is to introduce a two-day interdisciplinary lesson that brings science and mathematics concepts together, actively engaging students in working with percentages of the…
Descriptors: Integrated Activities, Learning Activities, Science Activities, Mathematics Activities
Gates, Richard W.; and others – Grade Teacher, 1970
Experimental design of packaging materials to withstand the impact of gravity by 5th grade students. (EJS)
Descriptors: Elementary Education, Learning Activities, Problem Solving, Science Activities
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Angseesing, J. P. A. – Journal of Biological Education, 1978
It is suggested that the work of Kammerer provides suitable material, in the form of case studies on which to base discussions of Lamarckism versus Darwinism. A set of structured problems is described as an example of possible problem-solving exercises, and further experiments to extend Kammerer's work are outlined. (Author/MA)
Descriptors: Biology, Case Studies, Evolution, Higher Education
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Sprung, Barbara – Young Children, 1996
Discusses the importance of science education in early childhood education and describes different approaches in incorporating physics into the preschool curriculum. Provides examples of experiments and encourages parent participation in children's science activities. Concludes by looking at science as an equity issue and emphasizes that science…
Descriptors: Child Development, Cognitive Development, Creative Thinking, Curriculum Design
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Halada, Richard S. – Physics Teacher, 1991
Demonstrates a laboratory to teach the concept of moment of inertia in which students are asked to identify four objects of equal mass sealed in unopenable containers by identifying the mass distribution of each object. Gives instructions to build an instrument to determine relative distribution of mass. (MDH)
Descriptors: Concept Formation, Cooperative Learning, High Schools, Instructional Materials
VanCleave, Janice – 1996
Science projects are a great way for students to learn more about science as they search for the answers to specific problems. This book offers guidance and provides ideas for students as they plan experiments, find and record information related to the problem, and organize data to find answers to the problem. The 20 topics in this book suggest…
Descriptors: Demonstrations (Science), Earth Science, Elementary Education, Elementary School Science
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