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Showing 1 to 15 of 38 results Save | Export
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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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Matheus Almeida Bauer Zytkuewisz; Denis Ricardo Martins de Godoi; Amadeu Moura Bego – Journal of Chemical Education, 2023
This study's general theme revolves around practical work in chemical education, and its scope is the employment of a novel inquiry strategy combined with a new openness level. We investigate how the controlled positive error, a new device for inquiry activities developed by us, affects undergraduate students' experience of an experiment and…
Descriptors: Inquiry, Science Laboratories, College Science, Student Experience
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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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Blanquet, Estelle; Picholle, Eric – Contributions from Science Education Research, 2019
Testing the reproducibility of an experiment is considered a good practice in science, and the possibility to reproduce an experiment is a condition of its scientificity. We investigate the ability of children to consider a counterintuitive phenomenon as reproducible. The study involved 62 5-year-old children from 4 classes. They were presented…
Descriptors: Preschool Children, Science Experiments, Science Education, Replication (Evaluation)
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Rising, Zoe; Rising, Letty – Montessori Life: A Publication of the American Montessori Society, 2022
Science is the study of the world around us, and a scientist's job is to ask questions about the world and then experiment to find the answers. There is not a more natural scientist than the Elementary child, whose reasoning mind is eager to ask questions, investigate, and discuss and compare findings with their peers. In this article, the authors…
Descriptors: Elementary School Science, Science Instruction, Equal Education, Critical Thinking
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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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Öztürk, Feride Eda; Bayram, Zeki – Journal of Inquiry Based Activities, 2020
In this study, a new model termed as "Flexible Inquiry Based Science Teaching", which is developed using the framework of the inquiry approach is proposed. Science teachers (n=2) who participated in the study were instructed on the inquiry approach and their in-class activity applications were examined. The "electricity module"…
Descriptors: Science Instruction, Energy, Teaching Methods, Inquiry
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Graulich, Nicole; Schween, Michael – Journal of Chemical Education, 2018
Acquiring conceptual understanding seems to be one of the main challenges students face when studying organic chemistry. Traditionally, organic chemistry presents an extensive variety of chemical transformations, which often lead students to recall an organic transformation rather than apply conceptual knowledge. Strong surface level focus and…
Descriptors: Science Instruction, Scientific Concepts, Organic Chemistry, College Science
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McPherson, Heather – Teaching Science, 2018
In this article, the author describes a chemistry gas experiment that she developed with the intent of integrating inquiry and Problem-Based Learning (PBL). The lab activity follows the principles of Ambitious Science Teaching (AST). Teachers (1) engage students with important science ideas, (2) elicit students' ideas while making visible what…
Descriptors: Science Instruction, High Schools, Secondary School Science, Chemistry
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Williams, P. John; Nguyen, Nhung; Mangan, Jenny – Journal of Technology and Science Education, 2017
This paper presents a case study of a teacher's experience in implementing an inquiry approach to his teaching over a period of two years with two different classes. His focus was on using a range of information technologies to support student inquiry learning. Data was collected over the two year period by observation, interview and student work…
Descriptors: Science Instruction, Inquiry, Technology Uses in Education, Educational Technology
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Eisen, Laura; Marano, Nadia; Glazier, Samantha – Journal of Chemical Education, 2014
We describe an activity-based approach for teaching aqueous solubility to introductory chemistry students that provides a more balanced presentation of the roles of energy and entropy in dissolution than is found in most general chemistry textbooks. In the first few activities, students observe that polar substances dissolve in water, whereas…
Descriptors: Science Instruction, Chemistry, Science Experiments, Scientific Principles
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Wheeler, Lindsay; Bell, Randy – Science Teacher, 2012
Inquiry has a reputation for being a great way for students to learn but difficult for teachers to implement. It does not have to be that way. Inquiry comes in many forms, which can be adapted for any science classroom at any point in the year for any level of student. In this article the authors describe how to help chemistry students develop a…
Descriptors: Chemistry, Inquiry, Science Instruction, Teaching Methods
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Song, Pengfei – Journal of Technology and Science Education, 2014
Non-major students taking science courses to fulfill degree requirements may show low interest in traditional lecture-based classrooms. While professors may try to incorporate hands-on activities to the classroom to foster enthusiasm, the development of a low-cost, low-hazard scienitfic activity that engages students can be challenging. Moreover,…
Descriptors: Science Instruction, Teaching Methods, Nonmajors, Program Effectiveness
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Supasorn, Saksri – Chemistry Education Research and Practice, 2015
This study aimed to develop the small-scale experiments involving electrochemistry and the galvanic cell model kit featuring the sub-microscopic level. The small-scale experiments in conjunction with the model kit were implemented based on the 5E inquiry learning approach to enhance students' conceptual understanding of electrochemistry. The…
Descriptors: Grade 12, Cytology, Science Experiments, Energy
Bumbacher, Engin; Salehi, Shima; Wierzchula, Miriam; Blikstein, Paulo – International Educational Data Mining Society, 2015
Studies comparing virtual and physical manipulative environments (VME and PME) in inquiry-based science learning have mostly focused on students' learning outcomes but not on the actual processes they engage in during the learning activities. In this paper, we examined experimentation strategies in an inquiry activity and their relation to…
Descriptors: Physics, Science Instruction, College Students, Predictor Variables
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