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Hunegnaw, Tadesse; Melesse, Solomon – Cogent Education, 2023
This study evaluates the experimental tasks of the Ethiopian grade 12 chemistry textbook vis-à-vis coverage of the essential components of science process skills (SPSs) using content analysis. All the procedures in an experiment were analyzed using rubrics of the inquiry-based task analysis inventory (ITAI) instrument. This instrument was based on…
Descriptors: Foreign Countries, Grade 12, Science Instruction, Chemistry
A. Lynn Stephens – Journal of Research in Science Teaching, 2024
It is widely recognized that we need to prepare students to think with data. This study investigates student interactions with digital data graphs and seeks to identify what might prompt them to shift toward using their graphs as thinking tools in the authentic activity of doing science. Drawing from video screencast data of three small groups…
Descriptors: Graphs, Data, Interaction, Electronic Learning
Meelapsom, Rattapol; Rattanakaroonjit, Waranphat; Prakobkij, Akarapong; Malahom, Nutthaporn; Supasorn, Saksri; Ruangchai, Sukhum; Jarujamrus, Purim – Journal of Chemical Education, 2022
The present work describes a simple hands-on experiment kit for colorimetric quantification of ferric (III) ion (Fe[superscript 3+]) in an aqueous medium using anthocyanin extracted from "Ruellia tuberosa" L. as a green indicator. The extraction of a high amount of anthocyanin was easily accomplished by using only hot water instead of an…
Descriptors: Science Instruction, Chemistry, Hands on Science, Science Experiments
Bitzenbauer, Philipp – Physical Review Physics Education Research, 2021
We conducted a quasiexperimental study in order to investigate the effect of a teaching concept on quantum physics based on coincidence and correlation experiments with heralded photons on preuniversity students' conceptions of quantum physics (experimental group, N = 150). We compare the results with the traditional curriculum's effect (control…
Descriptors: Quantum Mechanics, Mechanics (Physics), Science Instruction, Scientific Concepts
Bitzenbauer, Philipp; Meyn, Jan-Peter – Physics Education, 2020
In this article, an approach to integrate contemporary quantum physics into secondary school teaching is presented. The Erlanger concept on quantum optics provides an experimental-based guideway to aspects of modern quantum physics. We avoid the traditional historical approach in order to overcome the lack of modern concepts of quantum physics. In…
Descriptors: Science Instruction, Secondary School Science, Quantum Mechanics, Mechanics (Physics)
Blikstein, Paulo; Gomes, July Silveira; Akiba, Henrique Teruo; Schneider, Bertrand – Technology, Knowledge and Learning, 2017
Technology is changing the way students interact with knowledge, and open-ended activities are one of the main types of tasks that students engage with in technology-rich environments. However, the amount of guidance needed to promote learning in these environments remains unknown. We explore this issue by focusing on the effects of step-by-step…
Descriptors: Teaching Methods, Educational Technology, Technology Uses in Education, Arousal Patterns
Braga, Marco; Guerra, Andreia; Reis, Jose Claudio – Science & Education, 2012
This paper evaluates the viability of using controversies in teaching. An educational project has been elaborated in which some historical-philosophical clashes were introduced into the classical syllabus of physics. The historical-philosophical controversy dealt with here, took place between the French physicists Biot and Ampere in the 19th…
Descriptors: Science History, Philosophy, Science Instruction, Physics
Arnold, Julia Caroline; Kremer, Kerstin; Mayer, Jürgen – International Journal of Science Education, 2014
Inquiry learning is a widely recognized method for fostering inquiry competence in science education. Nevertheless, there is discussion about how to best support students while working on inquiry tasks (in this case: experiments on causal relationships). To identify the kind of support students need in order to design experiments in upper grades,…
Descriptors: Inquiry, Active Learning, Science Instruction, Science Experiments
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
Scharfenberg, Franz-Josef; Bogner, Franz X. – International Journal of Science Education, 2010
Our research objective focused on monitoring students' mental effort and cognitive achievement to unveil potential effects of an instructional change in an out-of-school laboratory offering gene technology modules. Altogether, 231 students (12th graders) attended our day-long hands-on module. Within a quasi-experimental design, a treatment group…
Descriptors: Instructional Effectiveness, Efficiency, Difficulty Level, Cognitive Processes
Schouten, Peter; Parisi, Alfio; Downs, Nathan – Teaching Science, 2009
The measurement of solar UV under water is not a simple process. In the underwater environment the difficulty of obtaining useable data is greatly amplified due to the optically complicated and at times unpredictable nature of water itself. The following practical exercise designed for use in the Year 11 and Year 12 Physics classroom aims to…
Descriptors: Optics, Physics, Science Instruction, Secondary School Science
National Center for Education Statistics, 2012
Science education is not just about learning facts in a classroom--it's about doing activities where students put their understanding of science principles into action. That's why two unique types of activity-based tasks were administered as part of the 2009 National Assessment of Educational Progress (NAEP) science assessment. In addition to the…
Descriptors: Investigations, Student Evaluation, Science Tests, National Competency Tests
Kaberman, Zvia; Dori, Yehudit Judy – International Journal of Science and Mathematics Education, 2009
A new learning unit in chemistry, "Case-based Computerized Laboratories" (CCL) and Computerized Molecular Modeling" (CMM) was developed at the Technion. The CCL and CMM curriculum integrates computerized desktop experiments and molecular modeling with an emphasis on scientific inquiry and case studies. Our research aimed at…
Descriptors: Computer Uses in Education, Technology Integration, Educational Technology, Science Experiments
Dori, Yehudit J.; Sasson, Irit – Journal of Research in Science Teaching, 2008
The case-based computerized laboratory (CCL) is a chemistry learning environment that integrates computerized experiments with emphasis on scientific inquiry and comprehension of case studies. The research objective was to investigate chemical understanding and graphing skills of high school honors students via bidirectional visual and textual…
Descriptors: Graphs, Chemistry, Science Laboratories, Foreign Countries
Peer reviewedHanson, Richard H.; Watson, Fred H. – Journal of Chemical Education, 1986
Describes a two-week, non-resident course in chemistry offered by the University of Arkansas (Little Rock) for gifted and talented high school seniors. Provides the objectives of the program and brief descriptions of the classes that are held. Discusses the evaluation process and student evaluation results. (TW)
Descriptors: Academically Gifted, Chemistry, College School Cooperation, Course Descriptions

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