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Abby L. Manning; Bryanna N. Roos; Amber Flynn Charlebois; Kelly Hutchinson-Anderson; Stephen G. Tajc – Journal of Chemical Education, 2023
In an effort to further develop critical thinking and problem solving skills, a guided-inquiry-based, multioutcome organic chemistry synthesis and characterization experiment was developed. Students were provided with the protocol for a time-saving microwave-assisted acetanilide synthesis reaction from acetic anhydride and an unknown primary aryl…
Descriptors: Active Learning, Inquiry, Organic Chemistry, Laboratory Experiments
Bappa Karmakar; Rajappa Janyanaik Joga; Ramesh Thangavel; Dwipendra Thakuria; Ramie Husneara Begum – Journal of Chemical Education, 2023
The general assembly meeting of the United Nations Educational, Scientific and Cultural Organization (UNESCO) in 2015 adopted the 17 Sustainable Development Goals (SDGs) aimed at achieving a better and more sustainable world by 2030. Incorporating sustainable values through a series of pedagogical strategies into university curricula to help…
Descriptors: Laboratory Experiments, Sustainability, Science Education, Sustainable Development
Ramnarain, Umesh Dewnarain – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This mixed methods research explored the autonomous experiences of South African school students when participating in a science fair. A prominent global goal for school science education is for students to partake in scientific inquiry in order to acquire understanding of science concepts, the processes and skills of science, and the nature of…
Descriptors: Foreign Countries, Science Education, Personal Autonomy, Science Fairs
Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Education Sciences, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
Bustamante, Andres S.; Greenfield, Daryl B.; Nayfeld, Irena – Grantee Submission, 2018
Early childhood science and engineering education offer a prime context to foster approaches-to-learning (ATL) and executive functioning (EF) by eliciting children's natural curiosity about the world, providing a unique opportunity to engage children in hands-on learning experiences that promote critical thinking, problem solving, collaboration,…
Descriptors: Science Education, Critical Thinking, Persistence, Engineering Education
Sedwick, Victoria; Leal, Anne; Turner, Dea; Kanu, A. Bakarr – Journal of Chemical Education, 2018
The monitoring of metals in commercial products is essential for protecting public health against the hazards of metal toxicity. This article presents a guided inquiry (GI) experimental lab approach in a quantitative analysis lab class that enabled students' to determine the levels of aluminum in deodorant brands. The utility of a GI experimental…
Descriptors: Metallurgy, Chemistry, Science Education, Inquiry
Riley, Erin; Felse, P. Arthur – Chemical Engineering Education, 2017
Centrifugation is a major unit operation in chemical and biotechnology industries. Here we present a simple, hands-on laboratory experiment to teach the basic principles of centrifugation and to explore the shear effects of centrifugation using bacterial cells as model particles. This experiment provides training in the use of a bench-top…
Descriptors: Laboratory Experiments, Microbiology, Scientific Concepts, Chemistry
Lamb, Richard L.; Firestone, Jonah B. – International Journal of Science and Mathematics Education, 2017
Conflicting explanations and unrelated information in science classrooms increase cognitive load and decrease efficiency in learning. This reduced efficiency ultimately limits one's ability to solve reasoning problems in the science. In reasoning, it is the ability of students to sift through and identify critical pieces of information that is of…
Descriptors: Cognitive Processes, Difficulty Level, Science Process Skills, Computation
Elias, Ryan J.; Hopfer, Helene; Hofstaedter, Amanda N.; Hayes, John E. – Journal of Food Science Education, 2017
The human nose is a very sensitive detector and is able to detect potent aroma compounds down to low ng/L levels. These levels are often below detection limits of analytical instrumentation. The following laboratory exercise is designed to compare instrumental and human methods for the detection of volatile odor active compounds. Reference…
Descriptors: Olfactory Perception, Human Body, Science Laboratories, Laboratory Procedures
Dede, Chris; Grotzer, Tina A.; Kamarainen, Amy; Metcalf, Shari – Educational Technology & Society, 2017
Young people now must compete in a global, knowledge-based, innovation-centered economy; they must acquire not just academic knowledge, but also character attributes such as intrinsic motivation, persistence, and flexibility. To accomplish these ambitious goals, the National Research Council (2012) of the United States recommends the use of…
Descriptors: Teaching Methods, Middle School Students, Case Method (Teaching Technique), Vignettes
Katchevich, Dvora; Hofstein, Avi; Mamlok-Naaman, Rachel – Research in Science Education, 2013
One of the goals of science education is to provide students with the ability to construct arguments--reasoning and thinking critically in a scientific context. Over the years, many studies have been conducted on constructing arguments in science teaching, but only few of them have dealt with studying argumentation in the laboratory. Our research…
Descriptors: Science Education, Goal Orientation, Persuasive Discourse, Inquiry
Angelici, Gaetano; Nicolet, Stefan; Uda, Narasimha R.; Creus, Marc – Journal of Chemical Education, 2014
A laboratory experiment was designed for undergraduate students, in which the outcome of an easy single-step organic synthesis with well-defined conditions was not elucidated until the end of the exercise. In class, students predict and discuss the possible products using their knowledge of reaction mechanisms. In the laboratory, they learn how to…
Descriptors: Investigations, Science Education, Laboratory Experiments, Science Activities
Gobert, Janice D.; Kim, Yoon Jeon; Sao Pedro, Michael; Kennedy, Michael; Betts, Cameron – Grantee Submission, 2015
Many national policy documents underscore the importance of 21st century skills, including critical thinking. In parallel, recent American frameworks for K-12 Science education call for the development of critical thinking skills in science, also referred to as science inquiry skills/practices. Assessment of these skills is necessary, as indicated…
Descriptors: Learning Analytics, Science Education, Teaching Methods, 21st Century Skills
Kadayifci, Hakki; Yalcin-Celik, Ayse – Science Education International, 2016
This study examined the effectiveness of Argument-Driven Inquiry (ADI) as an instructional model in a general chemistry laboratory course. The study was conducted over the course of ten experimental sessions with 125 pre-service science teachers. The participants' level of reflective thinking about the ADI activities, changes in their science…
Descriptors: Inquiry, Teaching Models, Science Education, Science Instruction
Benzer, Elif – European Journal of Science and Mathematics Education, 2015
The students in working in laboratories in 21st century are preferred to take place as active participants in the experiments coming up with their own designs and projects by developing new ideas and problems rather than implementing the ones told and ordered by others during these experiments. The science teachers that would have the students…
Descriptors: Teacher Attitudes, Preservice Teachers, Research Design, Science Teachers