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Ristanto, Rizhal Hendi; Ahmad, Arin Sabrina; Komala, Ratna – Participatory Educational Research, 2022
Based on the development of education in Indonesia today, teachers still teach in ways that make students memorize lessons. A learning model is needed that can support students to think critically. One of the learning models that can support students to think critically is through guided discovery learning model with argument mapping. This study…
Descriptors: Critical Thinking, Thinking Skills, Environmental Education, Science Instruction
Suryanti; Widodo, Wahono; Budijastuti, Widowati – International Journal of Instruction, 2020
Developing science process skills in novice learners is not an easy task for teachers although these skills are essentially needed to solve problems and make decisions in real-life situation. This research is pre-test post-test control group design. Pre-test and post-test were administered to the students in the beginning and the end of the…
Descriptors: Discovery Learning, Teacher Guidance, Science Process Skills, Skill Development
Irmita, Luthfia; Atun, Sri – Journal of Turkish Science Education, 2018
The purpose of this study was to determine the effects of Technological Pedagogical and Content Knowledge (TPACK) approach to scientific literacy and social skills of students. The research is a quasi-experiment design of pretest and posttest control group. The research population were all students at 11th grade of natural science classes…
Descriptors: Technological Literacy, Scientific Literacy, Interpersonal Competence, Grade 11
Albright, Jessica C.; Beussman, Douglas J. – Journal of Chemical Education, 2017
Capillary electrophoresis is an important analytical separation method used to study a wide variety of samples, including those of biological origin. Capillary electrophoresis may be covered in the classroom, especially in advanced analytical courses, and while many students are exposed to gel electrophoresis in biology or biochemistry…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Laboratories
Lee, Christopher J.; Toven-Lindsey, Brit; Shapiro, Casey; Soh, Michael; Mazrouee, Sepideh; Levis-Fitzgerald, Marc; Sanders, Erin R. – CBE - Life Sciences Education, 2018
We sought to test a hypothesis that systemic blind spots in active learning are a barrier both for instructors--who cannot see what every student is actually thinking on each concept in each class--and for students--who often cannot tell precisely whether their thinking is right or wrong, let alone exactly how to fix it. We tested a strategy for…
Descriptors: Active Learning, Problem Solving, Discovery Learning, Misconceptions
Mistry, Nimesh; Fitzpatrick, Christopher; Gorman, Stephen – Journal of Chemical Education, 2016
A guided-inquiry experiment was designed and implemented in an introductory organic chemistry laboratory course. Students were given a mixture of compounds and had to isolate two of the components by designing a viable workup procedure using liquid-liquid separation methods. Students were given the opportunity to apply their knowledge of chemical…
Descriptors: Introductory Courses, Science Instruction, Teaching Methods, Problem Solving
Guron, Marta; Paul, Jared J.; Roeder, Margaret H. – Journal of Chemical Education, 2016
Although much of the scientific community concerns itself with ideas of a sustainable future, very little of this interest and motivation has reached the classroom experience of the average chemistry major, and therefore, it is imperative to expose students to these ideas early in their careers. The focus of most undergraduate chemistry curricula…
Descriptors: Chemistry, Science Instruction, Majors (Students), Sustainability
Keller, Valerie A.; Kendall, Beatrice Lin – Journal of Chemical Education, 2017
Science educators strive to teach students how to be well-rounded scientists with the ability to problem solve, anticipate errors, and adapt to unexpected roadblocks. Traditional organic chemistry experiments seldom teach these skills, no matter how novel or contemporary the subject material. This paper reports on the success of a quarter-long…
Descriptors: Organic Chemistry, Science Instruction, Science Experiments, Library Research
Evans, Hedeel Guy; Heyl, Deborah L.; Liggit, Peggy – Journal of Chemical Education, 2016
This biochemistry laboratory course was designed to provide significant learning experiences to expose students to different ways of succeeding as scientists in academia and foster development and improvement of their potential and competency as the next generation of investigators. To meet these goals, the laboratory course employs three…
Descriptors: Biochemistry, Science Instruction, Course Evaluation, College Faculty
Kurth, Laurie L.; Kurth, Mark J. – Journal of Chemical Education, 2014
Organic chemistry problems that interrelate and integrate synthesis with spectroscopy are presented. These synthesis-spectroscopy roadmap (SSR) problems uniquely engage second-year undergraduate organic chemistry students in the personal discovery of organic chemistry. SSR problems counter the memorize-or-bust strategy that many students tend to…
Descriptors: Spectroscopy, Synthesis, Organic Chemistry, Integrated Activities
Kunsting, Josef; Wirth, Joachim; Paas, Fred – Computers & Education, 2011
Using a computer-based scientific discovery learning environment on buoyancy in fluids we investigated the "effects of goal specificity" (nonspecific goals vs. specific goals) for two goal types (problem solving goals vs. learning goals) on "strategy use" and "instructional efficiency". Our empirical findings close an important research gap,…
Descriptors: Discovery Learning, Problem Solving, Science Instruction, Inquiry
Flores, Ingrid M. – Research in Higher Education Journal, 2012
Engaging students in inquiry-based learning is viewed by the science education community as the cornerstone of science education reform. Pre-service teachers often enter science methods courses in teacher education credential programs with significant trepidation of science, a lack of strong science content knowledge, a lack of confidence in…
Descriptors: Inquiry, Science Instruction, Preservice Teachers, Science Teachers

Stewart, Jim; Hafner, Robert – Science Education, 1991
Reviews the literature concerning problem solving in science education. Authors contend that the adoption of a forward-looking viewpoint of science has increased the attention given to the topics of discovery and problem-solving behavior. Authors conclude that research by philosophers of science on models and problem solving include insights to…
Descriptors: Discovery Learning, Elementary Secondary Education, Literature Reviews, Models

Birnie, Howard H.; Ryan, Alan – Science and Children, 1984
Discusses inquiry and discovery methods in elementary school science education; emphasizes the importance of teachers knowing whether they are using the inquiry approach and to what extent. Presents a chart listing the steps involved in problem solving, indicating whether a step is teacher- or student-controlled. (BC)
Descriptors: Discovery Learning, Elementary Education, Elementary School Science, Inquiry

Chemical and Engineering News, 1982
Describes a laboratory course, modeled on the approach developed by Robert Karplus for physics laboratory courses, emphasizing discovery learning. (SK)
Descriptors: Chemistry, College Science, Course Descriptions, Discovery Learning