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Hendra Y. Agustian – Science & Education, 2025
Wicked problems have been characterised by their high epistemological and axiological complexities. These are the kinds of problems that may invade our classrooms because many of them concern many stakeholders, including our students. Several approaches have been developed to address wicked problems in various contexts. However, little is known…
Descriptors: Science Instruction, Social Problems, World Problems, Universities
Megan D. Radyk; Lillian B. Spatz; Mahliyah L. Adkins-Threats; Kitra Cates; Celine L. St Pierre – Advances in Physiology Education, 2023
The development of science writing and presentation skills is necessary for a successful science career. Too often these skills are not included in pre- or postsecondary science, technology, engineering, and mathematics (STEM) education, leading to a disconnect between high schoolers' expectations for college preparedness and the skills needed to…
Descriptors: Course Evaluation, Secondary School Science, Science Education, Communication (Thought Transfer)
What Works Clearinghouse, 2020
Large numbers of U.S. students lack proficiency in science, and students from different ethnic and socioeconomic groups show disparities in science achievement.2 Science knowledge and skills are important for both academic and workplace success, and a variety of interventions have been developed to improve student science achievement.…
Descriptors: Student Projects, Active Learning, Science Education, Inquiry
What Works Clearinghouse, 2021
Inquiry-based science interventions aim to improve students' science proficiency by helping them understand scientific processes. In these interventions, students conduct hands-on investigations of science concepts and everyday phenomena, construct explanations for what they observe, consider alternative explanations, and communicate and justify…
Descriptors: Inquiry, Science Instruction, Science Process Skills, Teaching Methods
What Works Clearinghouse, 2021
Inquiry-based science interventions aim to improve students' science proficiency by helping them understand scientific processes. In these interventions, students conduct hands-on investigations of science concepts and everyday phenomena, construct explanations for what they observe, consider alternative explanations, and communicate and justify…
Descriptors: Intervention, Science Education, Educational Change, Inquiry
Kidman, Gillian – EURASIA Journal of Mathematics, Science & Technology Education, 2012
In Australia we are at a crossroads in science education. We have come from a long history of adopting international curricula, through to blending international and Australian developed materials, to the present which is a thoroughly unique Australian curriculum in science. This paper documents Australia's journey over the past 200 years, as we…
Descriptors: National Curriculum, Inquiry, Active Learning, Foreign Countries
What Works Clearinghouse, 2012
The "LeTUS" program is a three-year, project-based, technology-integrated middle school science curriculum for grades 6-8. The "LeTUS" program is composed of multiple units, each lasting between eight and ten weeks. Topics include global warming, water and air quality, force and motion, communicable diseases, and ecological…
Descriptors: Middle Schools, Urban Schools, Science Curriculum, Middle School Students
What Works Clearinghouse, 2012
"Technology Enhanced Elementary and Middle School Science" ("TEEMSS") is a physical science curriculum for grades 3-8 that utilizes computers, sensors, and interactive models to support investigations of real-world phenomena. Through 15 inquiry-based instructional units, students interact with computers, gather and analyze…
Descriptors: Physical Sciences, Science Curriculum, Inquiry, Active Learning
Louca, Loucas T.; Zacharia, Zacharias C. – Educational Review, 2012
Models and modeling are considered integral parts of scientific literacy, reflecting educators' efforts to introduce and engage students in authentic scientific inquiry through Modeling-based Learning (MbL) approaches in science. Over the years research has developed a considerable amount of knowledge concerning MbL. Our purpose in this paper was…
Descriptors: Science Education, Models, Active Learning, Teaching Methods
Carmichael, Jeffrey – Journal of College Science Teaching, 2009
Given the problems associated with the traditional lecture method, the constraints associated with large classes, and the effectiveness of active learning, continued development and testing of efficient student-centered learning approaches are needed. This study explores the effectiveness of team-based learning (TBL) in a large-enrollment…
Descriptors: Active Learning, Biology, Lecture Method, Teaching Methods
Bergtrom, Gerald – Journal of Asynchronous Learning Networks, 2011
The principles of course redesign that were applied to a gateway Cell Biology course at the University of Wisconsin-Milwaukee are applicable to courses large and small, and to institutions of any size. The challenge was to design a content-rich science course that kept pace with present and future content and at the same time use principles of…
Descriptors: Active Learning, Cytology, Biology, Science Curriculum
Fallik, Orna; Eylon, Bat-Sheva; Rosenfeld, Sherman – Journal of Science Teacher Education, 2008
We investigated the effects of a long-term, continuous professional development (CPD) model, designed to support teachers to enact Project-Based Learning (PBLSAT). How do novice PBLSAT teachers view their acquisition of PBLSAT skills and how do expert PBLSAT teachers, who enacted the program 5-7 years, perceive the program? Novice teachers…
Descriptors: Student Projects, Active Learning, Beginning Teachers, Professional Development
Nasr, Karim J.; Ramadan, Bassem H. – Journal of STEM Education: Innovations and Research, 2008
This paper presents the development and implementation of Problem-Based Learning (PBL) in an engineering thermodynamics course at Kettering University. In this project, the thermodynamics course was restructured as modules presenting practical applications first, whereas principles were introduced just-in-time and as encountered. Theoretical…
Descriptors: Problem Based Learning, Engineering, Engineering Education, Science Curriculum
Bolton, Kim; Saalman, Elisabeth; Christie, Michael; Ingerman, Ake; Linder, Cedric – Chemistry Education Research and Practice, 2008
The publicly available free computer program, "SimChemistry," was used as an active learning tool in the chemical engineering curriculum at the University College of Boras, Sweden. The activity involved students writing their own simulation programs on topics in the area of molecular structure and interactions. Evaluation of the learning…
Descriptors: Foreign Countries, Learning Experience, Chemical Engineering, Science Curriculum
Yuan, Robert; Lin, Yuan – CBE - Life Sciences Education, 2008
A course has been created to examine the ways in which China and the West have approached human health and medicine. Though fundamentally different, these two systems are complementary in a number of ways. This course is a model for a global science course in an educational initiative that incorporates Asian themes into science and engineering…
Descriptors: Medical Services, Foreign Countries, Science Curriculum, Medicine
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