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Tian, Zhijie; Zhang, Kun; Zhang, Tao; Dai, Xiaozhen; Lin, Juan – Biochemistry and Molecular Biology Education, 2020
"Didn't understand or not fully understand" is the most common situation that students experience when they learn medical biochemistry and molecular biology (MBMB). Therefore, the primary task of teaching MBMB is to help students overcome the difficulties in "conceptual understanding." The core of the solution to these problems…
Descriptors: Science Instruction, Medical Education, Biochemistry, Molecular Biology
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Tsybulsky, Dina; Sinai, Erez – Journal of Science Education and Technology, 2022
This article presents a case study of the integration of the Internet of Things (IoT) in high-school biology project-based learning. The study's main goal was to conduct an in-depth, qualitative examination of the students' experiences and the development of their skills over the course of this project. The following research questions were…
Descriptors: Biology, Science Instruction, Teaching Methods, High School Students
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Edwards, Susan – Middle School Journal, 2015
What is active learning and what does it look like in the classroom? If students are participating in active learning, they are playing a more engaged role in the learning process and are not overly reliant on the teacher (Bransford, Brown, & Cocking, 2003; Petress, 2008). The purpose of this article is to propose a framework to describe and…
Descriptors: Active Learning, Middle School Students, Planning, Middle School Teachers
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Hushman, Carolyn J.; Marley, Scott C. – Journal of Educational Research, 2015
The authors investigated whether the amount of instructional guidance affects science learning and self-efficacy. Sixty 9- and 10-year-old children were randomly assigned to one of the following three instructional conditions: (a) guided instruction consisting of examples and student-generated explanations, (b) direct instruction consisting of a…
Descriptors: Elementary School Students, Self Efficacy, Science Education, Science Instruction
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Anderson, O. Roger – Science Education, 1997
Synthesizes current thought in neuropsychology, philosophy of cognition, and science education. Suggests that dualistic views and those based solely on biological structural-functional analyses may be insufficient to explain the active role of the learner. Presents 10 principles of neurocognition as a context for analysis of learner-centered…
Descriptors: Active Learning, Cognitive Development, Educational Change, Educational Strategies