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Sun, Daner; Looi, Chee-Kit; Xie, Wenting – Technology, Pedagogy and Education, 2017
When inquiry-based learning is designed for a collaborative context, the interactions that arise in the learning environment can become fairly complex. While the learning effectiveness of such learning environments has been reported in the literature, there have been fewer studies on the students' learning processes. To address this, the article…
Descriptors: Teaching Methods, Inquiry, Secondary School Students, Concept Formation
Couper, Lisa; Johannes, Kristen; Powers, Jackie; Silberglitt, Matt; Davenport, Jodi – Grantee Submission, 2016
Understanding key concepts in molecular biology requires reasoning about molecular processes that are not directly observable and, as such, presents a challenge to students and teachers. We ask whether novel interactive physical models and activities can help students understand key processes in viral replication. Our 3D tangible models are…
Descriptors: Molecular Biology, Scientific Concepts, Science Instruction, Teaching Methods
Balta, Nuri – European Journal of Physics Education, 2015
Visualizing physical concepts through models is an essential method in many sciences. While students are mostly proficient in handling mathematical aspects of problems, they frequently lack the ability to visualize and interpret abstract physical concepts in a meaningful way. In this paper, initially the electric circuits and related concepts were…
Descriptors: Science Instruction, Scientific Concepts, Equipment, Visualization
Hull, Kerry – Advances in Physiology Education, 2016
Renal clearance, the volume of blood cleared of a substance in a particular time period, is commonly recognized as one of the most difficult concepts in physiology. This difficulty may in part reflect the quantitative nature of renal clearance since many life sciences majors perceive that mathematics is irrelevant to their discipline. Students may…
Descriptors: Physiology, Human Body, Biological Sciences, Science Activities
Kiste, Alan L.; Scott, Gregory E.; Bukenberger, Jesse; Markmann, Miles; Moore, Jennifer – Chemistry Education Research and Practice, 2017
Twenty years ago, a major curriculum revision at a large, comprehensive university in the Western United States led to the implementation of an integrated lecture/laboratory (studio) experience for our engineering students taking general chemistry. Based on these twenty years of experience, construction of four purpose-built studio classrooms to…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Outcomes of Education
Rodriguez-Fernandez, Emilio – Journal of Chemical Education, 2013
By using cardboard models that resemble propellers, the students of inorganic courses can easily visualizing the distinct rotation of optical isomers. These propellers rotate clockwise or counterclockwise when they are dropped from a certain height or in the presence of wind. (Contains 1 figure.)
Descriptors: Science Instruction, Inorganic Chemistry, Scientific Concepts, College Science
Al-Balushi, Sulaiman M. – EURASIA Journal of Mathematics, Science & Technology Education, 2013
The effect of different textual versions (macroscopic (control), submicroscopic, and guided imagery) of the explanation of a chemical phenomenon on students' submicroscopic explanation of a related phenomenon was examined. The sample included 152 pre-service science teachers. The three textual versions of the explanation were distributed randomly…
Descriptors: Chemistry, Scientific Concepts, Preservice Teachers, Science Teachers
Meyer, Scott C. – Journal of Chemical Education, 2015
An upper-division undergraduate laboratory experiment is described that explores the structure/function relationship of protein domains, namely leucine zippers, through a molecular graphics computer program and physical models fabricated by 3D printing. By generating solvent accessible surfaces and color-coding hydrophobic, basic, and acidic amino…
Descriptors: College Science, Undergraduate Study, Science Laboratories, Science Experiments
Kurnaz, Mehmet Altan; Eksi, Cigdem – Educational Sciences: Theory and Practice, 2015
Students often have difficulties understanding abstract physics concepts, such as solid friction. This study examines high school students' mental models of solid friction through a case study of 215 high school students in the ninth through twelfth grades. An achievement test with three open-ended questions was created, with questions limited to…
Descriptors: Physics, Science Instruction, Secondary School Science, High School Students
Dantas Machado, Ana Carolina; Saleebyan, Skyler B.; Holmes, Bailey T.; Karelina, Maria; Tam, Julia; Kim, Sharon Y.; Kim, Keziah H.; Dror, Iris; Hodis, Eran; Martz, Eric; Compeau, Patricia A.; Rohs, Remo – Biochemistry and Molecular Biology Education, 2012
3D visualization assists in identifying diverse mechanisms of protein-DNA recognition that can be observed for transcription factors and other DNA binding proteins. We used Proteopedia to illustrate transcription factor-DNA readout modes with a focus on DNA shape, which can be a function of either nucleotide sequence (Hox proteins) or base pairing…
Descriptors: Genetics, Biology, Visualization, College Science
Chen, Gaowei; Clarke, Sherice N.; Resnick, Lauren B. – Technology, Instruction, Cognition and Learning, 2015
Teachers can reflect on and analyze their classroom discourse to inform their instructional practice. When teachers try to do so however, they often face analytic difficulties, which include the data set (e.g., data input, data transformation, and utterances by unknown speakers), coding (e.g., coding complexity, reliability, and efficiency),…
Descriptors: Discourse Analysis, Classroom Communication, Teaching Methods, Visualization
Lee, Young-Jin – Journal of Computers in Mathematics and Science Teaching, 2015
The aims of this study are: (1) to develop iPad-based computer simulations called iSimPhysics that can help people learn Newtonian physics concepts; and (2) to assess its educational benefits and pedagogical usefulness. To facilitate learning, iSimPhysics visualizes abstract physics concepts, and allows for conducting a series of computer…
Descriptors: Physics, Science Instruction, Handheld Devices, Educational Technology
Kourkoumelis, C.; Vourakis, S. – Physics Education, 2014
This paper describes an interactive tool for analysis of data from the ATLAS experiment taking place at the world's highest energy particle collider at CERN. The tool, called HYPATIA/applet, enables students of various levels to become acquainted with particle physics and look for discoveries in a similar way to that of real research.
Descriptors: Science Instruction, Physics, Scientific Concepts, Visualization
Haglund, Jesper; Jeppsson, Fredrik; Schönborn, Konrad J. – Research in Science Education, 2016
Integration of technology, social learning and scientific models offers pedagogical opportunities for science education. A particularly interesting area is thermal science, where students often struggle with abstract concepts, such as heat. In taking on this conceptual obstacle, we explore how hand-held infrared (IR) visualization technology can…
Descriptors: Foreign Countries, Photography, Energy, Physics
Evagorou, Maria; Erduran, Sibel; Mäntylä, Terhi – International Journal of STEM Education, 2015
Background: The use of visual representations (i.e., photographs, diagrams, models) has been part of science, and their use makes it possible for scientists to interact with and represent complex phenomena, not observable in other ways. Despite a wealth of research in science education on visual representations, the emphasis of such research has…
Descriptors: Science Instruction, Genetics, Epistemology, Visual Aids

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