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Hubenthal, Michael – Journal of Geoscience Education, 2018
The elastic rebound theory is a fundamental explanatory geoscience construct introduced in most introductory undergraduate geoscience courses. Classroom experience, supported by a recent case study of undergraduate students' model-building activities, indicates that learning this theory tends to be incomplete, in spite of instruction employing…
Descriptors: Plate Tectonics, Undergraduate Students, Scientific Concepts, College Science
Cengiz, Ekrem – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2018
The goal of this study is to present and evaluate a different way of teaching concepts related to the reflection of light (incident beam, reflecting beam, angle of incidence, angle of reflection, surface, regular reflection, and diffuse reflection). The participants were 42 sixth-grade students (between the ages of 11 and 12) attending a public…
Descriptors: Reflection, Light, Grade 6, Middle School Students
Concannon, James P.; Brown, Patrick L. – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2018
Students come to class with little understanding about torque, angular velocity, and angular acceleration despite the fact that these physical science concepts are frequently observed. For example, torque occurs when car and bicycle tires rotate, the movement of fishing pole when hooking a fish, and when a person uses a hammer to drive in a nail.…
Descriptors: Science Activities, Science Instruction, Physics, Scientific Concepts
Stewart, John; Zabriskie, Cabot; DeVore, Seth; Stewart, Gay – Physical Review Physics Education Research, 2018
Research on the test structure of the Force Concept Inventory (FCI) has largely been performed with exploratory methods such as factor analysis and cluster analysis. Multidimensional Item Response Theory (MIRT) provides an alternative to traditional exploratory factor analysis which allows statistical testing to identify the optimal number of…
Descriptors: Item Response Theory, Physics, Science Instruction, Scientific Concepts
Sanders, Richard W.; Crettol, Gregory L.; Brown, Joseph D.; Plummer, Patrick T.; Schendorf, Tara M.; Oliphant, Alex; Swithenbank, Susan B.; Ferrante, Robert F.; Gray, Joshua P. – Journal of Chemical Education, 2018
Electrochemistry is primarily taught in first-year undergraduate courses through batteries; this lab focuses instead on corrosion to apply electrochemical concepts of electrolytes, standard reduction potentials, galvanic cells, and other chemistry concepts including Le Chatelier's Principle and Henry's Law. Students investigate galvanic corrosion…
Descriptors: Chemistry, Science Instruction, Undergraduate Study, College Science
Yoho, Rachel; Urban-Lurain, Mark; Merrill, John; Haudek, Kevin – Journal of College Science Teaching, 2018
The concept of structure and function is a fundamental example of a crosscutting concept found in the educational reform documents in multiple STEM disciplines. However, the terms structure and function are words used in everyday language, and their use in various disciplines may be a source of lexical ambiguity for students. Discipline-specific…
Descriptors: STEM Education, Professional Associations, Ambiguity (Context), Academic Standards
Bauer, Christina A.; Hamada, Terianne Y.; Kim, Hyesoo; Johnson, Mathew R.; Voegtle, Matthew J.; Emrick, Matthew S. – Journal of Chemical Education, 2018
Quantum dots (QDs) are useful for demonstrating the particle-in-a-box (PIB) model utilized in quantum chemistry, and can readily be applied to a discussion of both thermodynamics and kinetics in an undergraduate laboratory setting. Modifications of existing synthetic procedures were used to create QDs of different sizes and compositions (CdS…
Descriptors: Science Instruction, College Science, Undergraduate Study, Chemistry
Özarslan, Murat; Çetin, Gülcan – Science Education International, 2018
The aim of this study was to investigate 9th grade biology students' cognitive structures about the basic components of the living organisms and association between the concepts forming these basic components. Participants consisted of 50 9th grade biology students in two secondary schools in the northwest of Turkey. Data were collected by the…
Descriptors: Foreign Countries, Secondary School Students, Grade 9, Secondary School Science
Pringle, Tom – Primary Science, 2018
At first glance, science and art seem as likely companions as oil and water. Is there more to mixing them up than mere metaphor and a messy floor? In this article, Tom Pringle shares some ideas for powering up the classroom by turning STEM into STEAM by dipping the paintbrush of art into the pot of science. In both art and science pupils can…
Descriptors: STEM Education, Art Education, Elementary School Science, Interdisciplinary Approach
Yasuda, Jun-ichro; Mae, Naohiro; Hull, Michael M.; Taniguchi, Masa-aki – Physical Review Physics Education Research, 2018
In this study, we analyze the systematic error from false positives of the Force Concept Inventory (FCI). We compare the systematic errors of question 6 (Q.6), Q.7, and Q.16, for which clearly erroneous reasoning has been found, with Q.5, for which clearly erroneous reasoning has not been found. We determine whether or not a correct response to a…
Descriptors: Scientific Concepts, Science Instruction, College Science, Physics
Nadelson, Louis S.; Heddy, Benjamin C.; Jones, Suzanne; Taasoobshirazi, Gita; Johnson, Marcus – International Journal of Educational Psychology, 2018
Conceptual change can be a challenging process, particularly in science education where many of the concepts are complex, controversial, or counter-intuitive. Yet, conceptual change is fundamental to science learning, which suggests science educators and science education researchers need models to effectively address and investigate conceptual…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Educational Research
Kite, Vance; Park, Soonhye – Science Teacher, 2018
In 2006 Jeanette Wing, a professor of computer science at Carnegie Mellon University, proposed computational thinking (CT) as a literacy just as important as reading, writing, and mathematics. Wing defined CT as a set of skills and strategies computer scientists use to solve complex, computational problems (Wing 2006). The computer science and…
Descriptors: Active Learning, Student Projects, Computer Literacy, Urban Renewal
Dees, Jonathan; Bussard, Caitlin; Momsen, Jennifer L. – CBE - Life Sciences Education, 2018
Phylogenetic trees have become increasingly important across the life sciences, and as a result, learning to interpret and reason from these diagrams is now an essential component of biology education. Unfortunately, students often struggle to understand phylogenetic trees. Style (i.e., diagonal or bracket) is one factor that has been observed to…
Descriptors: Science Instruction, Scientific Concepts, Biology, Teaching Methods
May, N. W.; McNamara, S. M.; Wang, S.; Kolesar, K. R.; Vernon, J.; Wolfe, J. P.; Goldberg, D.; Pratt, K. A. – Journal of Chemical Education, 2018
An introductory general chemistry laboratory course was developed to provide an authentic research experience in environmental chemistry. First- and second-year students learned general chemistry concepts and laboratory skills in the context of snow chemistry while participating in the course-based undergraduate research experience. Students were…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
van Riesen, Siswa A. N.; Gijlers, Hannie; Anjewierden, Anjo; de Jong, Ton – International Journal of Science Education, 2018
Designing and conducting sound and informative experiments is an important aspect of inquiry learning. Students, however, often design experiments that do not allow them to reach conclusions. Considering the difficulties students experience with the process of designing experiments, additional guidance in the form of an Experiment Design Tool…
Descriptors: Prior Learning, Research Design, Science Experiments, Inquiry

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