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Lyrica Lucas; Anum Khushal; Robert Mayes; Brian A. Couch; Joseph Dauer – International Journal of Science Education, 2025
Educational reform priorities such as emphasis on quantitative modelling (QM) have positioned undergraduate biology instructors as designers of QM experiences to engage students in authentic science practices that support the development of data-driven and evidence-based reasoning. Yet, little is known about how biology instructors adapt to the…
Descriptors: Undergraduate Students, College Science, Biology, Classroom Observation Techniques
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Lombardi, Doug; Bickel, Elliot S.; Bailey, Janelle M.; Burrell, Shondricka – Science Education, 2018
Evaluation is an important aspect of science and is receiving increasing attention in science education. The present study investigated (1) changes to plausibility judgments and knowledge as a result of a series of instructional scaffolds, called model-evidence link activities, that facilitated evaluation of scientific and alternative models in…
Descriptors: High School Students, Science Instruction, Earth Science, Knowledge Level
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Mitchell, Brandon; Ekey, Robert; McCullough, Roy; Reitz, William – Physics Teacher, 2018
Teaching simple circuits and Ohm's law to students in the introductory classroom has been extensively investigated through the common practice of using incandescent light bulbs to help students develop a conceptual foundation before moving on to quantitative analysis. However, the bulb filaments' resistance has a large temperature dependence,…
Descriptors: Statistical Analysis, Models, Equipment, Science Instruction
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Eaton, Philip; Willoughby, Shannon D. – Physical Review Physics Education Research, 2018
In 1995, Huffman and Heller used exploratory factor analysis to draw into question the factors of the Force Concept Inventory (FCI). Since then several papers have been published examining the factors of the FCI on larger sets of student responses and understandable factors were extracted as a result. However, none of these proposed factor models…
Descriptors: Factor Analysis, Measures (Individuals), Physics, Science Instruction
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Badri, Masood; Alnuaimi, Ali; Mohaidat, Jihad; Al Rashedi, Asma; Yang, Guang; Al Mazroui, Karima – International Journal of STEM Education, 2016
Background: This study is about Abu Dhabi high school students' interest in science in different contexts. The survey was conducted in connection with the international project, the Relevance of Science Education (ROSE). The sample consists of 5650 students in public and private schools. A structural equation model (SEM) is developed to capture…
Descriptors: Science Instruction, Career Choice, Science Interests, Student Interests
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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
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Maass, Katja; Engeln, Katrin – Journal of Education and Training Studies, 2018
Although well researched in educational studies, inquiry-based learning, a student-centred way of teaching, is far away from being implemented in day-to-day science and mathematics teaching on a large scale. It is a challenge for teachers to adopt this new way of teaching in an often not supportive school context. Therefore it is important to…
Descriptors: Active Learning, Inquiry, Faculty Development, Foreign Countries
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Villafañe, Sachel M.; Xu, Xiaoying; Raker, Jeffrey R. – Chemistry Education Research and Practice, 2016
Self-efficacy is an affective learning outcome that has been associated with academic performance and retention in STEM. Self-efficacy has been defined as students' beliefs about their ability to complete a given task, and it can be affected by a student's positive or negative experience in a course. In this study, students' chemistry…
Descriptors: Self Efficacy, Organic Chemistry, Science Instruction, Teaching Methods
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Vonk, Matthew; Bohacek, Peter; Militello, Cheryl; Iverson, Ellen – Physical Review Physics Education Research, 2017
This study focuses on student development of two important laboratory skills in the context of introductory college-level physics. The first skill, which we call model making, is the ability to analyze a phenomenon in a way that produces a quantitative multimodal model. The second skill, which we call model breaking, is the ability to critically…
Descriptors: Models, Design, Video Technology, College Science
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Jones, Brett D.; Sahbaz, Sumeyra; Schram, Asta B.; Chittum, Jessica R. – International Journal of Science Education, 2017
We investigated students' perceptions related to psychological constructs in their science classes and the influence of these perceptions on their science identification and science career goals. Participants included 575 middle school students from two countries (334 students in the U.S. and 241 students in Iceland). Students completed a…
Descriptors: Career Choice, Foreign Countries, Science Instruction, Student Attitudes
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Sugiharti, Gulmah; Habeahan, Bastian Jose Wandry – International Education Studies, 2018
This study aims to determine the influence of learning models and numerical ability of students' chemistry learning outcomes on Thermochemical materials, as well as the interaction between learning models through the use of laboratory and numerical ability. The study was conducted on the students of grade XI IPA SMA N 1 Stabat consisting of 9…
Descriptors: Chemistry, Science Instruction, Models, Interaction
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McPadden, Daryl; Brewe, Eric – Physical Review Physics Education Research, 2017
Representation use is a critical skill for learning, problem solving, and communicating in science, especially in physics where multiple representations often scaffold the understanding of a phenomenon. University Modeling Instruction, which is an active-learning, research-based introductory physics curriculum centered on students' use of…
Descriptors: Science Instruction, Introductory Courses, Comparative Analysis, College Students
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Stanley, Jacob T.; Su, Weifeng; Lewandowski, H. J. – Physical Review Physics Education Research, 2017
We demonstrate how students' use of modeling can be examined and assessed using student notebooks collected from an upper-division electronics lab course. The use of models is a ubiquitous practice in undergraduate physics education, but the process of constructing, testing, and refining these models is much less common. We focus our attention on…
Descriptors: Electronics, Physics, Undergraduate Students, Laboratory Experiments
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Rotgans, Jerome I.; Schmidt, Henk G. – Journal of Educational Research, 2018
The extent to which a student experiences situational interest during a learning task is dependent on at least two factors: (1) external stimuli in the learning environment that arouse interest and (2) internal dispositions, such as individual interest. The objective of the present study was to disentangle how both factors influence situational…
Descriptors: Student Interests, Learner Engagement, Elementary School Students, Secondary School Students
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Gorecek Baybars, Meryem; Kucukozer, Huseyin – European Journal of Educational Research, 2018
The object of this study is to determine the conceptual understanding that prospective Science teachers have relating "de Broglie: Matter waves" and to investigate the effect of the instruction performed, on the conceptual understanding. This study was performed at a state university located in the western part of Turkey, with the…
Descriptors: Foreign Countries, Preservice Teachers, Physics, Scientific Concepts
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