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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
Rainey, Katherine D.; Vignal, Michael; Wilcox, Bethany R. – Physical Review Physics Education Research, 2020
Though several conceptual inventories have been developed for thermal physics, none target upper-division material and all focus specifically on thermodynamics without including statistical mechanics content. In this paper, we outline the development process of an upper-division thermal physics assessment that captures both thermodynamics and…
Descriptors: Science Instruction, Physics, Thermodynamics, Scientific Concepts
Traxler, Adrienne; Henderson, Rachel; Stewart, John; Stewart, Gay; Papak, Alexis; Lindell, Rebecca – Physical Review Physics Education Research, 2018
Research on the test structure of the Force Concept Inventory (FCI) has largely ignored gender, and research on FCI gender effects (often reported as "gender gaps") has seldom interrogated the structure of the test. These rarely crossed streams of research leave open the possibility that the FCI may not be structurally valid across…
Descriptors: Physics, Science Instruction, Sex Fairness, Gender Differences
Ene, Emanuela; Ackerson, Bruce J. – Physical Review Physics Education Research, 2018
We describe the construction, validation, and testing of a concept inventory for an "Introduction to Physics of Semiconductors" course offered by the department of physics to undergraduate engineering students. By design, this inventory addresses both content knowledge and the ability to interpret content via different cognitive…
Descriptors: Physics, Science Instruction, Small Classes, College Science
Pujayanto, Pujayanto; Budiharti, Rini; Adhitama, Egy; Nuraini, Niken Rizky Amalia; Putri, Hanung Vernanda – Physics Education, 2018
This research proposes the development of a web-based assessment system to identify students' misconception. The system, named WAS (web-based assessment system), can identify students' misconception profile on linear kinematics automatically after the student has finished the test. The test instrument was developed and validated. Items were…
Descriptors: Misconceptions, Physics, Science Instruction, Databases
McFarland, Jenny L.; Price, Rebecca M.; Wenderoth, Mary Pat; Martinková, Patrícia; Cliff, William; Michael, Joel; Modell, Harold; Wright, Ann – CBE - Life Sciences Education, 2017
We present the Homeostasis Concept Inventory (HCI), a 20-item multiple-choice instrument that assesses how well undergraduates understand this critical physiological concept. We used an iterative process to develop a set of questions based on elements in the Homeostasis Concept Framework. This process involved faculty experts and undergraduate…
Descriptors: Scientific Concepts, Multiple Choice Tests, Science Tests, Test Construction
Taylor, Jonte C.; Tseng, Ching-mei; Murillo, Angelique; Therrien, William; Hand, Brian – Journal of Science Education for Students with Disabilities, 2018
The increased emphasis on STEM related careers and the use of science in everyday life makes learning science content and concepts critical for all students especially for those with disabilities. As suggested by the National Resource Council (2012), more emphasis is being placed on being able to critically think about science concepts in and…
Descriptors: Science Instruction, Science Achievement, Inquiry, Disabilities
Todd, Amber; Romine, William L.; Cook Whitt, Katahdin – Science Education, 2017
We describe the development, validation, and use of the "Learning Progression-Based Assessment of Modern Genetics" (LPA-MG) in a high school biology context. Items were constructed based on a current learning progression framework for genetics (Shea & Duncan, 2013; Todd & Kenyon, 2015). The 34-item instrument, which was tied to…
Descriptors: Genetics, Science Instruction, High School Students, Evaluation Methods
Borda, Emily; Haskell, Todd; Todd, Andrew – Journal of College Science Teaching, 2022
We propose cross-disciplinary learning as a construct that can guide instruction and assessment in programs that feature sequential learning across multiple science disciplines. Crossdisciplinary learning combines insights from interdisciplinary learning, transfer, and resources frameworks and highlights the processes of resource activation,…
Descriptors: Interdisciplinary Approach, Multiple Choice Tests, Protocol Analysis, Evaluation Methods
Opitz, Sebastian Tobias; Neumann, Knut; Bernholt, Sascha; Harms, Ute – EURASIA Journal of Mathematics, Science & Technology Education, 2017
Science standards of different countries introduced disciplinary core ideas and crosscutting concepts--such as energy--to help students develop a more interconnected science understanding. As previous research has mostly addressed energy learning in specific disciplinary contexts, this study targets students' cross-disciplinary understanding of…
Descriptors: Science Instruction, Biology, Test Construction, Chemistry
Hamadneh, Qaseem Mohammad Salim – Journal of Education and Practice, 2017
The study aimed to identify the effect of using Jigsaw strategy in teaching science on the acquisition of scientific concepts among the fourth graders of Bani Kinana Directorate of Education compared to the traditional way. The study sample consisted of 70 male and female students, divided into two groups: experimental and control where the…
Descriptors: Science Instruction, Scientific Concepts, Teaching Methods, Grade 4
Schwichow, Martin; Christoph, Simon; Boone, William J.; Härtig, Hendrik – International Journal of Science Education, 2016
The so-called control-of-variables strategy (CVS) incorporates the important scientific reasoning skills of designing controlled experiments and interpreting experimental outcomes. As CVS is a prominent component of science standards appropriate assessment instruments are required to measure these scientific reasoning skills and to evaluate the…
Descriptors: Thinking Skills, Science Instruction, Science Experiments, Science Tests
Hofer, Sarah I.; Schumacher, Ralph; Rubin, Herbert – International Journal of STEM Education, 2017
Background: Valid assessment of the understanding of Newton's mechanics is highly relevant to both physics classrooms and research. Several tests have been developed. What remains missing, however, is an efficient and fair test of conceptual understanding that is adapted to the content taught to secondary school students and that can be validly…
Descriptors: Mathematical Concepts, Concept Formation, Mathematics Instruction, Secondary School Students
Chin, Sook Fui; Lim, Hooi Lian – Asia-Pacific Forum on Science Learning and Teaching, 2016
Attitude towards science (ATS) is a major concern in science education. Although many ATS instruments have been developed, they are based on different cultural systems and having some limitations. This study aims to validate an instrument for measuring students' ATS in Malaysia context. The instrument was adapted from Test of Science-Related…
Descriptors: Attitude Measures, Student Attitudes, Science Instruction, Secondary School Students
van Vondel, Sabine; Steenbeek, Henderien; van Dijk, Marijn; van Geert, Paul – Research in Science Education, 2018
The present study was aimed at investigating the effects of a video feedback coaching intervention for upper-grade primary school teachers on students' cognitive gains in scientific knowledge. This teaching intervention was designed with the use of inquiry-based learning principles for teachers, such as the empirical cycle and the posing of…
Descriptors: Video Technology, Feedback (Response), Control Groups, Intervention

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