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Gregory J. Crowther; Amy K. Hebert; Usha Sankar; Joel Michael – Advances in Physiology Education, 2025
The Homeostasis Concept Inventory (HCI) is a validated instrument for measuring students' knowledge of homeostasis. It is comprised of 20 multiple-choice questions covering key components of the previously validated Homeostasis Conceptual Framework (HCF). In this paper, we present the first multi-institutional study of the impact of physiology…
Descriptors: Undergraduate Students, Instructional Effectiveness, Science Instruction, Scientific Concepts
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Min Wu; Peiyao Tian; Daner Sun; Dan Feng; Ma Luo – International Journal of Science and Mathematics Education, 2025
This study aimed to develop a comprehensive diagnostic tool for assessing upper-secondary school students' understanding of isomers, expanding upon existing two- and three-tier conceptual diagnostic methods. By incorporating 'Confidence Rating Factor' tiers within the answer and reason sections, a four-tier test was designed and developed. This…
Descriptors: Secondary School Science, High School Students, Scientific Concepts, Science Tests
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Himawan Putranta; Fahdah Afifah – Journal on Efficiency and Responsibility in Education and Science, 2025
Misconceptions about static fluid concepts in physics are common among students, making it essential for teachers to identify and address them. This research aims to develop and evaluate the quality of a four-tier diagnostic test instrument and identify student misconceptions in the static fluid chapter. The sample for this research comprised 91…
Descriptors: Diagnostic Tests, Misconceptions, Physics, Scientific Concepts
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Lan Yang; Leheng Huang; Xianqiu Wu; Jianwen Xiong; Lei Bao; Yang Xiao – Physical Review Physics Education Research, 2024
In physics education, a number of studies have developed assessments of teachers' knowledge of student understanding (KSU) of specific physics concepts with modified versions of existing concept inventories, in which teachers were asked to predict the popular incorrect answers from students. The results provide useful but indirect information to…
Descriptors: Preservice Teachers, Knowledge Level, Science Education, Scientific Concepts
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Masaki Goda; Shinichi Kishizawa; Yamato Hasegawa – Physical Review Physics Education Research, 2025
In this paper, we describe student understanding of the "force concept" (basic concepts of Newtonian mechanics) by representing it as a vector-valued quantity, which we refer to as the "score-state vector," in a (30-dimensional) Force Concept Inventory (FCI) score space. We use a large ensemble of FCI results collected…
Descriptors: Mechanics (Physics), Scientific Concepts, Scientific Literacy, Foreign Countries
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Yasuda, Jun-ichiro; Hull, Michael M.; Mae, Naohiro – Physical Review Physics Education Research, 2023
We aim to graphically analyze the depth of conceptual understanding behind the Force Concept Inventory (FCI) responses of students, focusing on three questions (questions 1, 15, and 28). In our study, we created and implemented subquestions to clarify and quantify the students' reasoning steps in reaching their responses to the original FCI…
Descriptors: Scientific Concepts, Concept Formation, Misconceptions, Visual Aids
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Julie Dangremond Stanton; Stephanie M. Halmo; Rayna J. Carter; Kira A. Yamini; Deborah Ososanya – Journal of Microbiology & Biology Education, 2024
Students with strong metacognitive skills are positioned to learn and achieve more than peers who are still developing their metacognition. Yet, many students come to college without well-developed metacognitive skills. As part of a longitudinal study on metacognitive development, we asked when, why, and how first-year life science majors use…
Descriptors: Undergraduate Students, Majors (Students), Misconceptions, Science Tests
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Voss, Sarah; Kruse, Jerrid; Kent-Schneider, Isaiah – Research in Science Education, 2022
Explicit-reflective nature of science (NOS) instruction has demonstrated a positive impact on student learning. Although explicit-reflective NOS instruction often consists of questions that draw students' attention to NOS ideas, there are few recommendations in the science education literature about how the form of these questions might inform NOS…
Descriptors: Scientific Principles, Science Education, Science Instruction, Scientific Methodology
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Dilek Sultan Acarli – American Biology Teacher, 2025
Molecular genetics is often one of the most challenging subjects for students in biology courses. Identifying misconceptions on this subject will help teachers improve teaching and increase student success. Based on this thought, this study aimed to determine students' misconceptions about molecular genetics using a four-tier test. The researcher…
Descriptors: High School Students, Secondary School Science, Student Evaluation, Knowledge Level
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Purbo Suwasono; Supriyono Koes H.; Nugroho Adi P.; Eleeyah Saniso – Open Education Studies, 2025
Despite continued efforts to address this issue, many students still exhibit misunderstandings regarding Newton's laws. These misconceptions include beliefs, such as every movement requires a force, that force is directly proportional to velocity, and that action-reaction forces can differ in magnitude. To mitigate these misunderstandings,…
Descriptors: Scientific Concepts, Misconceptions, Physics, Scaffolding (Teaching Technique)
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Sakyiwaa Boateng; Sizwe J. C. Masuku – Journal of Baltic Science Education, 2025
Electricity and magnetism are fundamental areas of physics and are integral to science curricula at various educational levels. However, this area has been reported to contain several concepts that students find challenging, leading to perspectives that diverge from scientifically accepted views. This study examines the errors made by physics…
Descriptors: Physics, Science Teachers, Preservice Teachers, Teacher Education Programs
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Onder-Celikkanli, Nuray; Tan, Mustafa – Physics Education, 2022
This study aims to determine Turkish high school students' misconceptions about the electric charge imbalance by using a four-tier misconception test, where the main questions are accompanied by a question about the reason for the answer, as well as student declarations about their degrees of certainty. A four-tier electric charge imbalance…
Descriptors: Foreign Countries, High School Students, Misconceptions, Energy
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Nikolaos Zarkadis; George Papageorgiou; Angelos Markos – Science Education International, 2024
The study investigates secondary students' understanding of "orbital" and "electron cloud" concepts in different quantum contexts (for values of the ?principal quantum number n = 1 and n = 2) on the basis of their verbal and pictorial representations, evaluating also their consistency. Participants, which were 192 12th-grade…
Descriptors: Science Instruction, Teaching Methods, Scientific Concepts, Concept Formation
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Rebecca Teed; William Hughett; William Romine – Journal of College Science Teaching, 2025
Plate tectonics is the unifying theory of modern Earth science, but many university students have misconceptions about it that introductory geoscience classes often fail to correct. We developed a 5-to-12-hour-long hands-on active-learning curriculum for an introductory geoscience class for education majors. The curriculum includes: (1) A…
Descriptors: Hands on Science, Science Instruction, Earth Science, Plate Tectonics
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Dmoshinskaia, Natasha; Gijlers, Hannie; de Jong, Ton – Journal of Science Education and Technology, 2022
Giving feedback to peers can be a valuable learning experience for a feedback provider. However, different types of products require different types of feedback, which, in turn, may lead to different learning outcomes. The current study investigates the effect on the learning of feedback providers of reviewing different types of products.…
Descriptors: Peer Evaluation, Feedback (Response), Concept Mapping, Test Items
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