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Bagdat Abdikadyr; Bayan Ualikhanova; Daulet Berdaliyev; Gulnara Issayeva; Samat Maxutov – European Journal of Science and Mathematics Education, 2025
This study investigates the impact of constructivist teaching methods on achievement and misconceptions in mechanics, with a focus on gender differences. The research involved 88 first-year physics students enrolled in the physics teacher training program. Using a quasi-experimental design, students were divided into experimental (constructivist…
Descriptors: Gender Differences, Physics, Science Achievement, Constructivism (Learning)
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Noly Shofiyah; Nadi Suprapto; Binar Kurnia Prahani; Budi Jatmiko; Desak Made Anggraeni; Khoirun Nisa' – Cogent Education, 2024
This research investigates the abilities of undergraduate students to apply scientific reasoning in Indonesia, with a particular focus on the concept of force and motion. Forty-three first-year undergraduate students from an Indonesian private institution, comprising 20 males and 23 females, performed the Scientific Reasoning Test of Motion (SRTM)…
Descriptors: Motion, Physics, Scientific Concepts, Thinking Skills
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Bouzid, Tariq; Kaddari, Fatiha; Darhmaoui, Hassane – Journal of Educational Research, 2022
This work investigates science major students' misconceptions about "force and motion." Stratified-convenience sampling method has been conducted on 232 Moroccan high school students. Using Force Concept Inventory (FCI), we examined all known misconceptions listed in the original article by Hestenes et al. (1992, "Phys. Teach."…
Descriptors: Foreign Countries, Scientific Concepts, Misconceptions, High School Students
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Bahtaji, Michael Allan A. – Journal of Baltic Science Education, 2023
Exploring students' physics conceptions, science engagement and misconceptions in physics together with their association to certain variables (gender, educational background, and program of study) are essential in improving physics teaching and learning. However, few studies have been conducted to explore these three measures and almost none…
Descriptors: Physics, Science Education, Scientific Concepts, Misconceptions
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Koca, Nazife Ozdes – Physics Education, 2022
This work is aimed to assess the performance of two groups of students from colleges of Science, Education and Engineering on the understanding of electricity and magnetism concepts. To conduct this assessment, the Electricity and Magnetism Conceptual Assessment (EMCA) test was implemented twice as a pre-test and a post-test for two calculus-based…
Descriptors: Energy, Magnets, Science Education, Engineering Education
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Wells, James; Henderson, Rachel; Traxler, Adrienne; Miller, Paul; Stewart, John – Physical Review Physics Education Research, 2020
Investigating student learning and understanding of conceptual physics is a primary research area within physics education research. Multiple quantitative methods have been employed to analyze commonly used mechanics conceptual inventories: the Force Concept Inventory (FCI) and the Force and Motion Conceptual Evaluation (FMCE). Recently,…
Descriptors: Physics, Science Education, Educational Research, Scientific Concepts
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Härmälä-Braskén, Ann-Sofi; Hemmi, Kirsti; Kurtén, Berit – International Journal of Science Education, 2020
This study explores prospective primary school teachers' misconceptions concerning basic concepts in chemistry. The data was gathered during the years 2012-2016 among first-year primary school teachers in Finland (N = 389). The results show that every year, as many as 40%-80% of teachers share the same kinds of misconceptions as children ages 5-12…
Descriptors: Misconceptions, Scientific Concepts, Elementary School Science, Preservice Teachers
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Wells, James; Henderson, Rachel; Stewart, John; Stewart, Gay; Yang, Jie; Traxler, Adrienne – Physical Review Physics Education Research, 2019
Module analysis for multiple-choice responses (MAMCR) was applied to a large sample of Force Concept Inventory (FCI) pretest and post-test responses (N[subscript pre] = 4509 and N[subscript post] = 4716) to replicate the results of the original MAMCR study and to understand the origins of the gender differences reported in a previous study of this…
Descriptors: Physics, Misconceptions, Science Tests, Scientific Concepts
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Saracoglu, Hanife; Kol, Özge – Asia-Pacific Forum on Science Learning and Teaching, 2018
In this study, it is aimed to reveal math teachers' knowledge level and misconceptions about vectors. The study was conducted with the participation of 66 teacher candidates in different nine universities. As for data collection tool, a questionnaire of 6 open-ended questions was used, related to basic knowledge about vector magnitude, addition,…
Descriptors: Preservice Teachers, Mathematics Teachers, Algebra, Geometric Concepts
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Romero-Abrio, Ana; Ramos-Alonso, Raquel; Hurtado-Bermúdez, Santiago – European Early Childhood Education Research Journal, 2021
Science competencies acquired at early years are basic and influence on children's later development. Gender differences in these early science competencies may explain the often-reported gender differences in later science abilities. Research in this field was not usually focused on pre-schoolers. In this study, we focus on the interaction…
Descriptors: Preschool Children, Sex Stereotypes, Equal Education, Sciences
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Fratiwi, Nuzulira Janeusse; Samsudin, Achmad; Ramalis, Taufik Ramlan; Saregar, Antomi; Diani, Rahma; Irwandani; Rasmitadila; Ravanis, Konstantinos – European Journal of Educational Research, 2020
The identification of students' mental models is crucial in understanding their knowledge of scientific concepts. This research aimed to develop a Mental Models Representation Instrument on Newton's Laws (MeMoRI-NL). The ADDIE (Analyzing, Designing, Developing, Implementing and Evaluating) model was used as a research method. The sample consisted…
Descriptors: Schemata (Cognition), Scientific Concepts, High School Students, Science Tests
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Al-Rsa'i, Mohammad S.; Khoshman, Jebreel M.; Abu Tayeh, Khalid – Journal of Turkish Science Education, 2020
The objective of this study was to investigate the physics student-teachers misconceptions in force and motion concepts in Jordanian universities by using the Force Concept Inventory (FCI) test and to identify the cause of misconceptions related to these concepts. Also, the FCI has been used to detect whether misconceptions vary according to…
Descriptors: Preservice Teachers, Undergraduate Students, Late Adolescents, Science Education
Neidorf, Teresa; Arora, Alka; Erberber, Ebru; Tsokodayi, Yemurai; Mai, Thanh – International Association for the Evaluation of Educational Achievement, 2020
The International Association for the Evaluation of Educational Achievement (IEA) Research for Education series represents a further effort by IEA to capitalize on it's unique datasets, so as to provide powerful information for policymakers and researchers. Each report focuses on a specific topic and is produced by a dedicated team of leading…
Descriptors: Misconceptions, Mathematical Concepts, Scientific Concepts, Mathematics Instruction
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Hairan, Abdul Manan; Abdullah, Nazlinda; Husin, Abu Hassan – European Journal of Physics Education, 2019
In this paper, the level of conceptual understanding of Newtonian mechanics among Afghan school and university students in Kabul, Afghanistan was investigated. This study employed a quantitative descriptive survey method where the Pashto version of the Force Concept Inventory (FCI) was given to a random sample of 216 students from two schools and…
Descriptors: Concept Formation, Comprehension, Foreign Countries, Physics
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Abrahams, Ian; Homer, Matt; Sharpe, Rachael; Zhou, Mengyuan – Research in Science & Technological Education, 2015
Background: Despite the large body of literature regarding student misconceptions, there has been relatively little cross-cultural research to directly compare the prevalence of common scientific misconceptions amongst students from different cultural backgrounds. Whilst previous research does suggest the international nature of many…
Descriptors: Science Instruction, Physics, Scientific Concepts, Misconceptions
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