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Harris, Julie C. – Urban Education, 2022
It has been 50 years since magnet schools were first used to address segregation in public schools. The context of magnet schools has changed dramatically during this time, raising questions about the role of magnet schools in a modern context. This study utilized data from a large urban district with more than 100 magnet schools to assess…
Descriptors: Urban Schools, Magnet Schools, Urban Education, School Districts
Reeves, Amber L. – ProQuest LLC, 2022
There is currently no designated policy, procedure or staff in place to facilitate the objective of increasing student yield. As a result, magnet applications and acceptance of invitations to attend Owl Middle School is approached without a strategy which makes planning difficult and negates the ability to determine effective methods. Filling…
Descriptors: Middle School Students, Grade 6, Magnet Schools, Educational Policy
Koblischka, Michael R.; Koblischka-Veneva, Anjela – Physics Education, 2022
Several properties of Earth's magnetic field (field vectors, time dependence) are measured in various locations using a smartphone/tablet magnetic sensor. To enable a proper use of the magnetic sensor as a classroom tool, the exact location of the sensor in the device and its resolution must be identified in a first step. Then, students may…
Descriptors: High School Students, Physics, Science Curriculum, Experiments
Orfield, Myron; Stancil, Will – Learning Policy Institute, 2022
Many studies confirm that segregated schools for minoritized students produced worsened academic, economic, health, and criminal justice outcomes over the short and long term. By contrast, a substantial body of research establishes that students of all races benefit from attending diverse schools. Despite this evidence, the tools for achieving…
Descriptors: Magnet Schools, Metropolitan Areas, Educational Development, Public Agencies
Ionel Popa; Florin Saitis – Journal of Chemical Education, 2022
Proteins are "magical" workers inside our body, as they accomplish most of the cellular functions. Here we report on a novel approach to teach protein folding and unfolding, using magnets and flexible 3D-printed protein structures. To illustrate this physical process, we used colored circular magnets designed for whiteboards, connected…
Descriptors: Magnets, Printing, Computer Peripherals, Simulation
Yuksel, Tugba; Bryan, Lynn A. – Science Insights Education Frontiers, 2023
This research investigates the Models of eighth-grade students in Turkey pertaining to magnets and magnetic interactions, while also examining the consistency of these models within themselves. Additionally, a comparative assessment is conducted by comparing the current data with data collected from eighth-grade students a decade earlier. The…
Descriptors: Foreign Countries, Models, Grade 8, Secondary School Students
Wenli Chen; Si Zhang; Zhongling Pi; Jesmine S. H. Tan; Yun Wen; Chee-Kit Looi; Jennifer Yeo; Qingtang Liu – Technology, Pedagogy and Education, 2024
This study investigates the role of a collaboration script, the Funnel Model, in supporting students' computer-supported collaborative scientific argumentation, and how the students appropriated the collaboration script in scientific argumentation. In this exploratory case study, a class of 33 Secondary grade four students went through four phases…
Descriptors: Cooperative Learning, Scripts, Computer Assisted Instruction, Persuasive Discourse
Christopher J. Fischer; Jennifer A. Delgado; Sarah E. LeGresley; Jessy R. Changstrom – Physical Review Physics Education Research, 2025
We used student surveys to assess changes in proficiency with integral calculus, calculus self-efficacy, and physics self-efficacy in a second semester course of introductory physics focused on electricity and magnetism. In addition to tracking the fraction of quantitative problems solved correctly on the calculus proficiency survey, we also used…
Descriptors: Physics, Science Instruction, Calculus, Self Efficacy
Bezen, Sevim; Aykutlu, Isil; Bayrak, Celal – Journal of Turkish Science Education, 2021
This study aims to determine pre-service teachers' conceptual understanding of black-body radiation. Designed as a qualitative study, it employed a case study design, which is one of the descriptive research methods. The study group consists of 18 pre-service physics teachers enrolled as seniors. An opinion form and a concept map were used as data…
Descriptors: Preservice Teachers, Scientific Concepts, Radiation, Physics
Campos, Esmeralda; Hernandez, Eder; Barniol, Pablo; Zavala, Genaro – Physical Review Physics Education Research, 2021
There are studies of students' understanding of the concept of the electric field, the magnetic field, and the use of the superposition principle that have contributed to the creation of both educational strategies and assessment tools. However, the difficulties of these two concepts have not been compared comprehensively. Therefore, this study…
Descriptors: Electronics, Magnets, Scientific Principles, Scientific Concepts
Bull, Glen; Garofalo, Joe; Watts, Jo; Littman, Michael; Sherman, Roger – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2022
This paper describes use of a linear motor as a starting point for introducing related electricity and magnetism concepts. The Linear Motor Laboratory consists of a series of mechanisms and student learning activities centered around a reconstruction of the Charles Page Electromagnetic Engine patented in 1854. This work was undertaken in the Make…
Descriptors: Engines, Energy, Laboratories, Learning Activities
Riveros, Héctor G. – European Journal of Physics Education, 2020
Electric charges and magnetic poles are often confused in the minds of students. It is convenient to remind them that they only interact when they are in relative motion. The force F on a charged particle q moving with velocity V in a magnetic field B is given by F = qVxB. By Newton's Third Law, the force on magnet producing the field B is equal…
Descriptors: Science Instruction, Scientific Concepts, Energy, Magnets
D'Anna, Michele; Corridoni, Tommaso – Physics Teacher, 2020
In a traditional teaching approach, a physics course begins with mechanics, and generally the braking effect due to magnetic interactions is not mentioned among the various types of friction presented (static, sliding, rolling) because students will discover magnetism only in later chapters. In our didactic experience this traditional choice is…
Descriptors: Physics, Teaching Methods, Science Instruction, Mechanics (Physics)
Kamphorst, Floor; Vollebregt, M. J.; Savelsbergh, E. R.; van Joolingen, W. R. – Science & Education, 2023
Einstein's derivation of special relativity theory (SRT), based on hypothetical reasoning and thought experiments, is regarded as a prime example of physics theory development. In secondary education, the introduction of SRT could provide a great opportunity for students to engage in physics theorizing, but this opportunity is largely being missed…
Descriptors: Physics, Scientific Concepts, Secondary School Science, Science Education
Wannous, Jarier; Horvath, Peter – Physics Teacher, 2023
Measuring permeability in a high school physics course has long been a hard task. However, with the advent of using smartphones in the classroom, it is not only possible but even easily done. This paper offers detailed instructions on how to measure permeability using a smartphone's magnetometer, starting with experimentally discovering the…
Descriptors: Magnets, Telecommunications, Handheld Devices, Physics

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