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Day, James; Lantagne-Hurtubise, Étienne; Sheyerman, Alexander; Liao, Yu-Huan Theresa; Hoyt, Char – Physics Teacher, 2021
This paper introduces quantum materials and the notion of using models to aid the comprehension of complex ideas. It describes a hands-on activity, collaboratively developed by scientists and artists, that promotes an understanding of how experts take advantage of analogical thinking and model building to develop important frameworks. Quantum…
Descriptors: Science Instruction, Quantum Mechanics, Teaching Methods, Concept Formation
Paola Gómez Buitrago; Danny Arteaga; Andrea Carolina Cabanzo – Journal of Chemical Education, 2023
Knowing about the evolution of atomic models throughout history is a fundamental topic to learn about atomic structure. This paper describes how identifying keywords from a musical YouTube video provides a stimulating activity for learning this topic in a chemistry class in middle school. The main goal was to show how a fun and interesting…
Descriptors: Video Technology, Web Sites, Technology Uses in Education, Nuclear Physics
Albéri, Matteo; Baldoncini, Marica; Bottardi, Carlo; Chiarelli, Enrico; Landsberger, Sheldon; Raptis, Kassandra Giulia Cristina; Serafini, Andrea; Strati, Virginia; Mantovani, Fabio – Education Sciences, 2019
Although environmental radioactivity is all around us, the collective public imagination often associates a negative feeling to this natural phenomenon. To increase the familiarity with this phenomenon we have designed, implemented, and tested an interdisciplinary educational activity for pre-collegiate students in which nuclear engineering and…
Descriptors: Engineering Education, Radiation, Learning Activities, Interdisciplinary Approach
Roelle, Julian; Lehmkuhl, Nina; Beyer, Martin-Uwe; Berthold, Kirsten – Journal of Educational Psychology, 2015
In 2 experiments we examined the role of (a) specificity, (b) the type of targeted learning activities, and (c) learners' prior knowledge for the effects of relevance instructions on learning from instructional explanations. In Experiment 1, we recruited novices regarding the topic of atomic structure (N = 80) and found that "specific"…
Descriptors: Learning Activities, Prior Learning, Nuclear Physics, Novices
Black, Paul; Wilson, Mark; Yao, Shih-Ying – Measurement: Interdisciplinary Research and Perspectives, 2011
The overall aim of this article is to analyze the relationships between the roles of assessment in pedagogy, the interactions between curriculum assessment and pedagogy, and the study of pupils' progression in learning. It is argued that well-grounded evidence of pupils' progressions in learning is crucial to the work of teachers, so that a method…
Descriptors: Evidence, Learning Strategies, Program Effectiveness, Grade 8
Yayon, Malka; Scherz, Zahava – Journal of Chemical Education, 2008
"If protons, quarks, and other elementary particles are too small to be seen, how do scientists know they exist? And if these particles do exist, how can one estimate their size, structure, and or their arrangement in atoms?" These are some of the most frequently asked questions by students who study atomic theory. Atomic structure is an important…
Descriptors: Scientific Methodology, Nuclear Physics, Science Instruction, Chemistry
Technical Education Research Center, Waco, TX. – 1977
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Learning Activities, Learning Modules, Nuclear Energy, Nuclear Physics
Center for Occupational Research and Development, Inc., Waco, TX. – 1980
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Learning Activities, Learning Modules, Nuclear Energy, Nuclear Physics
Center for Occupational Research and Development, Inc., Waco, TX. – 1980
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Learning Activities, Learning Modules, Nuclear Energy, Nuclear Physics
Center for Occupational Research and Development, Inc., Waco, TX. – 1980
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Atomic Theory, Learning Activities, Learning Modules, Nuclear Energy
Center for Occupational Research and Development, Inc., Waco, TX. – 1980
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Chemical Analysis, Learning Activities, Learning Modules, Nuclear Energy
Center for Occupational Research and Development, Inc., Waco, TX. – 1980
This technical specialty course is one of thirty-five courses designed for use by two-year postsecondary institutions in five nuclear technician curriculum areas: (1) radiation protection technician, (2) nuclear instrumentation and control technician, (3) nuclear materials processing technician, (4) nuclear quality-assurance/quality-control…
Descriptors: Emergency Programs, Learning Activities, Learning Modules, Nuclear Energy
Pelton, Rick; Espy, John – 1979
This third in a series of seven modules for a course titled Nondestructive Examination (NDE) Techniques I describes the principles and practices associated with hydrostatic testing. The module follows a typical format that includes the following sections: (1) introduction, (2) module prerequisites, (3) objectives, (4) notes to instructor/student,…
Descriptors: Course Content, Energy, Learning Activities, Learning Modules
Espy, John – 1979
This fourth in a series of seven modules for a course titled Nondestructive Examination (NDE) Techniques I describes liquid penetrant examination which provides an effective method of detecting undesired, invisible surface discontinuities. The module follows a typical format that includes the following sections: (1) introduction, (2) module…
Descriptors: Course Content, Energy, Learning Activities, Learning Modules
Wasil, Ed; Espy, John – 1979
This first in a series of eight modules for a course titled Mechanical Inspection describes the type of pumps used in nuclear power plant systems, the basic operating principles of each type, and the inspection activities performed by the quality assurance/quality control technician. The module follows a typical format that includes the following…
Descriptors: Course Content, Energy, Inspection, Learning Activities