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Shintsuruta, Michiya; Okubo, Hirokazu; Iwayama, Tsutomu – Physics Education, 2021
We developed new teaching materials, electrical resistors and capacitors, using carbon nanotube (CNT) paper and carbon fibre (CF) paper to foster students' creative thinking, thereby deepening and extending learning. Using a CNT-paper electrical resistor, it is possible to elucidate the dependence of the resistance value on the length and width.…
Descriptors: Science Instruction, Creative Thinking, Instructional Materials, Scientific Concepts
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Rattanakit, Parawee – Journal of Chemical Education, 2021
This paper describes an inquiry-based integrated laboratory project for green synthesis, characterization, and applications of silver and gold nanoparticles. In this project, students were able to choose their choice of plant extract as reducing and stabilizing agents, and the students also designed their own experiments. This course gave the…
Descriptors: Inquiry, Active Learning, Science Laboratories, Student Projects
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Ramankulov, Sherzod; Usembaeva, Indira; Berdi, Dinara; Omarov, Bakhitzhan; Baimukhanbetov, Bagdat; Shektibayev, Nurdaulet – International Journal of Environmental and Science Education, 2016
Information and communication technologies are an effective means of formation of the creative potential of future physics teachers, as with their science-based application in the educational process at the university they allow fully activating learning activities of students, and provide conditions for their creative self-realization in the…
Descriptors: Creativity, Foreign Countries, Science Teachers, Physics
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Kalajian, Peter – Physics Teacher, 2013
Video analysis of 2-D collisions is an excellent way to investigate conservation of linear momentum. The often-desired experimental design goal is to minimize the momentum loss in order to demonstrate the conservation law. An air table with colliding pucks is an ideal medium for this experiment, but such equipment is beyond the budget of many…
Descriptors: Video Technology, Mechanics (Physics), Science Instruction, Science Activities
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Collins, Eva-Maria S.; Calhoun, Tessa R. – Journal of College Science Teaching, 2014
This article presents the combination of three enhanced educational approaches for training future scientists. These methods incorporate skills generally not introduced in the freshman year: student-led blackboard introductions; the writing of scientific papers; and the design, execution, and presentation of an independent lab module. We tested…
Descriptors: Science Instruction, College Science, College Freshmen, Lecture Method
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Marušic, Mirko; Sliško, Josip – European Journal of Physics Education, 2014
This study is based on two exploratory questions with the aim of determining the relative effectiveness of two different student activities, called "Reading, Presenting and Questioning" (RPQ) and "Experimenting and Discussing" (ED), in changing students' perceptions and attitudes about the impact of physics learning on the…
Descriptors: Physics, Science Instruction, Teaching Methods, Learning Activities
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Pushkin, David B. – Journal of College Science Teaching, 1997
Recommends a constructivist approach to physics laboratory activities to make laboratories a place for personal maturation and cognitive growth. Describes class design in which ideas and techniques are exchanged which allow students the opportunity to initiate investigations based on early conceptual assumptions, and extend the investigation…
Descriptors: Cognitive Development, Constructivism (Learning), Creative Thinking, Critical Thinking
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Tephly, Joan B. – Science and Children, 1989
Presents nine hands-on discovery and inquiry type activities which penetrate the student's immediate world, integrate other curricular areas, involve group cooperation, excite, motivate, and encourage creative thinking. (RT)
Descriptors: Biological Sciences, Creative Thinking, Elementary School Science, Environmental Education
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Sprung, Barbara – Young Children, 1996
Discusses the importance of science education in early childhood education and describes different approaches in incorporating physics into the preschool curriculum. Provides examples of experiments and encourages parent participation in children's science activities. Concludes by looking at science as an equity issue and emphasizes that science…
Descriptors: Child Development, Cognitive Development, Creative Thinking, Curriculum Design
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Keiser, Jeffrey E. – Journal of Chemical Education, 1988
Proposes that the psychological problem of students expecting a particular result in an organic chemistry laboratory and, therefore, working in an unthinking manner be attacked by assigning experiments that give students unexpected results. Gives four examples of such experiments with strategies for teaching them. (CW)
Descriptors: Chemical Reactions, Chemistry, College Science, Creative Thinking