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Garino, Claudio; Terenzi, Alessio; Barone, Giampaolo; Salassa, Luca – Journal of Chemical Education, 2016
Among computational methods, DFT (density functional theory) and TD-DFT (time-dependent DFT) are widely used in research to describe, "inter alia," the optical properties of transition metal complexes. Inorganic/physical chemistry courses for undergraduate students treat such methods, but quite often only from the theoretical point of…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
Cipolla, Laura; Ferrari, Lia A. – Journal of Chemical Education, 2016
A hands-on approach to introduce the chemical elements and the atomic structure to elementary/middle school students is described. The proposed classroom activity presents Bohr models of atoms using common and inexpensive materials, such as nested plastic balls, colored modeling clay, and small-sized pasta (or small plastic beads).
Descriptors: Molecular Structure, Models, Science Materials, Hands on Science
Bruun, E.; Nielsen, I. – European Journal of Engineering Education, 2010
Nanotechnology is having an increasing impact on university curricula in electrical engineering and in physics. Major influencers affecting developments in university programmes related to nanoelectronics are discussed and a model for university programme development is described. The model takes into account that nanotechnology affects not only…
Descriptors: Engineering Education, Physics, College Science, College Curriculum
Pascolini, A.; Pietroni, M. – Physics Education, 2002
We report on an educational project in particle physics based on Feynman diagrams. By dropping the mathematical aspect of the method and keeping just the iconic one, it is possible to convey many different concepts from the world of elementary particles, such as antimatter, conservation laws, particle creation and destruction, real and virtual…
Descriptors: Toys, High School Students, Figurative Language, Secondary School Science