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What does the unit cell of sodium chloride look like? How is its structure different from other salts? What relationship, if any, exists between the structures of ionic and metallic solids?
ODYSSEY Ionic Solids is a three-dimensional visualization aid that expands on standard textbook concepts of the structure of ionic crystals. Generic models and concrete examples are provided for twelve structure types: sodium chloride, cesium chloride, zinc blende, wurtzite, fluorite, rutile, nickel arsenide, cadmium chloride, cadmium iodide, calcium chloride, perovskite, and spinel. Unit cells are presented, coordination numbers are highlighted, and the occupancy of cations in the sublattice of anions is illustrated. Models of the cubic structure types for metals (simple cubic, body-centered cubic, and face-centered cubic) are available for comparison. In total, more than a hundred models are available.
All models can be inspected at any orientation and zoom level and with a choice of the drawing radius for the ionic spheres. For any given ion, a “clipping sphere” can be defined that highlights the local surroundings of that ion and hides the remaining structure. Distances between ions can be measured, and a display of ionic charge labels is available. A glossary, comments section, and set of multiple choice questions (with randomized options) are also included.
The structural patterns presented in ionic compounds are not easily appreciated without looking at concrete models. ODYSSEY Ionic Solids helps familiarize learners with the subject and gain the experience needed to explore new structures.
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An intuitive visual reference for thermo. properties of water. Simply glide your finger across the chart to retrieve thermodynamic properties. Best suited for engineering courses. Charts include T-s, P-h and P-v diagrams for water.
Acknowledgements.
Dr. Matthias Gottschalk for providing water EOS algorithm in the superheated region and Austin Carrig for app development.
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ODYSSEY Ionic Solids VS.
Clausius
19écembre d, 2024