ODYSSEY States of Matter im Vergleich zu Crystal Lattice Nutzung und Statistiken

Learning to distinguish between the states of matter and being able to provide explanations in terms of molecular kinetic theory is part of basic science education. ODYSSEY States of Matter includes manipulable dynamic models that allow for exploring the differences between the physical states of a number of substances of varying complexity. For easier visibility, an initial set of models makes use of a two-dimensional (rather than three-dimensional) description. Based on analyzing the structure and dynamics of a system of disk-like particles, universal differences between the three states of matter are discussed. Phase transitions can be observed when the system density is changed. The possibility of encountering solids in an amorphous rather than crystalline state is considered. Realistic three-dimensional models for the physical states of seven common substance (acetone, ammonia, argon, bromine, carbon dioxide, methanol, and water) are available for further exploration. Using simple gestures, models can be examined at any orientation and zoom level and with a number of different visualization styles. The motion of atoms and molecules can be traced, and the local surroundings of arbitrarily selected particles can be highlighted. A glossary, comments section, and a set of multiple choice questions complete the app.
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The iOS app "Crystal Lattice" contains basic knowledge (university entrance exam level) of crystal lattices. When learning about crystal lattices, you may find it difficult to understand the 3D structure, and this app will come in handy at such times. The iOS app "Crystal Lattice" allows you to scale and rotate the 3D displayed crystal lattice. Promote 3D understanding by looking at things from various angles. For metal crystals and covalent crystals, this app explains how to calculate the coordination number, number of atoms in the lattice, atomic radius, and atomic packing factor. For ionic crystals, this app explains how to calculate the coordination number, number of ions in the lattice, ionic radius, and limiting radius ratio. Regarding metal crystals, this app explains body-centered cubic lattice, face-centered cubic lattice, and hexagonal close-packed structure. Regarding ionic crystals, this app explains NaCl type, CsCl type, ZnS (zincblende) type, and CaF2 (fluorite) type. Regarding covalent crystals, this app explains Diamond type. [details] https://app.brain-workout.org/crystallattice-e/
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ODYSSEY States of Mattervs. Crystal Lattice Ranking-Vergleich

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ODYSSEY States of Matter im Vergleich zu Crystal Lattice Ranking im Ländervergleich

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ODYSSEY States of Matter VS.
Crystal Lattice

Januar 1, 2025