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The 193 pages that link to Crystal structure, each with the reason it gives.
Silver sulfideNarrower topic: Silver sulfide's structure changes with temperature, distinguishing acanthite from argentite.
Sodium permanganateRelated: Its solid-state structure describes how sodium and permanganate ions pack together.
Sodium peroxideNarrower topic: The solid’s properties depend on how sodium and peroxide ions pack together.
AllotropeRelated: Many solid allotropes differ in the repeating arrangement of their atoms.
Atomic packing factorNarrower topic: Packing factor summarizes one geometric property of a crystal structure.
ElectrideRelated: Its cavities and channels determine where an electride can host anionic electrons.
Kathleen LonsdaleNarrower topic: Determining crystal structures was the central problem her diffraction research addressed.
Lithium iodideRelated: The solid's ions occupy repeating positions rather than forming isolated pairs.
Manganese(II) chlorideRelated: Anhydrous MnCl₂ and its hydrates have distinct solid-state arrangements.
PentlanditeRelated: Pentlandite's cubic arrangement helps distinguish it from related nickel sulfides.
PolluciteRelated: Pollucite’s framework structure governs its composition, ion sites, and relation to other zeolites.
Potassium alumNarrower topic: The alum’s characteristic crystals arise from an ordered ionic lattice.
Potassium hydrideRelated: KH forms an extended ionic lattice rather than discrete KH molecules in the solid.
Silicon nitrideRelated: Its distinct crystal structures produce different silicon nitride properties.
Sodium sulfideRelated: The ions in anhydrous sodium sulfide form a repeating solid-state lattice.
Tin(IV) oxideNarrower topic: Its rutile lattice determines the coordination and pathways that shape tin dioxide's properties.
TroiliteRelated: Troilite’s mineral identity includes an ordered atomic arrangement, not just an FeS formula.
Zinc hydroxideRelated: Zinc hydroxide occurs in crystalline forms whose structures affect material properties.
Aluminium carbideRelated: The compound’s hexagonal structure organizes aluminium and carbon atoms in the solid.
Ammonium dihydrogen phosphateNarrower topic: The salt’s optical behavior depends on its ordered crystalline arrangement.
Arsenate mineralNarrower topic: The arrangement of arsenate groups and metal ions determines each mineral's identity.
Atomic and molecular structureBroader topic: Atomic-scale structure in crystals helps determine their mechanical, optical, and electrical behavior.
Bonding in solidsRelated: Bonding interactions help determine which repeating arrangement a solid adopts.
Clathrate compoundRelated: Clathrate identity depends on the host crystal structure and its available cavities.
Dinitrogen pentoxideRelated: It describes the solid’s arrangement of nitronium and nitrate ions.
Disodium helideRelated: Na₂He’s lattice places helium atoms and electron-filled cavities in distinct sites.
Disordered systemsCompared with: Its long-range periodicity provides a baseline against which structural disorder is defined.
Elemental materialsRelated: Many elemental solids differ through the ways their atoms pack into crystals.
Granular packingCompared with: Crystals provide periodic order, unlike the irregular arrangements typical of granular packing.
Inorganic chemicalsRelated: Many inorganic solids derive their properties from repeating crystal lattices.
IntermetallicNarrower topic: Intermetallics are distinguished in part by ordered arrangements of different elements on crystal sites.
Lead(II,IV) oxideRelated: Pb₃O₄ has an ordered solid structure, not a simple physical blend of PbO and PbO₂.
Lead(II) azideRelated: Crystal structure influences the material’s physical behavior and sensitivity.
Lithium borohydrideRelated: LiBH₄ changes crystal structure with temperature, affecting ion motion and material behavior.
Lithium nitrideNarrower topic: Li₃N's distinctive properties depend on how its ions repeat through the solid.
Magnesium sulfideNarrower topic: The compound’s properties depend on how its ions are arranged in the solid.
Materials modelingRelated: It supplies the geometry underlying many calculations of material properties.
Mercury sulfideNarrower topic: Different atomic arrangements account for HgS’s distinct crystalline forms.
Network solidRelated: A network solid’s properties depend on how its bonded framework is arranged in three dimensions.
Serpentine subgroupRelated: Structural differences distinguish the subgroup’s three principal members.
Sodium metaborateRelated: Different hydration states correspond to distinct solid arrangements.
Sodium oxalateRelated: The solid’s ionic arrangement accounts for its crystalline form and physical stability.
Yield (materials science)Narrower topic: Lattice geometry influences which slip systems can activate at yield.