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It exists both in anhydrous form and as a trihydrate.
Above 55 C, it dehydrates to the trihydrate and at higher temperatures to the monohydrate.
Aggregates may be used in the form of magnesium hydroxide and aluminium trihydrate.
It is commercially available as the trihydrate and as a solution in tetrahydrofuran.
Aluminium fluoride trihydrate is found in nature as the rare mineral rosenbergite.
It is normally found as the trihydrate.
For example, thiols react with hexafluoroacetone trihydrate to give hemithioacetals, which can be isolated.
One of these is alumina trihydrate, a principal component of many bauxite ores.
The dihydrate one has a triclinic structure, while the trihydrate has a monoclinic structure.
A mineral trihydrate, VO 3HO, is also known under the name of navajoite.
Counters with this ingredient are called engineered stone, but it is less porous than natural stone and much harder alumina trihydrate.
In halogen-containing systems, zinc borate is used together with antimony trioxide and alumina trihydrate.
It is composed of acrylic polymer and alumina trihydrate (ATH).
Virgin resin is mixed with fillers such as calcium carbonate or aluminium trihydrate and pumped to a holding tank.
The first crystals to form are those of nitric acid trihydrate, and these form nuclei for the crystallization of water ice.
Racemic [Co(en)]Cl is most often obtained as the di- or trihydrate.
Fillers like alumina trihydrate were mixed with resins and were poured into a mold, where they were cured in a vacuum.
Alumina trihydrate is the most common filler, but some manufacturers use quartz chips as a filler element to create a material that looks like natural stone.
The intramuscular form, on the other hand, is the mesylate salt, ziprasidone mesylate trihydrate, and is provided as a lyophilized powder.
The hydrate, with a varying proportion of water of crystallization, often approximating to a trihydrate, is a commonly used starting material in ruthenium chemistry.
In halogen-free system, zinc borate can be used together with alumina trihydrate, magnesium hydroxide, red phosphorus, or ammonium polyphosphate.
More conveniently, iridium trihydrate and pentamethylcyclopentadiene consistently gives the product in both high yield and purity according to this idealized equation:
Type Ia clouds consist of large, aspherical particles, consisting of nitric acid trihydrate (NAT).
A number of aluminium-containing raw materials can be used, including aluminium metal, alumina trihydrate, aluminium chloride, aluminium sulfate and combinations of these.