aluminum form - significado y definición. Qué es aluminum form
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Qué (quién) es aluminum form - definición

ALLOY
Zinc Aluminum; Zinc-aluminum; Zinc aluminum

Chloralum         
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CHEMICAL COMPOUND
Aluminum chloride; Aluminium Chloride; AlCl3; Friedel-Crafts catalyst; Aluminium trichloride; Aluminum chloride hexahydride; Aluminum Chloride; Aluminum trichloride; ATC code D10AX01; ATCvet code QD10AX01; Xerac AC; Drysol; Aluminium chloride hexahydrate; Friedel–Crafts catalyst; Chloralum; Al2Cl6
·noun An impure aqueous solution of chloride of aluminium, used as an antiseptic and disinfectant.
Indian tax forms         
Form 16; Form 2E; Form 3CA; Form 3CB; Form 3CD; Form 3CE; Form 15CA; Form 22; Form 10BA
Indian tax forms are used to document information in compliance with the Income Tax Act of 1961 and in accordance with the Income Tax Rules (codified in 1962), which govern the process of filing income tax returns in India.
Canonical form         
  • C]] arrays. Each one is converted into a canonical form by sorting. Since both sorted strings literally agree, the original strings were anagrams of each other.
STANDARD (OFTEN UNIQUE) WAY OF PRESENTING AN OBJECT AS A MATHEMATICAL EXPRESSION
Canonical sum of products form; Data normalization; Normal form (mathematics); Canonical Form; Canonical form (mathematics)
In mathematics and computer science, a canonical, normal, or standard form of a mathematical object is a standard way of presenting that object as a mathematical expression. Often, it is one which provides the simplest representation of an object and which allows it to be identified in a unique way.

Wikipedia

Zinc aluminium

Zinc-aluminium (ZA) alloys are alloys whose main constituents are zinc and aluminium. Other alloying elements include magnesium and copper. This type of alloy was originally developed for gravity casting. Noranda, New Jersey Zinc Co. Ltd., St. Joe Mineral Co. and the International Lead Zinc Research Organization (ILZRO) were the main companies that pioneered the ZA alloys between the 1950s and the 1970s. They were designed to compete with bronze, cast iron and aluminium using sand and permanent mold casting methods. Distinguishing features of ZA alloys include high as-cast strength, excellent bearing properties, as well as low energy requirements (for melting).

ZA alloys make good bearings because their final composition includes hard eutectic zinc-aluminium-copper particles embedded in a softer zinc-aluminium matrix. The hard particles provide a low-friction bearing surface, while the softer material wears back to provide space for lubricant to flow, similar to Babbitt metal.

The numbers associated with the name represent the amount of aluminium in the alloy (i.e. ZA8 has 8% aluminium).