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  2. Environmental impacts of artificial intelligence - Wikipedia

    en.wikipedia.org/wiki/Environmental_impacts_of...

    Additionally, artificial intelligence algorithms running in places predominately using fossil fuels for energy will exert a much higher carbon footprint than places with cleaner energy sources. [8] These models may be modified for less environmental impacts at the cost of accuracy, emphasizing the importance of finding the balance between ...

  3. Haloalkane - Wikipedia

    en.wikipedia.org/wiki/Haloalkane

    Tetrafluoroethane (a haloalkane) is a colorless liquid that boils well below room temperature (as seen here) and can be extracted from common canned air canisters by simply inverting them during use. The haloalkanes (also known as halogenoalkanes or alkyl halides) are alkanes containing one or more halogen substituents. [1]

  4. Aryl halide - Wikipedia

    en.wikipedia.org/wiki/Aryl_halide

    In organic chemistry, an aryl halide (also known as haloarene) is an aromatic compound in which one or more hydrogen atoms, directly bonded to an aromatic ring are replaced by a halide. Haloarenes are different from haloalkanes because they exhibit many differences in methods of preparation and properties. The most important members are the ...

  5. Workplace impact of artificial intelligence - Wikipedia

    en.wikipedia.org/wiki/Workplace_impact_of...

    The impact of artificial intelligence on workers includes both applications to improve worker safety and health, and potential hazards that must be controlled. One potential application is using AI to eliminate hazards by removing humans from hazardous situations that involve risk of stress, overwork, or musculoskeletal injuries.

  6. Halon - Wikipedia

    en.wikipedia.org/wiki/Halon

    Haloalkane, or halogenoalkane, a group of chemical compounds consisting of alkanes with linked halogens (in particular, bromine-containing haloalkanes) Halomethane compounds: Halon 10001 (iodomethane) Halon 1001 (bromomethane) Halon 1011 (bromochloromethane, CH 2 BrCl) Halon 104 (carbon tetrachloride) Halon 1103 (tribromofluoromethane)

  7. Wurtz reaction - Wikipedia

    en.wikipedia.org/wiki/Wurtz_reaction

    In organic chemistry, the Wurtz reaction, named after Charles Adolphe Wurtz, is a coupling reaction in which two alkyl halides are treated with sodium metal to form a higher alkane. 2 R−X + 2 Na → R−R + 2 NaX. The reaction is of little value except for intramolecular versions, such as 1,6-dibromohexane + 2 Na → cyclohexane + 2 NaBr.

  8. Dehydrohalogenation - Wikipedia

    en.wikipedia.org/wiki/Dehydrohalogenation

    Dehydrohalogenation is not limited to organic chemistry. Some metal-organic coordination compounds can eliminate hydrogen halides, [6] either spontaneously, [7] thermally, or by mechanochemical reaction with a solid base such as potassium hydroxide. [8]

  9. Darzens halogenation - Wikipedia

    en.wikipedia.org/wiki/Darzens_halogenation

    Darzens halogenation is the chemical synthesis of alkyl halides from alcohols via the treatment upon reflux of a large excess of thionyl chloride or thionyl bromide (SOX 2) in the presence of a small amount of a nitrogen base, such as a tertiary amine or pyridine or its corresponding hydrochloride or hydrobromide salt.