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Water - hydrogen fluoride (1/1) (FH3O)

Compound Descriptions:

Structure Drawing
Formula:FH3O
Element System:F-H-O
Element Names:Hydrogen, Oxygen, Fluorine
Molecular Weight:38.022 g/mol
Name(s):Water - hydrogen fluoride (1/1)
Classification:no charge; 2fragments

European Regulations

1 matching entries in european regulations: Hazard

Derivatives / Analogues

Derivativewater free: Hydrogen fluoride polymer 
Derivativewater free: Dihydrogen - hydrogen fluoride (1/1) 
Analogueother halogene: Water - hydrogen chloride (1/1) 
Analogueother nobel gas: Argon - hydrogen fluoride (1/1) 
Analogueother nobel gas: Krypton - hydrogen fluoride (1/1) 
Analogueother nobel gas: Xenon - hydrogen fluoride (1/1) 
Analogueother chalcogen: Hydrogen sulfide - hydrogen fluoride (1/1) 

Landolt-Börnstein Citations:

Structure and Molecular Constants

 Structure Data of Free Polyatomic Molecules: Vol. II/25a 2:473II/25A

References

II/25A
Short: II/25A
Title: Structure Data Of Free Polyatomic Molecules: Inorganic Molecules
Author: Graner, G.; Hirota, E.; Iijima, T.; Kuchitsu, K.; Ramsay, D.A.; Vogt, J.; Vogt, N.
Editor: Kuchitsu, K.
Source: Landolt-Börnstein, New Series
Volume: II/25A
Year: 1998
Keyword: Free Polyatomic Molecules; Inorganic Molecules; Molecules
ISBN: 3-540-61713-2
ISBN: 978-3-540-61713-6
Internet Resource: DOI:10.1007/b59072
RefComment: VII, 359 pages. Hardcover
Abstract: Volume II/25 is a supplemented and revised edition of the preceding volumes II/7, II/15, II/21 and II/23 containing up to date information on inorganic and organic polyatomic molecules. All experimental methods for the determination of quantitative structural data of free molecules have been considered: microwave, infrared, Raman, electronic and photoelectron spectroscopy as well as electron diffraction. The data obtained by these methods have been critically evaluated and compiled. They are presented separately for each molecule, together with a schematic figure of the structure and the original literature.

  File created on 2009/18/08 by LCI Publisher GmbH (Gaja Peters, Inga Thede, Volkmar Vill, Ron Zenczykowski)
  © 2009   Landolt Börnstein,   Springer-Verlag Berlin Heidelberg