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Halogen gas

ICP is used for the determination of ppm levels of metals in liquid samples. It is not suitable for the noble gases, halogens, or light elements such as H, C, N, and 0. Sulfur requires a vacuum monochromator. A direct reader ICP excels at the rapid analysis of multi-element samples. [Pg.46]

Research the common physical and chemical properties for each family (a vertical column) in the periodic table. The families to consider are alkali metals, alkaline earth metals, inert gases, halogens, and transition metals. [Pg.50]

For each of the following sets of elements, label each as either noble gases, halogens, alkali metals, alkaline earth metals, or transition metals. [Pg.71]

Nonsolvating solvents may be used for nonelectrolyte molecular species such as rare gases, halogens, interhalogen compounds, and some metal halide complexes. [Pg.51]

Corrosion by Hot Gases Halogens do not form condensed species with Si at the temperatures of interest. Thus, if they are pure (no oxygen or water present) they will automatically induce active corrosion behavior and calculated pressures of species like Sip4 or SiC over SiC will be as high as the concentration of F and Cl in the gas. [Pg.161]

Precaution Combustible moderate fire risk incompat. with strong oxidizers, halogen gases, halogenated compels., 2,4,6-trichloro-1,3,5-trlaz-ine vigorous reactions possible polymerizes violently on contact with methylene bisphenyl dllsocyanate... [Pg.1085]

Carbowax 20M Alcohols Aldehydes and ketones Aromatics Drugs and alkaloids Essential oils Fatty acids Gases Halogenated compounds Nitrogen compounds Pesticides Phosphorus compounds Pyrolysis 250 c... [Pg.78]

These forces are responsible for the condensation and liquefaction of rare gases, halogens etc. [Pg.48]

Qj total quantity cf group of fission products released, l.e., noble gases, halogens, etc. [Pg.395]

Store in a cool well-ventilated area. Separate from other chemicals, particularly oxidizing gases, halogens, and acid. Ensure adequate egress is provided. Avoid contact with copper, zinc, brass, or bronze. [Pg.432]

As you have seen, the periodic table is a result of empirical observation (i.e., the periodic law), but quantum-mechanical theory explains why the table is so arranged. Suppose that, in another universe, quantum theory was such that there were one s orbital but only two p orbitals (instead of three) and only three d orbitals (instead of five). Draw out the first four periods of the periodic table in this alternative universe. Which elements would be the equivalent of the nohle gases Halogens Alkali metals ... [Pg.378]


See other pages where Halogen gas is mentioned: [Pg.236]    [Pg.110]    [Pg.56]    [Pg.110]    [Pg.3]    [Pg.469]    [Pg.68]    [Pg.85]    [Pg.662]    [Pg.134]    [Pg.168]    [Pg.450]    [Pg.523]    [Pg.58]    [Pg.48]    [Pg.759]    [Pg.106]    [Pg.56]   
See also in sourсe #XX -- [ Pg.165 ]

See also in sourсe #XX -- [ Pg.195 ]




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Gas Phase Halogen Chain Reaction

Gas phase Halogens

Gas-solid halogenation

Halogen Photodissociation in Rare Gas Solids

Halogenation chlorine gas

Halogens and Noble Gases

He MIP-MS detection of gas phase halogens

Nonmetals halogens noble gases

Rare gas-halogen clusters

Rare gas-halogen complexes

Separation by gas chromatography of phenol-type substances including halogenated phenols (see Section

Systematic determination of highly volatile halogenated hydrocarbons (HHC) in water samples using gas chromatography

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