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  2. Silver chloride - Wikipedia

    en.wikipedia.org/wiki/Silver_chloride

    The solubility product, K sp, for AgCl in water is 1.77 × 10 −10 at room temperature, which indicates that only 1.9 mg (that is, ) of AgCl will dissolve per liter of water. [1] The chloride content of an aqueous solution can be determined quantitatively by weighing the precipitated AgCl, which conveniently is non-hygroscopic since AgCl is ...

  3. Silver halide - Wikipedia

    en.wikipedia.org/wiki/Silver_halide

    A silver halide (or silver salt) is one of the chemical compounds that can form between the element silver (Ag) and one of the halogens.In particular, bromine (Br), chlorine (Cl), iodine (I) and fluorine (F) may each combine with silver to produce silver bromide (AgBr), silver chloride (AgCl), silver iodide (AgI), and four forms of silver fluoride, respectively.

  4. Silver oxide - Wikipedia

    en.wikipedia.org/wiki/Silver_oxide

    Ag 2 O features linear, two-coordinate Ag centers linked by tetrahedral oxides. It is isostructural with Cu 2 O.It "dissolves" in solvents that degrade it. It is slightly soluble in water due to the formation of the ion Ag(OH) − 2 and possibly related hydrolysis products. [13]

  5. Metal aquo complex - Wikipedia

    en.wikipedia.org/wiki/Metal_aquo_complex

    In the binuclear ion [Co 2 (OH 2) 10] 4+ each bridging water molecule donates one pair of electrons to one cobalt ion and another pair to the other cobalt ion. The Co-O (bridging) bond lengths are 213 picometers, and the Co-O (terminal) bond lengths are 10 pm shorter. [10] The complexes [Mo 2 (H 2 O) 8] 4+ and [Rh 2 (H 2 O) 10] 4+ contain metal ...

  6. Crystallization - Wikipedia

    en.wikipedia.org/wiki/Crystallization

    Solubility of the system Na 2 SO 4H 2 O. So, whenever the conditions are favorable, crystal formation results from simply cooling the solution. Here cooling is a relative term: austenite crystals in a steel form well above 1000 °C. An example of this crystallization process is the production of Glauber's salt, a crystalline form of sodium ...

  7. Chemical bonding of water - Wikipedia

    en.wikipedia.org/wiki/Chemical_bonding_of_water

    Orbitals of same symmetry and similar energy levels can then be mixed to form a new set of molecular orbitals with bonding, nonbonding, and antibonding characteristics. In the simple MO diagram of H 2 O , the 2s orbital of oxygen is mixed with the premixed hydrogen orbitals, forming a new bonding (2 a 1 ) and antibonding orbital (4 a 1 ).

  8. Hermann–Mauguin notation - Wikipedia

    en.wikipedia.org/wiki/Hermann–Mauguin_notation

    However we write ⁠ 4 / m ⁠, not ⁠ 4 / m ⁠, because both 4 and 4 generate four points. In the case of the ⁠ 6 / m ⁠ combination, where 2, 3, 6, 3 , and 6 axes are present, axes 3 , 6 , and 6 all generate 6-point patterns, as we can see on the figure in the right, but the latter should be used because it is a rotation axis – the ...

  9. Leaving group - Wikipedia

    en.wikipedia.org/wiki/Leaving_group

    The physical manifestation of leaving group ability is the rate at which a reaction takes place. Good leaving groups give fast reactions. By transition state theory, this implies that reactions involving good leaving groups have low activation barriers leading to relatively stable transition states.