Ví dụ về việc sử dụng Oxidation state trong Tiếng anh và bản dịch của chúng sang Tiếng việt
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Their usual oxidation state is +2.
The sulfur can be considered to be in its +5 oxidation state.
The most common oxidation state of carbon is +4 or -4.
In(III) is the more stable oxidation state.
The oxidation state of the sulfur atom is +6, as in sulfuric acid.
In this compound magnesium has an oxidation state of 2+.
Because of this oxidation state change, goethite is commonly seen as a pseudomorph.
In this case, the chlorine atom is in the +5 oxidation state.
Selenium also occurs in the III oxidation state, but only in the Se412+ cation;
Rare earths are found with non-metals, usually in the 3+ oxidation state.
Vanadium is in several forms in oxidation state V(V); HVO42- and H2VO4-.
Experiments indicate that it also possesses a moderately stable II oxidation state.
The- 1 oxidation state occurs in compounds containing the Au- anion, called aurides.
Uranium tetrachloride(UCl4) is compound of uranium in oxidation state +4.
Alkaline earth metals have an oxidation state of +2 in virtually all of their compounds.
Ionized manganese is used industrially as of various colors,which depend on the oxidation state of the ions.
Because of this high oxidation state, many titanium compounds have a high degree of covalent bonding.
There are two common ways of computing the oxidation state of an atom in a compound.
The most common oxidation state of nickel is +2, though 0, +1 and +3 Ni complexes are observed.
In the case of methane, the lowest possible oxidation state for carbon(- 4) is reached.
Uranium is in oxidation state VI in UO2(CO3)34-(aq) and is found in the reduced form UO2(s).
The color shown by plutonium solutions depends on both the oxidation state and the nature of the acid anion.
Depending on their oxidation state manganese ions have various colors and are used industrially as pigments.
The Roman numerals in the name indicate that the gold has an oxidation state of +3, which is common for gold compounds.
Transition metals, in particular, are known to form differentcolors of precipitates depending on their elemental identity and oxidation state.
It is used asa component of MRI contrast agents, as, in the 3+ oxidation state, the metal has 7 unpaired f electrons.
Compounds of lead are found in the +2 oxidation state rather than the +4 state common with lighter members of the carbon group.
Mn+2 often competes with Mg+2 in biological systems,and manganese compounds where manganese is in oxidation state +7 are powerful oxidizing agents.
A typical transition metal has more than one possible oxidation state because it has a partially filled d orbital.
Unlike many other elements,zinc essentially exists in only one oxidation state, 2+, which simplifies purification of the chloride.