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See also: oxidation states in {{infobox element}} [ edit ] The oxidation states are also maintained in articles of the elements (of course), and systematically in the table {{ Infobox element/symbol-to-oxidation-state }}
This is a list of known oxidation states of the chemical elements, excluding nonintegral values. The most common states appear in bold. The table is based on that of Greenwood and Earnshaw, [21] with additions noted. Every element exists in oxidation state 0 when it is the pure non-ionized element in any phase, whether monatomic or polyatomic ...
Oxidation state|symbol|format}} symbol is the element symbol; format controls the result: format=row: for the {{List of oxidation states of the elements}} table (calls {{List of oxidation states of the elements/row}}) format=IB: for an {{Infobox element}} (calls {{List of oxidation states of the elements/IB
This is a documentation subpage for Template:List of oxidation states of the elements. It may contain usage information, categories and other content that is not part of the original template page. Documentation
the transition metal elements from group 4 to group 9 (titanium group to cobalt group) should be able to display the negative oxidation states which have the same parity as their group number (e.g, ruthenium is in group 8 an even number-so are its negative oxidation states -2 and -4). most of them also show the -1 oxidation state regardless of the parity of the group number (as in the case of ...
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Each string oxidation-state-number values an oxidation-state-number eg "+3," starts with a space or a newline, followed by; a math minus sign (not a dash) OR; a plus OR; nothing; followed by number, followed by comma (every entry including the last one), a referenced-oxidation-state-number is an oxidation-state-number followed by a <ref ...
{{List of oxidation states of the elements Editors can experiment in this template's sandbox ( edit | diff ) and testcases ( create ) pages. Subpages of this template .