Iron and fluorine can be form the compounds FeF2 (iron [II] fluoride)and FeF3 (iron [III] fluoride or ferric fluoride). The equations are Fe + (F2) = FeF2 and 2 Fe + 3 (F2) = 2 (FeF3)
where the engine number is located it will have FE for 2000 and F2 for 2200
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F2+ most stable>f2>f2-
The oxidation half-reaction is: Fe => Fe+3 + 3e-, and the reduction half-reaction is: F2 + 2e- => 2 F-1. For a complete equation, the oxidation half-reaction as written must be multiplied by 2 and added to the reduction half-reaction as written multiplied by 3 to result in an overall reaction of 2 Fe + 3 F2 = 2 FeF3.
1 mole F2 = 37.996g F2 = 6.022 x 1023 molecules F2 85g F2 x 6.022 x 1023 molecules F2/37.996g F2 = 1.3 x 1024 molecules F2
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f2 generation
Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.Double click on the cell or press the F2 key.
the answer is 1
F2 has a linear shape.
F2, fluorine, is an element.