Although we usually think of substances as "burning" only in oxygen gas, the process of rapid oxidation to produce a flame may also take place in other strongly oxidizing gases. For example, when iron is heated and placed in pure chlorine gas, the iron "burns" according to the following (unbalanced) reaction: Fe (s) + Cl₂ (9) ->> FeCl3 (s) How many grams of iron(III) chloride (FeCl3) result when 15.5 g of iron (Fe) is reacted with an excess of chlorine gas? Balance the equation first. Edit View Insert Format Tools Table 12pt Paragraph BIUA 2 - T² v: M V

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Although we usually think of substances as "burning" only in oxygen gas, the process of rapid
oxidation to produce a flame may also take place in other strongly oxidizing gases. For example,
when iron is heated and placed in pure chlorine gas, the iron "burns" according to the following
(unbalanced) reaction:
Fe(s) + Cl₂ (9) →→FeCl3 (s)
How many grams of iron(III) chloride (FeCl3) result when 15.5 g of iron (Fe) is reacted with an excess
of chlorine gas? Balance the equation first.
Edit View Insert Format Tools Table
12pt
Paragraph V
B IU A
T²
Transcribed Image Text:Although we usually think of substances as "burning" only in oxygen gas, the process of rapid oxidation to produce a flame may also take place in other strongly oxidizing gases. For example, when iron is heated and placed in pure chlorine gas, the iron "burns" according to the following (unbalanced) reaction: Fe(s) + Cl₂ (9) →→FeCl3 (s) How many grams of iron(III) chloride (FeCl3) result when 15.5 g of iron (Fe) is reacted with an excess of chlorine gas? Balance the equation first. Edit View Insert Format Tools Table 12pt Paragraph V B IU A T²
Expert Solution
Step 1

According to the reaction,

The given reaction is,

Fes + Cl2g  FeCl3s

The mass of the iron (Fe) reacted is given by = 15.5 g

 

Find - The mass of the FeCl3 produced

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