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What is the result of this reaction involving halogens? chlorine+ sodium bromide There is no reaction Chlorine displaces bromide in the compound Chlorine replaces sodium in the compound

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What is the result of this reaction involving halogens?
chlorine+ sodium bromide
There is no reaction
Chlorine displaces bromide in the compound
Chlorine replaces sodium in the compound

What is the result of this reaction involving halogens? chlorine+ sodium bromide There is no reaction Chlorine displaces bromide in the compound Chlorine replaces sodium in the compound

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WhitneyMaster · Tutor for 5 years

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2NaCl + Br2<br />This allows us to conclude that the result of this reaction is Sodium Chloride (\( \mathrm{NaCl} \)) and Bromine (<br />\( \mathrm{Br}_2 \)).

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## Step 1: <br />The problem requires knowledge relating to chemical reactions, specifically the single displacement reaction within the group of halogens. <br /><br />## Step 2: <br />In a single displacement reaction, the halogen Chlorine (\( \mathrm{Cl}_2 \)) being more reactive than Bromine, is able to displace Bromide (element of Sodium Bromide (\( \mathrm{NaBr} \))) to form Sodium Chloride (\( \mathrm{NaCl} \))and Bromine (\( \mathrm{Br}_2 \)). <br /><br />### Given the above explanation, we thus write out our balanced chemical representation as: <br />### **\( \mathrm{Cl}_2 + 2\mathrm{NaBr} \rightarrow 2\mathrm{NaCl} + \mathrm{Br}_2 \)** <br /><br />## Step 3: <br />The balanced chemical equation now represents the single displacement reaction taking place between chlorine (\( \mathrm{Cl}_2 \)) and Sodium Bromide (\( \mathrm{NaBr} \)).
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