4 LiBr + 1 Co(SO3)2 → 2 Li2SO3 + 1 CoBr4Question 13Select one:a.Single replacementb.Double replacementc.Synthesisd.Acid-basee.Decompositionf.Combustion
Question
4 LiBr + 1 Co(SO3)2 → 2 Li2SO3 + 1 CoBr4
Question 13
Select one:
- a. Single replacement
- b. Double replacement
- c. Synthesis
- d. Acid-base
- e. Decomposition
- f. Combustion
Solution
Break Down the Problem
- Identify the type of reaction taking place.
- Analyze the reactants and products to determine how they interact.
Relevant Concepts
- Single Replacement Reaction: One element replaces another in a compound.
- Double Replacement Reaction: Exchange of ions between two compounds.
- Synthesis Reaction: Two or more reactants combine to form a single product.
- Decomposition Reaction: A single compound breaks down into two or more products.
- Combustion Reaction: A compound reacts with oxygen, producing energy in the form of heat and light.
Analysis and Detail
- In the provided equation, 4 LiBr + 1 Co(SO3)2 → 2 Li2SO3 + 1 CoBr4, we see two different compounds exchanging parts:
- The lithium (Li) and bromine (Br) from LiBr are reacting with the cobalt (Co) and sulfate (SO3) groups from Co(SO3)2.
- The products include lithium sulfite (Li2SO3) and cobalt (IV) bromide (CoBr4), indicating that both lithium and cobalt have shifted their associations with sulfate and bromide.
Verify and Summarize
Given that this reaction involves the exchange of ions between two compounds, it fits the definition of a double replacement reaction.
Final Answer
The correct answer is b. Double replacement.
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