At Westonci.ca, we make it easy for you to get the answers you need from a community of knowledgeable individuals. Join our Q&A platform and get accurate answers to all your questions from professionals across multiple disciplines. Experience the convenience of finding accurate answers to your questions from knowledgeable experts on our platform.
Sagot :
To solve for the final chemical equation from the given intermediate chemical equations, we will follow each step carefully to combine and simplify the equations.
We are given the following intermediate chemical equations:
1. [tex]\( P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \)[/tex]
2. [tex]\( P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \)[/tex]
Our goal is to combine these equations to form a single balanced equation. Let's go through the steps:
### Step 1: Write down each equation.
[tex]\[ \text{Equation 1: } P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \][/tex]
[tex]\[ \text{Equation 2: } P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \][/tex]
### Step 2: Add the two equations together.
When adding chemical equations together, we simply add the reactants and the products.
[tex]\[ P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \][/tex]
[tex]\[ + \, P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \][/tex]
Combining the equations:
[tex]\[ P_4O_{10}(s) + P_4(s) + 3O_2(g) + 5O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
### Step 3: Combine like terms to simplify the equation.
[tex]\[ P_4O_{10}(s) + P_4(s) + 3O_2(g) + 5O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
Combine the oxygen terms:
[tex]\[ P_4O_{10}(s) + P_4(s) + 8O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
### Step 4: Cancel out the same substances on both sides.
We can cancel out [tex]\( P_4O_{10}(s) \)[/tex] and [tex]\( P_4(s) \)[/tex] from both sides of the equation:
[tex]\[ P_4O_{10}(s) + 8O_2(g) \rightarrow P_4O_{10}(s) + P_4(s) \][/tex]
### Result:
The final balanced chemical equation is:
[tex]\[ P_4O_{10}(s) + 8O_2(g) \rightarrow P_4O_{10}(s) + P_4(s) \][/tex]
This equation shows the reactants and products in a balanced form, detailing the transformation processes in the given chemical reactions.
We are given the following intermediate chemical equations:
1. [tex]\( P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \)[/tex]
2. [tex]\( P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \)[/tex]
Our goal is to combine these equations to form a single balanced equation. Let's go through the steps:
### Step 1: Write down each equation.
[tex]\[ \text{Equation 1: } P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \][/tex]
[tex]\[ \text{Equation 2: } P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \][/tex]
### Step 2: Add the two equations together.
When adding chemical equations together, we simply add the reactants and the products.
[tex]\[ P_4O_{10}(s) \rightarrow P_4(s) + 3O_2(g) \][/tex]
[tex]\[ + \, P_4(s) + 5O_2(g) \rightarrow P_4O_{10}(s) \][/tex]
Combining the equations:
[tex]\[ P_4O_{10}(s) + P_4(s) + 3O_2(g) + 5O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
### Step 3: Combine like terms to simplify the equation.
[tex]\[ P_4O_{10}(s) + P_4(s) + 3O_2(g) + 5O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
Combine the oxygen terms:
[tex]\[ P_4O_{10}(s) + P_4(s) + 8O_2(g) \rightarrow P_4(s) + P_4O_{10}(s) \][/tex]
### Step 4: Cancel out the same substances on both sides.
We can cancel out [tex]\( P_4O_{10}(s) \)[/tex] and [tex]\( P_4(s) \)[/tex] from both sides of the equation:
[tex]\[ P_4O_{10}(s) + 8O_2(g) \rightarrow P_4O_{10}(s) + P_4(s) \][/tex]
### Result:
The final balanced chemical equation is:
[tex]\[ P_4O_{10}(s) + 8O_2(g) \rightarrow P_4O_{10}(s) + P_4(s) \][/tex]
This equation shows the reactants and products in a balanced form, detailing the transformation processes in the given chemical reactions.
Thank you for choosing our platform. We're dedicated to providing the best answers for all your questions. Visit us again. We appreciate your visit. Our platform is always here to offer accurate and reliable answers. Return anytime. Thank you for using Westonci.ca. Come back for more in-depth answers to all your queries.