QUESTION IMAGE
Question
¿cuáles de las siguientes ecuaciones están balanceadas? *
□ no₂ + h₂o → hno₂ + hno₃
□ co → c + o₂
□ 2 h₂ + o₂ → 2 h₂o
□ agno₃ + nacl → agcl + nano₃
! esta es una pregunta obligatoria
To determine which equations are balanced, we check the number of each atom on both sides of the arrow.
1. Analyze \( \boldsymbol{NO_2 + H_2O
ightarrow HNO_2 + HNO_3} \)
- Nitrogen (N): Left side: 1 (in \( NO_2 \)). Right side: 1 (in \( HNO_2 \)) + 1 (in \( HNO_3 \)) = 2. Wait, no—wait, let's recount. Wait, \( NO_2 \): 1 N. \( HNO_2 \): 1 N, \( HNO_3 \): 1 N. So total N on right: 2? Wait, no, the equation is actually balanced? Wait, no, let's do each atom:
- N: Left: 1 (from \( NO_2 \)). Right: 1 (\( HNO_2 \)) + 1 (\( HNO_3 \)) = 2. Wait, that's not balanced. Wait, maybe I made a mistake. Wait, the correct balancing for this reaction is \( 2NO_2 + H_2O
ightarrow HNO_2 + HNO_3 \)? No, wait, let's check again. Wait, original equation: \( NO_2 + H_2O
ightarrow HNO_2 + HNO_3 \). Let's count H: Left: 2 (in \( H_2O \)). Right: 1 (in \( HNO_2 \)) + 1 (in \( HNO_3 \)) = 2. O: Left: 2 (in \( NO_2 \)) + 1 (in \( H_2O \)) = 3. Right: 2 (in \( HNO_2 \)) + 3 (in \( HNO_3 \)) = 5. Wait, that's not balanced. Wait, maybe I misremember. Wait, actually, the correct balanced equation is \( 2NO_2 + H_2O = HNO_2 + HNO_3 \)? No, that still doesn't add up. Wait, maybe the user's equation is written incorrectly, but let's check the other options first.
2. Analyze \( \boldsymbol{CO
ightarrow C + O_2} \)
- Carbon (C): Left: 1 (in \( CO \)). Right: 1 (in \( C \)). Balanced for C.
- Oxygen (O): Left: 1 (in \( CO \)). Right: 2 (in \( O_2 \)). Not balanced. So this equation is not balanced.
3. Analyze \( \boldsymbol{2H_2 + O_2
ightarrow 2H_2O} \)
- Hydrogen (H): Left: \( 2 \times 2 = 4 \) (in \( 2H_2 \)). Right: \( 2 \times 2 = 4 \) (in \( 2H_2O \)). Balanced.
- Oxygen (O): Left: 2 (in \( O_2 \)). Right: \( 2 \times 1 = 2 \) (in \( 2H_2O \)). Balanced. So this equation is balanced.
4. Analyze \( \boldsymbol{AgNO_3 + NaCl
ightarrow AgCl + NaNO_3} \)
- Silver (Ag): Left: 1 (in \( AgNO_3 \)). Right: 1 (in \( AgCl \)). Balanced.
- Nitrogen (N): Left: 1 (in \( AgNO_3 \)). Right: 1 (in \( NaNO_3 \)). Balanced.
- Oxygen (O): Left: 3 (in \( AgNO_3 \)). Right: 3 (in \( NaNO_3 \)). Balanced.
- Sodium (Na): Left: 1 (in \( NaCl \)). Right: 1 (in \( NaNO_3 \)). Balanced.
- Chlorine (Cl): Left: 1 (in \( NaCl \)). Right: 1 (in \( AgCl \)). Balanced. So this equation is balanced.
Wait, let's re-examine the first equation \( NO_2 + H_2O
ightarrow HNO_2 + HNO_3 \). Let's count atoms again:
- N: Left: 1 (in \( NO_2 \)). Right: 1 (\( HNO_2 \)) + 1 (\( HNO_3 \)) = 2. Not balanced.
- H: Left: 2 (in \( H_2O \)). Right: 1 (\( HNO_2 \)) + 1 (\( HNO_3 \)) = 2. Balanced for H.
- O: Left: 2 (in \( NO_2 \)) + 1 (in \( H_2O \)) = 3. Right: 2 (in \( HNO_2 \)) + 3 (in \( HNO_3 \)) = 5. Not balanced. So this equation is not balanced.
So the balanced equations are \( 2H_2 + O_2
ightarrow 2H_2O \) and \( AgNO_3 + NaCl
ightarrow AgCl + NaNO_3 \), and also, wait, let's check the first equation again. Wait, maybe the first equation is actually balanced? Wait, no, let's use the correct method. Let's list the number of each atom for each equation:
Equation 1: \( NO_2 + H_2O
ightarrow HNO_2 + HNO_3 \)
- N: 1 vs. 2 → Not balanced.
- H: 2 vs. 2 → Balanced.
- O: 3 vs. 5 → Not balanced. So not balanced.
Equation 2: \( CO
ightarrow C + O_2 \)
- C: 1 vs. 1 → Balanced.
- O: 1 vs. 2 → Not balanced. So not balanced.
Equation 3: \( 2H_2 + O_2
ightarrow 2H_2O \)
- H: 4 vs. 4 → Balanced.
- O: 2 vs. 2 → Balanced. So balanced.
Equation 4: \( AgNO_3 + NaCl
ightarrow AgCl + NaNO_3 \)
- Ag: 1 vs. 1 → Balanced.
- N: 1…
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The balanced equations are:
- \( \boldsymbol{2H_2 + O_2
ightarrow 2H_2O} \)
- \( \boldsymbol{AgNO_3 + NaCl
ightarrow AgCl + NaNO_3} \)
(Additionally, if the first equation was intended to have a coefficient of 2 for \( NO_2 \), it would be balanced, but as written, it is not.)