The standard reaction free energy AG = -194. kJ for this reaction: SnO₂(s) + 2 CO(g) → Sn(s) + 2 CO₂(g) Use this information to complete the table below. Round each of your answers to the nearest kJ. reaction 2Sn (s) + 4CO₂(g) 3 SnO₂ (s) + 6C0 (g) 2 SnO₂ (s) + 4CO (g) 3 Sn(s) + 6C0₂(g) Sn (s) + 2CO₂(g) → SnO₂ (s) + 2CO (g) - 4Gº KJ kJ x10 X
The standard reaction free energy AG = -194. kJ for this reaction: SnO₂(s) + 2 CO(g) → Sn(s) + 2 CO₂(g) Use this information to complete the table below. Round each of your answers to the nearest kJ. reaction 2Sn (s) + 4CO₂(g) 3 SnO₂ (s) + 6C0 (g) 2 SnO₂ (s) + 4CO (g) 3 Sn(s) + 6C0₂(g) Sn (s) + 2CO₂(g) → SnO₂ (s) + 2CO (g) - 4Gº KJ kJ x10 X
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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![The standard reaction free energy \( \Delta G^\circ = -194 \, \text{kJ} \) for this reaction:
\[ \text{SnO}_2(s) + 2 \text{CO}(g) \rightarrow \text{Sn}(s) + 2 \text{CO}_2(g) \]
Use this information to complete the table below. Round each of your answers to the nearest kJ.
\[
\begin{array}{|c|c|}
\hline
\text{reaction} & \Delta G^\circ \\
\hline
2 \text{Sn}(s) + 4 \text{CO}_2(g) \rightarrow 2 \text{SnO}_2(s) + 4 \text{CO}(g) & \quad \text{kJ} \\
\hline
3 \text{SnO}_2(s) + 6 \text{CO}(g) \rightarrow 3 \text{Sn}(s) + 6 \text{CO}_2(g) & \quad \text{kJ} \\
\hline
\text{Sn}(s) + 2 \text{CO}_2(g) \rightarrow \text{SnO}_2(s) + 2 \text{CO}(g) & \quad \text{kJ} \\
\hline
\end{array}
\]
**Description**: The table shows three different chemical reactions involving tin (Sn), carbon monoxide (CO), carbon dioxide (CO2), and tin(II) oxide (SnO2). Each reaction needs to have the standard free energy change (\( \Delta G^\circ \)) calculated using the provided value for another reaction. The calculated values should be rounded to the nearest kilojoule (kJ).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F39cf4cf1-4bea-420d-9794-aa5afaa501ee%2Fbd7fea83-1c9a-40ae-9f4e-47cd3ca5a2cf%2Flt3yyfo_processed.png&w=3840&q=75)
Transcribed Image Text:The standard reaction free energy \( \Delta G^\circ = -194 \, \text{kJ} \) for this reaction:
\[ \text{SnO}_2(s) + 2 \text{CO}(g) \rightarrow \text{Sn}(s) + 2 \text{CO}_2(g) \]
Use this information to complete the table below. Round each of your answers to the nearest kJ.
\[
\begin{array}{|c|c|}
\hline
\text{reaction} & \Delta G^\circ \\
\hline
2 \text{Sn}(s) + 4 \text{CO}_2(g) \rightarrow 2 \text{SnO}_2(s) + 4 \text{CO}(g) & \quad \text{kJ} \\
\hline
3 \text{SnO}_2(s) + 6 \text{CO}(g) \rightarrow 3 \text{Sn}(s) + 6 \text{CO}_2(g) & \quad \text{kJ} \\
\hline
\text{Sn}(s) + 2 \text{CO}_2(g) \rightarrow \text{SnO}_2(s) + 2 \text{CO}(g) & \quad \text{kJ} \\
\hline
\end{array}
\]
**Description**: The table shows three different chemical reactions involving tin (Sn), carbon monoxide (CO), carbon dioxide (CO2), and tin(II) oxide (SnO2). Each reaction needs to have the standard free energy change (\( \Delta G^\circ \)) calculated using the provided value for another reaction. The calculated values should be rounded to the nearest kilojoule (kJ).
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