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Using the Thermodynamic Data Below, Determine the Equilibrium Constant for the Conversion

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Using the thermodynamic data below, determine the equilibrium constant for the conversion of hydrogen and oxygen to water at 500 K. Using the thermodynamic data below, determine the equilibrium constant for the conversion of hydrogen and oxygen to water at 500 K.       Compound   (kJ/mol)  S<font face= symbol ></font> [J/(mol <font face= symbol ></font> K) ] H<sub>2</sub> (g)  0) 0 130) 6 O<sub>2</sub> (g)  0) 0 205) 0 H<sub>2</sub>O (g) <font face= symbol ></font>241.8 188) 8 A) 1.13 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>23</sup> B) 8.86 <font face= symbol ></font> 10<sup>22</sup> C) 4.67 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>8</sup> D) 3.25 <font face= symbol ></font> 10<sup>21</sup> E) 3.08 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>22</sup> Using the thermodynamic data below, determine the equilibrium constant for the conversion of hydrogen and oxygen to water at 500 K.       Compound   (kJ/mol)  S<font face= symbol ></font> [J/(mol <font face= symbol ></font> K) ] H<sub>2</sub> (g)  0) 0 130) 6 O<sub>2</sub> (g)  0) 0 205) 0 H<sub>2</sub>O (g) <font face= symbol ></font>241.8 188) 8 A) 1.13 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>23</sup> B) 8.86 <font face= symbol ></font> 10<sup>22</sup> C) 4.67 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>8</sup> D) 3.25 <font face= symbol ></font> 10<sup>21</sup> E) 3.08 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>22</sup> Using the thermodynamic data below, determine the equilibrium constant for the conversion of hydrogen and oxygen to water at 500 K.       Compound   (kJ/mol)  S<font face= symbol ></font> [J/(mol <font face= symbol ></font> K) ] H<sub>2</sub> (g)  0) 0 130) 6 O<sub>2</sub> (g)  0) 0 205) 0 H<sub>2</sub>O (g) <font face= symbol ></font>241.8 188) 8 A) 1.13 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>23</sup> B) 8.86 <font face= symbol ></font> 10<sup>22</sup> C) 4.67 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>8</sup> D) 3.25 <font face= symbol ></font> 10<sup>21</sup> E) 3.08 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>22</sup> Compound Using the thermodynamic data below, determine the equilibrium constant for the conversion of hydrogen and oxygen to water at 500 K.       Compound   (kJ/mol)  S<font face= symbol ></font> [J/(mol <font face= symbol ></font> K) ] H<sub>2</sub> (g)  0) 0 130) 6 O<sub>2</sub> (g)  0) 0 205) 0 H<sub>2</sub>O (g) <font face= symbol ></font>241.8 188) 8 A) 1.13 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>23</sup> B) 8.86 <font face= symbol ></font> 10<sup>22</sup> C) 4.67 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>8</sup> D) 3.25 <font face= symbol ></font> 10<sup>21</sup> E) 3.08 <font face= symbol ></font> 10<font face= symbol ><sup></sup></font><sup>22</sup> (kJ/mol) S [J/(mol K) ]
H2 (g)
0) 0
130) 6
O2 (g)
0) 0
205) 0
H2O (g) 241.8
188) 8


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