6. Given the reaction: H:(g) + 1(g) = 0.0623 mole of H,(g), 0.0414 mole of 1-(g), and 0.224 mole of HI(g) are placed in a 10.0 L container at 430. C. a) Is the reaction as written exothermic or endothermic? (refer to #2. above) 2HI(g) K, 54.3 at 430 °C. b) Does increasing the temperature increase or decrease the amount of product? c) Is the system at equilibrium at 430 "C?

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Chapter5: Thermochemistry
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= 2HI(g) K, = 54.3 at 430 °C.
6. Given the reaction: H,(g) + 1(g)
0.0623 mole of H,(g), 0.0414 mole of I(g), and 0.224 mole of HI(g) are placed in a 10.0 L container at 430. °C.
a) Is the reaction as written exothermic or endothermic? (refer to #2. above)
b) Does increasing the temperature increase or decrease the amount of product?
c) Is the system at equilibrium at 430 °C?
d) If the system is not at equilibrium, in which direction will the reaction proceed to reach equilibrium?
e) What are the equilibrium concentrations of H3, I, and HI at 430 °C?
SHOW WORK
Transcribed Image Text:= 2HI(g) K, = 54.3 at 430 °C. 6. Given the reaction: H,(g) + 1(g) 0.0623 mole of H,(g), 0.0414 mole of I(g), and 0.224 mole of HI(g) are placed in a 10.0 L container at 430. °C. a) Is the reaction as written exothermic or endothermic? (refer to #2. above) b) Does increasing the temperature increase or decrease the amount of product? c) Is the system at equilibrium at 430 °C? d) If the system is not at equilibrium, in which direction will the reaction proceed to reach equilibrium? e) What are the equilibrium concentrations of H3, I, and HI at 430 °C? SHOW WORK
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