Phosphoryl chloride, POCI3(g), is used in the manufacturing of flame retardants. It is manufactured in an equilibrium process in which phosphorus trichloride reacts with nitrogen dioxide to form POCI3(g)and NO(g) according to the following equation: PCI 3 (g) + NO₂ (g) = POCI3 (g) + NO (g) + 228.93kJ At 298K, the equilibrium concentration of POCI3 was 0.68 mol/L, the concentration of NO was 0.72mol/L, the concentration of PCI3 was 0.62 mol/L, and the concentration of NO₂ was 0.56 mol/L. E' I U a. 6.25 moles of POCl 3 (g) is added to the 5.0 L reaction chamber. What is the new concentration of POCI3 (g) when equilibrium is re-established? PC|3 (g) NO₂(g) POCI 3 (g) E NO(g)

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Phosphoryl chloride, POCI3(g), is used in the manufacturing of flame retardants. It is manufactured in an
equilibrium process in which phosphorus trichloride reacts with nitrogen dioxide to form POCI3(g)and NO(g)
according to the following equation:
PCI 3 (g) + NO₂ (g) = POCl3 (g) + NO (g) + 228.93kJ
At 298K, the equilibrium concentration of POCI3 was 0.68 mol/L, the concentration of NO was 0.72mol/L, the
concentration of PCI 3 was 0.62 mol/L, and the concentration of NO₂ was 0.56 mol/L.
E'
I
с
E
a. 6.25 moles of POCI 3 (g) is added to the 5.0 L reaction chamber. What is the new concentration of POCI3
(g) when equilibrium is re-established?
PCI 3 (g)
+
NO₂(g)
POCI; (g)
=
+
NO(g)
Transcribed Image Text:Phosphoryl chloride, POCI3(g), is used in the manufacturing of flame retardants. It is manufactured in an equilibrium process in which phosphorus trichloride reacts with nitrogen dioxide to form POCI3(g)and NO(g) according to the following equation: PCI 3 (g) + NO₂ (g) = POCl3 (g) + NO (g) + 228.93kJ At 298K, the equilibrium concentration of POCI3 was 0.68 mol/L, the concentration of NO was 0.72mol/L, the concentration of PCI 3 was 0.62 mol/L, and the concentration of NO₂ was 0.56 mol/L. E' I с E a. 6.25 moles of POCI 3 (g) is added to the 5.0 L reaction chamber. What is the new concentration of POCI3 (g) when equilibrium is re-established? PCI 3 (g) + NO₂(g) POCI; (g) = + NO(g)
b. What would happen to the Keq value if the temperature of the reaction chamber was decreased from
*Note this question is based on the above chemical equation*
500K to 298K? Explain.
Transcribed Image Text:b. What would happen to the Keq value if the temperature of the reaction chamber was decreased from *Note this question is based on the above chemical equation* 500K to 298K? Explain.
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