II. Calculate the value of the equilibrium constant. 1) 1.60 moles CO, 1.60 moles H,O, 4.00 moles CO,, 4.00moles H, are found in a 8.00L container at 690°C at equilibrium. CO (g) + H,O (g) 2 CO, (g) + H, (g) 2) 2.00 moles of NO, and1.60 moles of N,O, are present in a 4.00 L flask at equilibrium at 20°C. Calculate the Kc at 20°C. NO22) N,O42) 3) At equilibrium at 100°C, a 2.0L flask contains: 75.1 of PCI, 0.050 mol of H,O 0.750 mol Of HCl 0.500mol of POC1, Calculate the Kc for the reaction: PCI, (s) + H,0 (g) 2 HCI (g) + POCI, (g)A

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II. Calculate the value of the equilibrium constant.
1) 1.60 moles CO, 1.60 moles H,O, 4.00 moles CO,, 4.00moles H, are found in a 8.00L container at
690°C at equilibrium.
CO (g) + H,O (g)2 CO, (g) + H, (g)
2) 2.00 moles of NO, and1.60 moles of N,O, are present in a 4.00 L flask at equilibrium at 20°C.
Calculate the Kc at 20°C.
NO29)
3) At equilibrium at 100°C, a 2.0L flask contains:
75.1 of PCI5
0.050 mol of H,O 0.750 mol Of HCl
0.500mol of POC1,
Calculate the Kc for the reaction:
PCl, (s) + H,O (g) 2 HC1 (g) + POCI, (g)
Transcribed Image Text:II. Calculate the value of the equilibrium constant. 1) 1.60 moles CO, 1.60 moles H,O, 4.00 moles CO,, 4.00moles H, are found in a 8.00L container at 690°C at equilibrium. CO (g) + H,O (g)2 CO, (g) + H, (g) 2) 2.00 moles of NO, and1.60 moles of N,O, are present in a 4.00 L flask at equilibrium at 20°C. Calculate the Kc at 20°C. NO29) 3) At equilibrium at 100°C, a 2.0L flask contains: 75.1 of PCI5 0.050 mol of H,O 0.750 mol Of HCl 0.500mol of POC1, Calculate the Kc for the reaction: PCl, (s) + H,O (g) 2 HC1 (g) + POCI, (g)
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