Chemistry
10th Edition
ISBN: 9781305957404
Author: Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher: Cengage Learning
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- The equilibrium constant, K, for the following reaction is 10.5 at 350 K. 2CH,Cl2(g) ? CH,(g) + CCl4(g) An equilibrium mixture of the three gases in a 1.00 L flask at 350 K contains 5.43x10-2 M CH,Cl,, 0.176 M CH, and 0.176 M CCL. What will be the concentrations of the three gases once equilibrium has been reestablished, if 0.124 mol of CH,(g) is added to the flask? [CH,Cl,] = M [CH4) M [CCL] Marrow_forwardThe equilibrium constant, K, for the following reaction is 1.37×10-2 at 503 K. PCl5 (g) PCl3 (g) + Cl2 (g) An equilibrium mixture of the three gases in a 13.9 L container at 503 K contains 0.303 M PCl5, 6.44×10-2 M PCl3 and 6.44×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if the equilibrium mixture is compressed at constant temperature to a volume of 6.07 L? [PCl5] = M [PCl3] = M [Cl2] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 2.53×10-2 at 519 K. PCl5(g) PCl3(g) + Cl2(g) An equilibrium mixture of the three gases in a 17.8 L container at 519 K contains 0.233 M PCl5, 7.68×10-2 M PCl3 and 7.68×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if the equilibrium mixture is compressed at constant temperature to a volume of 8.95 L? [PCl5] = M [PCl3] = M [Cl2] = Marrow_forward
- The equilibrium constant, K, for the following reaction is 1.80×10-2 at 698 K. 2HI(g) H2(g) + I2(g) An equilibrium mixture of the three gases in a 1.00 L flask at 698 K contains 0.314 M HI, 4.21×10-2 M H2 and 4.21×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.56×10-2 mol of H2(g) is added to the flask? [HI] = M [H2] = M [I2] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 1.80×10-2 at 698 K. 2HI(g) H2(g) + I2(g) An equilibrium mixture of the three gases in a 1.00 L flask at 698 K contains 0.329 M HI, 4.41×10-2 M H2 and 4.41×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 0.249 mol of HI(g) is added to the flask? [HI] = M [H2] = M [I2] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 1.29x10-2 at 600 K. COCI2(9)co(g) + Cl2(g) An equilibrium mixture of the three gases in a 1.00 L flask at 600 K contains 0.249 M COCI2, 5.67x102 M CO and 5.67x10 2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 3.50x102 mol of Cl2(g) is added to the flask? (COCI2) = M [CO] M [Cl2) M.arrow_forward
- Hydrogen iodide decomposes according to the reaction 2HI(g) = H₂(g) + 1₂ (g) A sealed 1.50-L container initially holds 0.00623 mol of H₂, 0.00414 mol of 1₂, and 0.0244 mol of HI at 703 K. When equilibrium is reached, the concentration of H₂(g) is 0.00524 M. What are the equilibrium concentrations of HI (g) and I₂ (g)? Round each of your answers to 3 significant figures. Part 1 of 2 [HI] = M Part 2 of 2 [¹2]eq = M x10 x10 X x Ś Sarrow_forwardThe equilibrium constant, K, for the following reaction is 1.47×10-2 at 308 K. NH4HS(s) NH3(g) + H2S(g) An equilibrium mixture in a 15.3 L container at 308 K contains 0.247 mol NH4HS(s), 0.159 M NH3 and 9.25×10-2 M H2S. What will be the concentrations of the two gases once equilibrium has been reestablished, if the equilibrium mixture is compressed at constant temperature to a volume of 8.49 L? [NH3] = M [H2S] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 1.20x10-2 at 500K. PCI5(g) PCI3(g) + Cl2(g) If an equilibrium mixture of the three gases in a 15.3 L container at 500K contains 0.359 mol of PCI5(g) and 0.228 mol of PC13, the equilibrium concentration of Cl2 is М.arrow_forward
- The equilibrium constant, K, for the following reaction is 1.80×10-2 at 510 K. PCl5(g) PCl3(g) + Cl2(g) An equilibrium mixture of the three gases in a 7.99 L container at 510 K contains 0.377 M PCl5, 8.23×10-2 M PCl3 and 8.23×10-2 M Cl2. What will be the concentrations of the three gases once equilibrium has been reestablished, if the volume of the container is increased to 18.5 L? [PCl5] = M [PCl3] = M [Cl2] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 5.39×10-3 at 680 K. NH4I (s) NH3 (g) + HI (g) An equilibrium mixture in a 18.7 L container at 680 K contains 0.270 mol NH4I(s), 9.62×10-2 M NH3 and 5.60×10-2 M HI. What will be the concentrations of the two gases once equilibrium has been reestablished, if the equilibrium mixture is compressed at constant temperature to a volume of 10.1 L? [NH3] = M [HI] = Marrow_forwardThe equilibrium constant, K, for the following reaction is 3.46x102 at 630 K. COCI₂(g) CO(g) + Cl₂(g) An equilibrium mixture of the three gases in a 11.8 L container at 630 K contains 0.217 M COCI₂, 8.67x10-2 M CO and 8.67x10-2 M Cl₂. What will be the concentrations of the three gases once equilibrium has been reestablished, if the equilibrium mixture is compressed at constant temperature to a volume of 4.74 L? [COCI₂] = [co] [Cl₂] = M ΣΣarrow_forward
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