Please help , thank you ! 15.a)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 0.304 M HI, 4.08×10-2 M H2 and 4.08×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 3.33×10-2 mol of I2(g) is added to the flask? [HI] = M [H2] = M [I2] = M 15.b) 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 0.305 M HI, 4.09×10-2 M H2 and 4.09×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 0.162 mol of HI(g) is added to the flask? [HI] = M [H2] = M [I2] = M Only typed answer needed

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Please help , thank you ! 15.a)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 0.304 M HI, 4.08×10-2 M H2 and 4.08×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 3.33×10-2 mol of I2(g) is added to the flask? [HI] = M [H2] = M [I2] = M 15.b) 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 0.305 M HI, 4.09×10-2 M H2 and 4.09×10-2 M I2. What will be the concentrations of the three gases once equilibrium has been reestablished, if 0.162 mol of HI(g) is added to the flask? [HI] = M [H2] = M [I2] = M Only typed answer needed
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