This is a combination reaction, where two or more substances combine to form a single product. In this case, hydrogen gas (H2) and iodine gas (I2) react to form hydrogen iodide gas (2HI).
This reaction is not at equilibrium yet since the reaction quotient, Q, is not equal to the equilibrium constant, K. In this case, Q = (0.03)^2 / ((0.01)*(0.02))^2 = 0.45, which is greater than K = 0.15. Therefore, the reaction will proceed in the reverse direction to reach equilibrium.
2H+ + SO42- + Ca2+ + 2I- CaSO4 + 2H+ + 2I-
The balanced chemical equation for the reaction of hydroiodic acid (HI) with calcium hydroxide (Ca(OH)2) is: 2HI + Ca(OH)2 → CaI2 + 2H2O
2H+ + SO42- + Ca2+ + 21 > CaSO4 + 2H+ + 21-
The symbol equation for the reaction between iodine and hydrogen is: I2 + H2 -> 2HI.
Yes, the reaction of hydrogen gas (H2) with iodine gas (I2) to produce hydrogen iodide gas (2HI) is a combination reaction. In this reaction, two elements (hydrogen and iodine) combine to form a single compound (hydrogen iodide).
H2(g) + I2(g) 2HI(g)18.6
This reaction is not at equilibrium yet since the reaction quotient, Q, is not equal to the equilibrium constant, K. In this case, Q = (0.03)^2 / ((0.01)*(0.02))^2 = 0.45, which is greater than K = 0.15. Therefore, the reaction will proceed in the reverse direction to reach equilibrium.
2H+ + SO42- + Ca2+ + 2I- CaSO4 + 2H+ + 2I-
The balanced equation for BaCO3 + 2HI is BaCO3 + 2HI → BaI2 + H2O + CO2.
The reaction between hydrogen gas and iodine vapor forms hydrogen iodide gas. The balanced chemical equation for this reaction is: H2(g) + I2(g) -> 2HI(g)
1Ca(OH)2 + 2HI ---> 2H2O + 1CaI2
The balanced chemical equation for the reaction of hydroiodic acid (HI) with calcium hydroxide (Ca(OH)2) is: 2HI + Ca(OH)2 → CaI2 + 2H2O
2H+ + SO42- + Ca2+ + 21 > CaSO4 + 2H+ + 21-
The symbol equation for the reaction between iodine and hydrogen is: I2 + H2 -> 2HI.
If the volume of the reaction vessel is decreased, the reaction will shift towards the side with fewer gas molecules to relieve the pressure. In this case, since there are 3 moles of gas on the left side (H2 and I2) and only 2 moles of gas on the right side (2HI), the reaction will shift to the right to decrease the pressure, producing more HI.
The balanced equation for the reaction between hydrogen gas (H2) and iodine gas (I2) to form hydrogen iodide gas (HI) is: H2 + I2 → 2HI