For the reaction N₂ + 3H₂ → 2NH₃, the mole ratio of hydrogen gas to nitrogen gas is 3:1. Since 6 liters of hydrogen gas is used, you would need 2 liters of nitrogen gas at STP for this reaction according to the stoichiometry of the reaction.
There are 1 mole of nitrogen gas molecules contain 2 nitrogen atoms. Therefore, 0.25 mole of nitrogen gas would contain 0.25 * 2 = 0.5 moles of nitrogen atoms.
nitrogen gas and hydrogen gas
Nitrogen and hydrogen react to form ammonia. This is the reaction in the Haber process, in which the gases are mixed at high pressure and moderately high temperature and passed over an iron catalyst.
The balanced chemical equation for the reaction is: N2 + 3H2 → 2NH3 From the equation, 1 mole of N2 reacts with 3 moles of H2 to produce 2 moles of NH3. Therefore, to convert 9.0 moles of H2, you would need 9.0/3 = 3.0 moles of N2.
For the reaction N₂ + 3H₂ → 2NH₃, the mole ratio of hydrogen gas to nitrogen gas is 3:1. Since 6 liters of hydrogen gas is used, you would need 2 liters of nitrogen gas at STP for this reaction according to the stoichiometry of the reaction.
There are 1 mole of nitrogen gas molecules contain 2 nitrogen atoms. Therefore, 0.25 mole of nitrogen gas would contain 0.25 * 2 = 0.5 moles of nitrogen atoms.
nitrogen gas and hydrogen gas
N2 + 3H2 --> 2NH3 You have been told, indirectly, that nitrogen limits and will drive the reaction. 3 moles N2 (2 moles NH3/1 mole N2) = 6 moles ammonia gas produced ========================
Hydrogen gas has the lowest mass per mole, with a molar mass of approximately 2 grams per mole.
Nitrogen and hydrogen react to form ammonia. This is the reaction in the Haber process, in which the gases are mixed at high pressure and moderately high temperature and passed over an iron catalyst.
The balanced chemical equation for the reaction is: N2 + 3H2 → 2NH3 From the equation, 1 mole of N2 reacts with 3 moles of H2 to produce 2 moles of NH3. Therefore, to convert 9.0 moles of H2, you would need 9.0/3 = 3.0 moles of N2.
When 1 liter of nitrogen gas reacts with 3 liters of hydrogen gas, they will react to produce 2 liters of ammonia gas. This follows the balanced chemical equation: N2 + 3H2 → 2NH3. Each mole of nitrogen reacts with 3 moles of hydrogen to produce 2 moles of ammonia.
When hydrogen combines with nitrogen, it forms ammonia gas (NH3).
Nitrogen gas can be synthesized to ammonia through a process called Haber-Bosch process, which involves reacting nitrogen gas with hydrogen gas at high pressure and temperature in the presence of an iron catalyst. This reaction converts the nitrogen gas into ammonia which can then be used as a fertilizer or in various industrial processes.
the usual state of both hydrogen and nitrogen are gas.
Ammonia gas is a compound. It is composed of two elements, nitrogen and hydrogen, that are chemically bonded together in a fixed ratio (NH3).