...+13o2
To determine the limiting reagent, we need to compare the amount of CO2 that could be produced from each reactant. First, convert the volumes to moles using the ideal gas law. Then, use the coefficients from the balanced chemical equation to find the amount of CO2 that each reactant could produce. The limiting reagent is the one that produces the least amount of CO2. The volume of CO2 formed can be calculated using the stoichiometry of the limiting reagent.
The balanced equation for the reaction between hydrogen gas (H2) and carbon disulfide (CS2) to produce methane (CH4) is: 4H2 + CS2 → 4H2S + CH4. This means that for every 4 moles of hydrogen gas, 1 mole of methane is produced. Since 1 mole of any gas at STP occupies 22.4 liters, you would need 5.6 liters of hydrogen gas to produce 2.5 liters of methane.
Based on the balanced chemical equation for the reaction between hydrogen gas (H2) and carbon disulfide (CS2) to produce methane (CH4), you need a 1:1 mole ratio of H2 to CH4. At STP conditions, 1 mole of any gas occupies 22.4 L. Therefore, if 2.50 L of CH4 is produced, you would need 2.50 L of H2 to react completely with CS2.
Since the reaction is balanced, we can use the stoichiometry to find the volume of hydrogen gas needed. According to the reaction equation: 1 mol of CS2 reacts with 4 mol of H2 to produce 1 mol of CH4. So, 2.50 L of CH4 will need 2.50 mol of H2. At STP, 1 mol of any gas occupies 22.4 L, thus 2.50 mol of H2 will be 56 L.
* MT 103 plus is a subset of MT 103 * Used for STP * Only the option A is used with certain fields
what do these fit ?? (stp) sa6479 and (stp) sa10115 air
Gold is a solid at standard temperature and pressure (STP).
Using the ideal gas law, we can calculate that 0.640 g of SO2 at STP is approximately 0.0286 moles. The balanced chemical equation for the reaction 2SO2 + O2 → 2SO3 indicates that 1 mole of SO2 reacts with 1 mole of O2. Therefore, 0.0286 moles of SO2 would require 0.0286 moles of O2. At STP, 1 mole of gas occupies 22.4 L, which is equivalent to 22,400 mL. So, 0.0286 moles of O2 would occupy 643 mL.
STP diameters are restricted by convergence times.
Argon is a gas at STP. It becomes a liquid below -186oC and solid below -190oC at StP
STP is a stimulant and a hallucinogen.
STP Airways was created in 2008.