A correct mole ratio for the relationship between nitrogen and hydrogen gases in the following equation is ______________
N2(g) + 3 H2(g) → 2 NH3(g)
Step 1: Explanation;
A mole ratio is the ratio between the amounts in moles of any two compounds involved in a chemical reaction. The mole ratio can be determined by examining the coefficients in front of formulas in a balanced chemical equation.
Molar ratios are used as conversion factors to relate the number of moles of one substance with the number of moles of another substance
Step 2: write the balanced chemical equation.
N2(g) + 3 H2(g) -----> 2 NH3(g)
Mole ration between N2 and H2 : ( 1 mole N2 ) / ( 3 mole H2 ) or ( 3 mole H2 ) / ( 1 mole N2 )
A correct mole ratio for the relationship between nitrogen and hydrogen gases in the following equation...
The ratio obtained from the coefficients in a balanced chemical equation is called the mole ratio. Use the balanced chemical reaction shown in model 2 to answer the following questions. 1. What is the mole ratio for the reaction in model 2 and explain why this is called a mole ratio. 2. If 0.052 mol N2 are reacted, how many mol NH3 are formed? Using dimensional analysis, show how you calculated your answer. 3. If 0.052 mol N2 are reacted,...
Nitrogen and hydrogen gases are combined at high temperatures and pressures to produce ammonia, NH3. If 100. g of N2 is reacted with excess H2, what number of moles of NH3 will be formed?
Ammonia (NH3) is formed via the following reaction between hydrogen (H2) and nitrogen (N2): 3H2(g) + N2(g) 22 NH3(g) For a particular experiment at equilibrium, it was found that the molar concentrations of the three species were as follows: [H2(g)] = 0.162 M, [N2(g)] = 0.100 M. and [NH3(g)] = 0.0100 M. What is the equilibrium constant (K) for this experiment? 4.25 0.617 1.622 0.412 0.235
Nitric acid is often manufactured from the atmospheric gases nitrogen and oxygen, plus hydrogen prepared by reforming of natural gas, in a two-step process. In the first step, nitrogen and hydrogen react to form ammonia:N2(g)+3H2(g)→2NH3(g)In the second step, ammonia and oxygen react to form nitric acid and water:NH3(g)+2O2(g)→HNO3(g)+H2O(g)Write the net chemical equation for the production of nitric acid from nitrogen, hydrogen and oxygen. Be sure your equation is balanced.
Mole Relationships in Chemical EquationsAmmonia is produced by the reaction of hydrogen and nitrogen.N2(g) + 3H2(g) → 2NH3(g) ammoniaa. How many moles of H2 are needed to react with 1.0 mole N2?b. How many moles of N2 reacted if 0.60 mole NH3 is produced?c. How many moles of NH3 are produced when 1.4 moles H2 reacts?
Nitrogen gas and hydrogen gas can ve converted into ammonia
gas as shown in the reaction equation listed below. Answer each of
the questions listed below regarding this reaction.
1. Nitrogen gas and hydrogen gas can be converted into ammonia gas as shown in the reaction equation listed below. Answer each of the questions listed below regarding this reaction. N2(g) + 3 H2(g) = 2 NH3(g) AH = -92.2 kJ/mole and K = 2.6 x 108 This reaction is an...
5.0g of nitrogen is reacted with 5.0 g of hydrogen to produce ammonia according to the chemical equation shown below. Which one of the following statements is false? N2 (g) + 3 H2 (g) > 2 NH3 (g) A) 2.8 grams of hydrogen are left over. B) Nitrogen is the limiting reactant C) The theoretical yield of ammonia is 6.1 g D) Hydrogen is the excess reactant
please help
7. Assuming all gases are at t Fuck I sent the same one twice. 7. Assuming all gases are at the same temperature and pressure, how many milliliters of hydrogen iodide (HI) are formed from 250 mL of iodine vapor? The balanced chemical equation is: H2(g) + 12(g) ----------> 2 HI(g) 8. Ammonia (NH3) can be formed from nitrogen and hydrogen from the following balanced equation: N2(g) + 3 H2(g) ------------> 2 NH3(g) Assuming that all gases are...
Consider the following balanced reaction between hydrogen and nitrogen to form ammonia: 3H2(g) + N2(g)→2NH3(g) How many moles of NH3 can be produced from 18.0 mol of H2 and excess N2? Express the number of moles to three significant figures
Consider the following balanced reaction between hydrogen and nitrogen to form ammonia: 3H2(g) + N2(g)→2NH3(g) How many moles of NH3 can be produced from 18.0 mol of H2 and excess N2? Express the number of moles to three significant figures