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How many grams of C are required to react with 2.50 moles of Fe2O3?

To determine the grams of carbon needed to react with 2.50 moles of Fe2O3, you first need to balance the equation for the reaction between C and Fe2O3. Then, calculate the molar ratio between C and Fe2O3 from the balanced equation. Finally, use the molar mass of carbon to convert the moles of carbon to grams.


What mass of oxygen (O2) is required to react completely with 86.17 grams of C6H14?

The answer is 152 g oxygen.


How many grams of CO react with .390 kg of Fe2O3?

Fe2O3 (s) + 3 CO (g) 🡪 2 Fe (s) + 3 CO2 (g) Calculate the number of grams of CO that can react with 250 g of Fe2O3. Calculate the number of grams of Fe and the number of grams of CO2 formed when 250 grams of Fe2O3 reacts.


How many grams of CO are needed to react with 3.16 g of Fe2O3?

To calculate the grams of CO needed to react with Fe2O3, you need to write a balanced chemical equation for the reaction, determine the moles of Fe2O3 given the mass provided, and use the stoichiometry of the balanced equation to find the moles of CO needed. Finally, convert the moles of CO to grams using the molar mass of CO.


How many grams of oxygen are needed to react with 350 grams of iron to produce 500 grams of fe203?

The balanced chemical equation for the reaction between iron and oxygen to produce Fe2O3 is 4Fe + 3O2 -> 2Fe2O3. From the equation, we see that 3 moles of oxygen react with 4 moles of iron to produce 2 moles of Fe2O3. Therefore, to find the grams of oxygen needed, we need to calculate the molar mass of Fe2O3 and then determine the number of grams needed using the mole ratio from the balanced equation.


How many moles of iron oxide are needed to react with 2.5 mol of Al?

The balanced chemical equation for the reaction between iron oxide (Fe2O3) and aluminum (Al) is 2Al + Fe2O3 → Al2O3 + 2Fe. This shows that 2 moles of Al react with 1 mole of Fe2O3. Therefore, 2.5 moles of Al would need 1.25 moles of Fe2O3 to completely react.


How many grams of iron will be needed to react completely with an excess of oxygen to form 40 grams of iron3 oxide?

To determine the amount of iron needed to react with 40 grams of iron(III) oxide, you should use the stoichiometry of the reaction. Calculate the molar mass of iron(III) oxide (Fe2O3) and determine the molar ratio between iron and iron(III) oxide in the balanced chemical equation. From there, you can calculate the amount of iron needed to fully react with 40 grams of iron(III) oxide.


Given that zinc reacts with iodine in the fixed mass ratio of 1 gram of zinc to 3.88 grams of iodine how many grams of iodine are required to completely react with 4.2 grams of zinc?

For every 1 gram of zinc, 3.88 grams of iodine are required to react. So in this case, with 4.2 grams of zinc, the amount of iodine needed would be (4.2 grams zinc) * (3.88 grams iodine / 1 gram zinc) = 16.296 grams of iodine.


Which statement is true if 12 mol co and 12 mol fe2o3 are allowed to react?

If 12 mol of CO and 12 mol of Fe2O3 are allowed to react, the limiting reactant will be CO. The balanced chemical equation is 3CO + Fe2O3 -> 2Fe + 3CO2, and since it takes 3 mol of CO to react with 1 mol of Fe2O3, there is excess Fe2O3 left after the CO is consumed.


CO will react with 1.75 moles of Fe2O3?

no it wont sorry i dont know the answer but i tried it and it didnt work for it


What is lime saturated factor or LSF?

It's actually called the Lime Saturation Factor and it is one of three quality control factors used in cement manufacture. It represents the amount of lime (CaO) required to completely react with all of the silica (SiO2), alumina (Al2O3) and iron oxide (Fe2O3) in a cement kiln to produce the hydraulic minerals required for cement to set properly. It's formula is;- LSF = (100 * CaO)/(2.8 * SiO2 + 1.18 * Al2O3 + 0.65 * Fe2O3) The other two factors used to control cement clinker quality are;- Silica Ratio (S.R.) = SiO2/(Al2O3 + Fe2O3) and Alumina Ratio (A.R.) = Al2O3/Fe2O3 Regards, Ted.


How many grams of Oxygen are required to react with 100 g Fe in this reaction?

The balanced chemical equation for the reaction is: 4Fe + 3O2 -> 2Fe2O3 From the equation, it can be seen that 3 moles of O2 are required to react with 4 moles of Fe. Therefore, to determine the grams of O2 required to react with 100 g Fe, you would need to use stoichiometry to find the answer.