Higher Tier: find which reactant limits the product
| English | Français |
|---|---|
| excess reactant | excess reactant |
| limiting reactant/ˈlɪmɪtɪŋ rɪˈæktənt/ | limiting reactant |
What would explain this observation?
- Higher Tier: Having more grams of a reactant does not necessarily make it the excess reactant 过量反应物. The equation ratio and molar masses decide which supply runs out first.
- Start with a prediction. State the quantities or features you would compare, then decide what evidence could distinguish two explanations.
Build the model
- The · Le limiting reactant 限制性反应物 is completely used up under the complete-reaction model and sets the maximum product amount. An excess reactant remains because more was supplied than the balanced equation needs. Convert both reactant masses to amounts before comparing. For A + 2B → C, one mole A requires two moles B; compare n(A) with n(B)/2, not the raw mole amounts alone.
- limiting reactant: The reactant used up first under the stated reaction model, limiting possible product; excess reactant: A reactant supplied beyond the amount required to consume the limiting reactant.
For Mg + 2HCl → MgCl₂ + H₂, 0.20 mol Mg and 0.30 mol HCl are supplied. Which limits?
For Mg + 2HCl → MgCl₂ + H₂, 0.20 mol Mg would require 0.40 mol HCl. If only 0.30 mol HCl is supplied, acid limits and only 0.15 mol Mg can react. Maximum H₂ amount is 0.15 mol, and 0.05 mol Mg remains. This assumes reaction proceeds as written and does not describe incomplete conversion caused by slow rate or equilibrium.
Match each technical term to its precise meaning.
Use the definitions to distinguish related quantities and processes.
Choose evidence that can test it
- For Mg + 2HCl → MgCl₂ + H₂, 0.20 mol Mg would require 0.40 mol HCl. If only 0.30 mol HCl is supplied, acid limits and only 0.15 mol Mg can react. Maximum H₂ amount is 0.15 mol, and 0.05 mol Mg remains. This assumes reaction proceeds as written and does not describe incomplete conversion caused by slow rate or equilibrium.
- Write available amount, required coefficient and available amount divided by coefficient for each reactant. The smaller scaled supply determines the maximum reaction extent. Multiply that extent by the target product coefficient. To find excess remaining, subtract the amount consumed from the amount supplied. Avoid declaring a limiting reactant solely from a visual guess or whichever mass number is smaller.
Which two habits make the investigation or model in this case more defensible?
Write available amount, required coefficient and available amount divided by coefficient for each reactant. The smaller scaled supply determines the maximum reaction extent. Multiply that extent by the target product coefficient. To find excess remaining, subtract the amount consumed from the amount supplied. Avoid declaring a limiting reactant solely from a visual guess or whichever mass number is smaller.
Work from known quantities
- State the known values and their units. Choose the relation because its assumptions fit this case, then rearrange before substitution.
- Known: 4.8 g Mg is 4.8/24=0.20 mol. With 0.30 mol HCl, magnesium consumed=0.15 mol, mass=3.6 g. Remaining Mg=4.8−3.6=1.2 g. Hydrogen forms at 0.15 mol, mass=0.15×2=0.30 g using supplied molar mass H₂=2 $\dfrac{\text{g}}{\text{mol}}$.
For the same reaction, 0.40 mol Mg and 0.50 mol HCl are supplied. Calculate the maximum H₂ amount. Use the same sequence: known quantities → model → relation → substitution → unit and interpretation.
For the same reaction, 0.40 mol Mg and 0.50 mol HCl are supplied. Calculate the maximum H₂ amount.
The result is 0.25 mol. Known: 4.8 g Mg is 4.8/24=0.20 mol. With 0.30 mol HCl, magnesium consumed=0.15 mol, mass=3.6 g. Remaining Mg=4.8−3.6=1.2 g. Hydrogen forms at 0.15 mol, mass=0.15×2=0.30 g using supplied molar mass H₂=2 g per mol.
Check the conclusion and its limits
- Excess means present beyond the required reacting amount, not an impurity. Adding more excess reactant alone does not raise the theoretical product after the limiting reactant is exhausted. Recovered yield can be lower than this maximum for other reasons; do not confuse limiting amount with percent recovery.
- Return to the original observation. Explain what the result supports, which conditions it assumes, and one way to test a competing explanation.
The reactant with the smaller mass number must be limiting. This claim is false: Excess means present beyond the required reacting amount, not an impurity. Adding more excess reactant alone does not raise the theoretical product after the limiting reactant is exhausted. Recovered yield can be lower than this maximum for other reasons; do not confuse limiting amount with percent recovery.
Higher Tier: find which reactant limits the product: For Mg + 2HCl → MgCl₂ + H₂, 0.20 mol Mg would require 0.40 mol HCl. If only 0.30 mol HCl is supplied, acid limits and only 0.15 mol Mg can react. Maximum H₂ amount is 0.15 mol, and 0.05 mol Mg remains. This assumes reaction proceeds as written and does not describe incomplete conversion caused by slow rate or equilibrium.
The reactant with the smaller mass number must be limiting.
Excess means present beyond the required reacting amount, not an impurity. Adding more excess reactant alone does not raise the theoretical product after the limiting reactant is exhausted. Recovered yield can be lower than this maximum for other reasons; do not confuse limiting amount with percent recovery.
The reactant used up first under the stated reaction model, limiting possible product: write the technical term.
limiting reactant means The reactant used up first under the stated reaction model, limiting possible product.