Here are the most common mistakes students make when solving stoichiometric mass problems like this one, along with clear strategies to avoid them.
1. Forgetting to Write the Balanced Chemical Equation
The Mistake:
Students jump straight to the molar mass of CuSO4 and assume the mass of copper is simply a fraction of the given mass, without considering the reaction or the fact that copper is already present in the compound.
Why It’s Wrong:
The question asks: “How much copper can be obtained?” This implies a decomposition or extraction process. Without a balanced equation, you cannot determine the mole ratio between CuSO4 and Cu.
How to Avoid:
Always write the relevant balanced equation first. For this problem:
CuSO4→Cu+SO4
But note: this is not balanced for charge or atoms. The correct decomposition (e.g., electrolysis or thermal) is:
2CuSO4→2Cu+2SO3+O2
However, for simple mass calculation, the key ratio is 1 mole CuSO4 gives 1 mole Cu. So the balanced equation is:
CuSO4→Cu+S+2O2
But the simplest approach: 1 mole of CuSO4 contains 1 mole of Cu atoms. So the mole ratio is 1:1.
2. Using Incorrect Molar Masses
The Mistake:
Using atomic masses incorrectly — e.g., taking Cu=63.5, S=32, O=16 but then adding them wrong, or using rounded values inconsistently.
Example of error:
CuSO4 molar mass = 63.5+32+(4×16)=63.5+32+64=159.5 g/mol.
Some students write 159 or 160 and then get a slightly wrong answer.
How to Avoid:
- Use standard atomic masses (given in exam or periodic table).
- Write the calculation step-by-step:
M(CuSO4)=63.5+32+64=159.5 g/mol
- Bold the final molar mass before using it.
3. Confusing Mass of Compound with Mass of Element
The Mistake:
Thinking that 100 g of CuSO4 contains 100 g of copper.
Why It’s Wrong:
Copper is only one part of the compound. The mass of copper is a fraction of the total mass.
How to Avoid:
Use the mass fraction method:
Mass of Cu=Molar mass of CuSO4Molar mass of Cu×mass of sample
So:
Mass of Cu=159.563.5×100
4. Forgetting to Convert Grams to Moles (or Vice Versa)
The Mistake:
Directly multiplying or dividing masses without converting to moles first.
Example of error:
100÷159.5=0.627 (moles of CuSO4). Then some students multiply by 63.5 but forget to multiply by the mole ratio (which is 1:1 here, so it’s fine — but in other problems, it’s not).
How to Avoid:
Always follow the mole method:
- Convert given mass to moles
moles of CuSO4=159.5100
- Use mole ratio (here 1:1)
moles of Cu=moles of CuSO4
- Convert moles of Cu to mass …