mM and M are mixed without conversion.
Convert one unit: 10 mM is 0.010 M. Keep the same concentration unit on both sides when possible.
Module 4 · Practice
Keep amount, volume, units, and final-volume assumptions visible when planning a water-based dilution on paper.
Objective
Concentration is a ratio, so its numerator and denominator matter. Molarity is amount of substance per final volume, written mol/L; mass concentration might be g/L; a percent can mean mass/mass, volume/volume, or mass/volume. These are not interchangeable labels. Write the basis, units, stock identity, target identity, and final volume before entering numbers. A label saying ‘2’ is not a concentration.
The familiar dilution relationship C1V1 = C2V2 assumes the same solute is conserved and the stated volumes represent the stock aliquot and final solution volume in compatible units. It is a planning equation, not permission to add volumes blindly. For accurate work, follow the volumetric glassware and mixing method specified for the material. This lesson keeps practice to arithmetic and water; it does not authorize chemical preparation.
Suppose a 10 mM stock is to be diluted to 2 mM final concentration and final volume 50 mL. Assuming the stock and target use the same solute and the final volume is set as 50 mL, V1 = (C2 × V2) / C1 = (2 mM × 50 mL) / 10 mM = 10 mL stock. The remaining amount is made up to a final volume of 50 mL, so the nominal added diluent is 40 mL only as a planning figure. If mixing changes volume, the method must use a calibrated final-volume vessel and its instructions.
Worked example
C1 = 10 mM, C2 = 2 mM, V2 = 50 mL. V1 = C2V2/C1 = (2 mM × 50 mL)/(10 mM) = 10 mL.
Materials
Safety & stop conditions
Method
Write whether the concentration is mol/L, g/L, % v/v, or another basis. Record the stock and target units exactly.
Convert only where needed so concentration units cancel and volume units agree. Show the conversion instead of relying on a hidden calculator setting.
For a direct dilution, rearrange C1V1 = C2V2 and solve for V1. Check that the result is no larger than the planned final volume.
Write whether the method calls for making up to a mark, a measured diluent volume, or another validated approach. Do not assume additive volumes.
Include identity, nominal concentration and basis, final volume, date, preparer, source/lot, storage or safety instruction if applicable, and the word practice when appropriate.
Checkpoints
Common mistakes
Convert one unit: 10 mM is 0.010 M. Keep the same concentration unit on both sides when possible.
Call 40 mL the nominal diluent amount only if the method permits that assumption; otherwise make up to final volume.
Add the solute identity, basis, final volume, date, preparer, and source information.
Read the stock label back into the worksheet and perform a direction check: dilution must reduce concentration.
Practice
On paper, calculate a dilution from a 10 mM stock to a 2 mM final concentration at 50 mL. Draft a label for the hypothetical solution, naming the hypothetical solute and marking it illustrative calculation only. Any actual water used to practice labeling must be labeled plain water, not 2 mM.
Self-checks
Answer: Nothing complete; the solute and the amount-per-volume basis are required.
Answer: Yes. A dilution uses a smaller volume of the more concentrated stock and brings it to the larger final volume.
Answer: Because the stated relationship defines a final volume; mixing and volume effects mean the method may require making up to that volume.
Answer: Missing identity, units, source/lot, final-volume method, date, preparer, and any applicable safety or storage information.
Sources & further reading