MedMathMindset Provider Math Atlas · Pharmacy Technician
Pharmacy Technician math, one domain at a time.
This free guide turns the current MedMathMindset Pharmacy Technician math blueprint into a practical map: every included domain, its MedMathMindset instructional weight, one worked example, and a quick reasonableness check.
Domains are shown from highest to lowest MedMathMindset blueprint weight. The weights are MedMathMindset instructional blueprint weights used to organize provider-relevant quantitative training; they should not be interpreted as an official credentialing-body exam percentage unless an official source explicitly states that.
Higher weight = more emphasis in MedMathMindsetEvery domain gets at least one worked example
Use it three ways
Teach · review · print
Use the examples as a quick class reference, a learner review sheet, or a printable PDF. For repeated practice and performance signals, continue into the provider-specific Performance Challenge or enrolled MedMathMindset pathway.
Domain 1 of 12
Dilution / Reconstitution
Dilution / Reconstitution is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
12%MMM blueprint weight
Example
After preparation, 500 mg is contained in 10 mL. How many mL contain 100 mg?
Setup / reasoning
100 × 10 ÷ 500 = 2 mL.
Answer
2 mL
Quick check
Convert to a usable concentration first, then solve for the amount needed.
Domain 2 of 12
Dimensional Analysis
Dimensional Analysis is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
12%MMM blueprint weight
Example
Available: 10 mg in 2 mL. The ordered dose is 30 mg. How many mL will deliver the ordered dose?
Setup / reasoning
? mL=2 mL10 mg×30 mg1
Target units stay on the left. The first factor on the right begins with the provided relationship that carries the target unit; matching units then cancel across the chain.
Answer
6 mL
Quick check
Unwanted units should cancel cleanly, leaving only the requested final unit.
Domain 3 of 12
Medication Dose Calculations
Medication Dose Calculations is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
12%MMM blueprint weight
Example
Available: 10 mg in 2 mL. The ordered dose is 30 mg. How many mL will deliver the ordered dose?
Setup / reasoning
30 × 2 ÷ 10 = 6 mL.
Answer
6 mL
Quick check
At a fixed concentration, a larger desired dose requires a proportionally larger volume.
Domain 4 of 12
Pharmacy Compounding
Pharmacy Compounding is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
12%MMM blueprint weight
Example
A preparation uses 2 g per 100 mL. How many grams are needed for 250 mL?
Setup / reasoning
2 × 250 ÷ 100 = 5 g.
Answer
5 g
Quick check
Keep the formulation ratio constant as the batch size changes.
Domain 5 of 12
Ratios / Proportions
Ratios / Proportions is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
10%MMM blueprint weight
Example
A 2:5 relationship is maintained. If the second quantity becomes 20, what is the first quantity?
Setup / reasoning
2/5 = x/20; x = 8.
Answer
8
Quick check
Cross-products should agree when the two ratios are truly equivalent.
Domain 6 of 12
Unit Conversions
Unit Conversions is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
10%MMM blueprint weight
Example
Convert 750 mg to g.
Setup / reasoning
Use the 1000:1 metric relationship; the result is 0.75 g.
Answer
0.75 g
Quick check
Confirm the direction of the conversion and that the final unit is exactly the requested unit.
Domain 7 of 12
Percentages
Percentages is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
8%MMM blueprint weight
Example
What is 25% of 80?
Setup / reasoning
25% × 80 = 20.
Answer
20
Quick check
The result should be the stated fraction of the whole; compare its magnitude with 0% and 100%.
Domain 8 of 12
Weight-Based Dosing
Weight-Based Dosing is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
8%MMM blueprint weight
Example
A 70 kg patient is ordered 0.1 mg/kg. What dose is ordered?
Setup / reasoning
70 × 0.1 = 7 mg.
Answer
7 mg
Quick check
Check that the weight unit matches the dose unit before multiplying.
Domain 9 of 12
Concentration / Osmolarity
Concentration / Osmolarity is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
5%MMM blueprint weight
Example
A 5% w/v solution contains 5 g per 100 mL. How many grams are in 500 mL?
Setup / reasoning
5 × 500 ÷ 100 = 25 g.
Answer
25 g
Quick check
A percentage concentration is a relationship; scale both quantity and volume proportionally.
Domain 10 of 12
Fractions / Decimals
Fractions / Decimals is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
4%MMM blueprint weight
Example
Write 3/4 as a decimal.
Setup / reasoning
3 ÷ 4 = 0.75.
Answer
0.75
Quick check
For a proper fraction, the decimal should fall between 0 and 1.
Domain 11 of 12
Whole Number Operations
Whole Number Operations is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
4%MMM blueprint weight
Example
A supply area starts with 24 counted items, adds 18, then uses 11. How many remain?
Setup / reasoning
24 + 18 − 11 = 31.
Answer
31 items
Quick check
Reconcile the starting quantity, additions, and use; the ending count should fit the story.
Domain 12 of 12
Provider Operations Math
Provider Operations Math is included because it matches expected quantitative work for this provider level. Pharmacy-technician scope emphasizes prescription processing, compounding, dose/concentration/dilution calculations, and safety verification—not bedside pump/drip management.
3%MMM blueprint weight
Example
A device has 600 usable units and consumes 10 units each minute. Ignoring reserve, how many minutes will it run?
Setup / reasoning
600 ÷ 10 = 60 minutes.
Answer
60 min
Quick check
A quantity divided by a consumption rate should produce a time or capacity that fits the operating context.
Important scope note
Educational examples, not patient-specific clinical direction
These examples are designed to make quantitative relationships visible. They do not replace local protocols, medication references, device instructions, scope-of-practice requirements, official credentialing test plans, or clinical judgment. MedMathMindset uses the provider blueprint to organize math practice—not to redefine professional scope.
Provider blueprint snapshot generated from MedMathMindset's canonical provider-domain layer. Printed copies should be refreshed periodically as MedMathMindset updates provider scope and instructional weighting.
MedMathMindset.com · Pharmacy Technician Math Atlas · Printable provider math reference