In Excel: calculate compound interest with =P*(1+rate/n)^(n*years), where n is the number of compounding periods per year — or with =FV(rate/n, n*years, 0, -P) using the built-in future value function.
Total interest earned: €6,470.09 · Monthly · 10 years
| Year | Interest | Balance |
|---|---|---|
| 1 | €511.62 | €10,511.62 |
| 2 | €537.79 | €11,049.41 |
| 3 | €565.31 | €11,614.72 |
| 4 | €594.23 | €12,208.95 |
| 5 | €624.63 | €12,833.59 |
| 6 | €656.59 | €13,490.18 |
| 7 | €690.18 | €14,180.36 |
| 8 | €725.49 | €14,905.85 |
| 9 | €762.61 | €15,668.47 |
| 10 | €801.63 | €16,470.09 |
Need it as an auditable file?
Ships inside the linked template — formula-driven, unlocked, audit-ready.
Need it as an auditable file?
Ships inside the linked template — formula-driven, unlocked, audit-ready.
What this does
Compound interest pays interest on previously earned interest, so a balance grows geometrically rather than linearly. The compounding frequency n matters: 5% compounded monthly yields slightly more than 5% compounded yearly, because each month's interest starts earning its own interest immediately. FV exists precisely for this; the explicit power formula shows what it is doing. Most people learn this as a sequence of clicks and forget it by next week; learning it as a pattern instead is what lets you apply it to the next, slightly different version of the problem without starting from scratch. That is the difference this page is trying to make. Treat “excel calculate compound interest” as a small repeatable workflow rather than a one-off click you hope to remember next time. Use a small test block before the live file, so any surprise in the affected cells shows up while it is still harmless. When a formula is involved, keep the inputs labelled beside it, reference cells instead of typing values, and apply number formatting only after the result checks out. That turns a calculation you can defend to a CFO or an auditor into a method you can reuse, explain, and defend when the workbook leaves your screen.
A worked example
With €10,000 at 5% compounded monthly for 10 years, =10000*(1+0.05/12)^(12*10) returns €16,470.09. Compounded only yearly, =10000*(1.05)^10 returns €16,288.95 — the extra €181 is the compounding-frequency effect. The equivalent built-in is =FV(0.05/12, 120, 0, -10000). Savings plans, loans, and investment projections all run on compound growth. Setting the formula up once with cell references lets you test scenarios by typing. If there is any chance you will reuse this, drop it into a small template tab right now: a labelled input area on the left and the formula beside it, checked once against the tool above. Next time the same question comes up, the answer is a single paste away instead of a rebuild from memory.
In Google Sheets
Google Sheets handles this almost identically to Excel. The formula syntax above is the same, and the menu lives under a slightly different label rather than a ribbon tab. Use the platform toggle at the top of the page to switch every keyboard shortcut between Windows and Mac, and expect at most cosmetic differences in naming. Keep this page bookmarked for the next time the same question comes up. Better still, rebuild the example once in your own sheet — doing it yourself, with the tool above to check against, is what turns a copied formula into a technique you own. The short version of “excel calculate compound interest”: the answer is at the top of this page, the tool proves it on your own numbers, and the sections above explain why it holds so the next variation does not stump you. Excel rewards people who reference cells instead of typing values and who keep inputs separate from formulas, because that is what makes a result you can audit months later. Build it once, deliberately, with the live tool as a check, and you convert a one-off lookup into a reusable skill — which is the whole point of learning the why and not just the what.
Common mistakes
- Using the annual rate per month without dividing by 12.
- Forgetting the minus sign on the present value in
FVand getting a negative result. - Comparing offers with different compounding frequencies by nominal rate alone — use
=EFFECT(rate, n)to get the effective annual rate. - Entering 5 instead of 0.05 (or 5%) for the rate, which explodes the result.
Frequently asked questions
What is the compound interest formula in Excel?
There is no COMPOUND function; use =P*(1+rate/n)^(n*years) or =FV(rate/n, n*years, 0, -P).
What does compounding frequency change?
How often interest is added to the balance. More frequent compounding yields a higher effective annual rate for the same nominal rate.
How do I add monthly deposits?
Use the pmt argument of FV: =FV(rate/12, months, -deposit, -P) for end-of-month deposits.
Other ways people ask this
This is also commonly searched as “how to calculate compound interest in excel”, “how to calculate cumulative interest in excel”, “how do i calculate compound interest in excel” and “how do you calculate compound interest in excel”. They describe the identical operation, so you are in the right place no matter how you phrased it.
This guide also answers
- calculating compound interest excel
Why do people search for this in so many different ways?
Because the same task has many names. “how to calculate compound interest in excel”, “how to calculate cumulative interest in excel”, “how do i calculate compound interest in excel” all point at the one operation explained on this page, which is why they all lead here.