What is calculated
A transparent linear timeline from current weight, goal weight, maintenance calories, and planned intake.
Enter your values, then calculate to see a verified result.
A clear calculation path based on your inputs.
Versioned calculationFormula v1.0.0
A transparent linear timeline from current weight, goal weight, maintenance calories, and planned intake.
Convert the entered daily energy gap to a weekly kilogram-equivalent, then divide the desired mass change by that rate.
Real weight change is dynamic; the calculator deliberately labels the result as linear arithmetic.
2,500 - 2,000 = 500 kcal/day.3,500 / 7,700 = 0.45 kg/week.Do not read it as an arrival date.weeks is the static energy-equivalent timeline.
The 5% checkpoint shows when recalculation becomes especially important.
The result is not a guaranteed rate or finish date.
Continue with your result
Keep exploring
Verify unit parity, energy-gap direction, 7,700 kcal/kg conversion, checkpoint output, and invalid direction cases.
These records describe the published model and reference tests. A test-case count is not a certification of every possible input or an independent specialist review. Editorial policy
2026-10-04 - Initial shared-system implementation with distinct workflow, evidence boundaries, fixtures, and authored support content.
Up to 12 examples from the configured definition fixtures are shown. Expected values use the stated output units; invalid inputs are intended to be rejected.
| Case | Inputs | Expected result |
|---|---|---|
| ten kilogram reference | Current body weight: 90 kg; Goal body weight: 80 kg; Estimated maintenance calories: 2500 kcal; Planned daily intake: 2000 kcal | Entered daily energy gap: 500 kcal/day; Static mass equivalent: 0.45454545 kg/week; Linear energy-equivalent timeline: 22 weeks; First 5% recalculation checkpoint: 85.5 kg (allowed numeric tolerance: 0.0001) |
| imperial parity | Current body weight: 198.416 lb; Goal body weight: 176.37 lb; Estimated maintenance calories: 2500 kcal; Planned daily intake: 2000 kcal | Desired mass change: 10 kg; Linear energy-equivalent timeline: 22 weeks (allowed numeric tolerance: 0.01) |
| invalid direction | Current body weight: 80 kg; Goal body weight: 85 kg; Estimated maintenance calories: 2500 kcal; Planned daily intake: 2000 kcal | Reject invalid input: current_weight |
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Estimate a clearly labeled linear energy-equivalent timeline from an explicit maintenance estimate and planned intake.
The result exposes the energy gap and a 5% recalculation checkpoint instead of presenting a week-by-week biological forecast as exact.
Use the Health calculators hub to move between nutrition and body-composition workflows.
For the closest upstream calculation, open the Calorie Deficit Calculator. Inspect a separate calorie-deficit workflow.
daily gap = maintenance - intake.
static kg/week = daily gap x 7 / 7,700; weeks = desired kg change / static kg/week.
NIDDK uses a dynamic model because actual body-weight change does not remain linear.
To compare the method with a neighboring workflow, use the Goal Weight Timeline Calculator. Reverse the question by selecting a time window.
The static equivalent is 0.455 kg/week and the linear timeline is 22 weeks.
A goal at or above current weight, or intake at or above maintenance, is rejected by this loss-only workflow.
Use the primary output to compare scenarios, not to promise a date. Update the inputs when measured maintenance or body weight changes.
For another useful cross-check, continue with the TDEE Calculator. Estimate starting maintenance calories.
Labels the output as static energy arithmetic, rejects wrong-direction scenarios, and keeps a recalculation checkpoint visible.
It holds the entered energy gap constant even though real expenditure and body composition change.
It is an energy-equivalent convention for transparent arithmetic, not a law predicting tissue loss.
A meaningful change in body mass is a practical prompt to re-estimate rather than extending the original line indefinitely.
No. The calculator does not assess adequacy, health risk, or sustainability.
No. Those contexts need individualized professional guidance.
Sources were checked 2026-10-04. They support the calculation method or its evidence boundary; they do not turn a planning scenario into medical nutrition advice.
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