Example BMR calculation
Example: male, age 30, height 180 cm, weight 80 kg.
Mifflin–St Jeor BMR = 10 × 80 + 6.25 × 180 − 5 × 30 + 5 = 1,780 kcal/day.
If moderately active, estimated TDEE = 1,780 × 1.55 = 2,759 kcal/day.
Estimate your resting calorie burn, compare BMR formulas, and calculate a quick TDEE using activity multipliers.
Results are estimates. For medical advice, consult a clinician.
Example: male, age 30, height 180 cm, weight 80 kg.
Mifflin–St Jeor BMR = 10 × 80 + 6.25 × 180 − 5 × 30 + 5 = 1,780 kcal/day.
If moderately active, estimated TDEE = 1,780 × 1.55 = 2,759 kcal/day.
Basal Metabolic Rate (BMR) is the energy your body uses just to keep you alive—breathing, circulation, temperature control, and basic organ function. This calculator estimates your resting calorie burn using several trusted equations, then lets you see a quick TDEE estimate by applying an activity multiplier.
This calculator estimates basal metabolic rate using published predictive equations. Predictive equations are estimates, not lab measurements, and individual results can vary. For TDEE, the calculator multiplies one selected primary BMR formula by standard activity factors instead of averaging multiple formulas together.
| Formula | Best for | Inputs used | Important limitation |
|---|---|---|---|
| Mifflin–St Jeor | Default estimate for most adults | Sex, age, height, weight | Still an estimate; validation studies show individual error and underrepresentation in some age and ethnic groups. |
| Harris–Benedict, revised | Classic comparison formula | Sex, age, height, weight | Useful as a historical comparator, but it may differ from modern equations and measured energy expenditure. |
| Katch–McArdle | People who know body fat % | Weight and lean body mass | Only as accurate as the body-fat estimate used to derive lean body mass. |
| Schofield | Age/sex-based comparison | Age, sex, weight | Population averages; published error information still leaves substantial uncertainty for individuals. |
A systematic review by Frankenfield, Roth-Yousey, and Compher found Mifflin–St Jeor was the most reliable of four common predictive equations for estimating resting metabolic rate within 10% of measured values, while also noting important gaps and individual error. Schofield's work reports age- and sex-based equations using anthropometric measurements and includes error estimates. ACE describes Katch–McArdle as a lean-body-mass formula and lists the same activity multipliers used here for TDEE estimates.
Mifflin–St Jeor (men): \( \mathrm{BMR} = 10w + 6.25h - 5a + 5 \)
Mifflin–St Jeor (women): \( \mathrm{BMR} = 10w + 6.25h - 5a - 161 \)
Harris–Benedict (revised) (men): \( \mathrm{BMR} = 88.362 + 13.397w + 4.799h - 5.677a \)
Harris–Benedict (revised) (women): \( \mathrm{BMR} = 447.593 + 9.247w + 3.098h - 4.330a \)
Katch–McArdle: \( \mathrm{BMR} = 370 + 21.6 \times \mathrm{LBM} \), where \( \mathrm{LBM} = w \times (1 - \mathrm{bf}) \)
Schofield: \( \mathrm{BMR} = A \times w + B \) (A and B depend on age group & sex).
Here \(w\) is weight in kg, \(h\) is height in cm, \(a\) is age in years, and \(\mathrm{bf}\) is body fat fraction.
There is no single “good” BMR for an age. BMR depends on height, weight, sex, lean mass, and other factors. It is better to compare your result with your own goals and TDEE than with a universal target.
BMR is an estimate of resting energy needs, not a recommended calorie target. Many people plan weight loss from TDEE instead, using a moderate deficit and adjusting based on progress and wellbeing.
BMR estimates calories used at rest. TDEE estimates total daily calorie burn after adding activity.
BMR is measured under stricter resting, fasted, temperature-neutral conditions. RMR is usually measured under less strict conditions and is often slightly higher.
They were derived from different datasets and coefficients. Mifflin–St Jeor is often used as a modern default, while Harris–Benedict remains a classic comparison formula.
Use it if you have a reasonably accurate body fat percentage, because the formula estimates BMR from lean body mass.
Use caution. Adult BMR equations may not reflect growth and development needs. Teenagers should use age-appropriate guidance or professional advice.
Use caution. Standard BMR equations do not fully account for pregnancy or lactation needs.
A smaller body usually needs less energy at rest. Loss of lean mass can also reduce resting energy needs.
More lean mass generally increases resting energy needs, which is why body composition affects BMR estimates.
Mifflin–St Jeor is a solid default. If you know body fat %, Katch–McArdle personalizes the estimate using lean mass.
TDEE = the selected primary formula's BMR × activity factor. We show a quick table using standard multipliers.
Use centimeters or feet/inches for height and kilograms or pounds for weight. Toggle units in the form before calculating.
Yes—everything runs locally in your browser. No uploads or storage.
BMR equations are useful starting points, but they are based on population averages. Your actual resting energy use can differ because of body composition, genetics, age, hormones, medications, illness, sleep, and measurement error.
Created by Starlight Tools. Methodology last updated: June 2026.
This calculator is for educational planning only and is not medical, nutrition, or weight-loss advice. For personal guidance, consult a qualified clinician or registered dietitian.