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Online Calculator Lab

BMR Calculator

Calculate your Basal Metabolic Rate — all formulas compared, TDEE activity chart & organ breakdown

Gender
Age28 years
Height175 cm
Weight75 kg
Body Fat % (optional — for Katch-McArdle)20%
BMR (Mifflin) ✅
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TDEE (Moderate Activity)
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Calories/Hour at Rest
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Lean Body Mass
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🔬 All BMR Formulas Compared
Harris-Benedict
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kcal/day
Katch-McArdle
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kcal/day
📊 Daily Calorie Needs by Activity Level
🛋️ Sedentary
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🚶 Lightly Active
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🏃 Moderate
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💪 Very Active
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🔥 Super Active
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🫀 Where Your BMR Calories Go
💡 Tips to Improve Your BMR
    ⚕️ Health Disclaimer
    The results from this calculator are for general informational purposes only and do not constitute medical advice. Individual results may vary. Always consult a qualified healthcare provider — doctor, nutritionist, or registered dietitian — before making decisions about your health, diet, or exercise based on these results.

    What is BMR (Basal Metabolic Rate)?

    BMR (Basal Metabolic Rate) is the minimum number of calories your body needs to perform its most basic life-sustaining functions while completely at rest — like breathing, blood circulation, cell production, and maintaining organ function. Think of it as how much fuel your body burns just to "stay alive" even if you lie still all day.

    This calculator goes beyond a single BMR number — it shows all three major BMR formulas side by side, a visual TDEE breakdown by activity level, an organ-by-organ energy consumption chart, and personalized tips to improve your metabolism.

    How to Use This Calculator

    1. Select units — Metric (kg/cm) or Imperial (lbs/ft)
    2. Enter gender, age, height and weight
    3. Enter body fat % — Optional, but enables the Katch-McArdle formula for athletes
    4. Click Calculate BMR — See all three BMR values, full TDEE breakdown, organ energy chart and tips

    BMR Formulas — All Compared

    Our calculator shows results from all three major BMR formulas, so you can compare them:

    Mifflin-St Jeor Equation (Most Accurate — Recommended)

    Men: BMR = (10 × W) + (6.25 × H) − (5 × A) + 5
    Women: BMR = (10 × W) + (6.25 × H) − (5 × A) − 161

    W = weight (kg) | H = height (cm) | A = age (years)

    The most widely validated formula, shown to be most accurate for the general population by research published in the Journal of the American Dietetic Association. Best choice for most people.

    Revised Harris-Benedict Equation (1984)

    Men: BMR = (13.397 × W) + (4.799 × H) − (5.677 × A) + 88.362
    Women: BMR = (9.247 × W) + (3.098 × H) − (4.330 × A) + 447.593

    Originally developed in 1919 and revised in 1984, this formula was the gold standard for decades. According to research by Roza and Shizgal, the revised version is more accurate than the original but still slightly less accurate than Mifflin-St Jeor for most people.

    Katch-McArdle Formula (Best for Athletes)

    BMR = 370 + (21.6 × Lean Body Mass in kg)
    Lean Body Mass = Total Weight × (1 − Body Fat Fraction)

    Unlike the other formulas, Katch-McArdle uses lean body mass instead of total body weight. This makes it more accurate for lean, muscular individuals and athletes who know their body fat percentage.

    BMR vs TDEE vs RMR — Key Differences

    Term Full Form What It Means How Used
    BMR Basal Metabolic Rate Calories burned at complete rest (fasted state, 12+ hrs) Foundation for TDEE calculation
    RMR Resting Metabolic Rate Calories burned at rest (not fasted, relaxed state) Slightly higher than BMR (~10–20 cal more)
    TDEE Total Daily Energy Expenditure Total calories burned in a day including all activities Used to set daily calorie intake targets
    TEF Thermic Effect of Food Calories burned digesting and processing food (~10% of TDEE) Included in TDEE calculation
    💡 Key Insight: Your BMR accounts for ~60–75% of your total daily calorie burn. Physical activity adds ~15–30%, and food digestion (thermic effect) adds ~10%. This is why diet matters far more than exercise alone for weight management.

    Factors That Affect Your BMR

    • Muscle Mass — More muscle = higher BMR. Muscle tissue burns ~3× more calories at rest than fat tissue. This is why strength training raises your metabolism even on rest days.
    • Age — BMR naturally decreases ~1–2% per decade after age 20 due to gradual muscle loss (sarcopenia). This is why it becomes easier to gain weight with age.
    • Gender — Men typically have higher BMR than women of the same height/weight due to higher muscle mass and lower body fat percentage on average.
    • Body Size — Larger bodies have more tissue requiring energy, so BMR scales with height and weight.
    • Genetics — Studies show up to 26% of BMR variation between individuals cannot be explained by measurable factors, suggesting a significant genetic component.
    • Thyroid Function — The thyroid gland regulates metabolic rate. Hypothyroidism lowers BMR; hyperthyroidism raises it significantly. See NIDDK guidelines on thyroid function.
    • Temperature — Cold environments raise BMR as your body works to maintain core temperature. BMR increases ~7% for every 1°C rise in body temperature (fever).
    • Pregnancy — BMR increases significantly during pregnancy to support fetal development. According to WHO nutrition guidelines, energy needs increase by 300+ kcal/day during the second and third trimesters.

    How to Increase Your BMR Naturally

    Build Muscle Through Strength Training

    Every pound of muscle burns approximately 6 calories per day at rest, compared to 2 calories per day for fat tissue. Adding 5 kg of lean muscle can increase your BMR by 60–80 calories per day. Over a year, this adds up significantly.

    Eat Enough Protein

    Protein has a thermic effect of 20–30%, meaning your body burns 20–30 calories for every 100 calories of protein consumed. This is significantly higher than carbs (5–10%) and fat (0–3%). High protein intake also helps preserve muscle mass during weight loss, preventing BMR reduction.

    Avoid Extreme Calorie Restriction

    Starvation diets can reduce BMR by up to 30% as the body enters "survival mode." This is called adaptive thermogenesis. Always maintain a moderate calorie deficit (300–500 cal/day) rather than extreme restriction for sustainable fat loss without metabolic damage.

    Stay Consistent with Exercise

    Regular aerobic exercise has a temporary BMR boost for hours after exercise (EPOC — Excess Post-exercise Oxygen Consumption). High-intensity training creates a greater EPOC effect than steady-state cardio.

    Which Organs Consume the Most Energy at BMR

    Your BMR calories are consumed by your vital organs, not by movement. Here is how energy is distributed at rest, based on National Academies of Medicine reference data:

    Organ/System % of BMR Why So Much?
    🧠 Brain ~20% Constant electrical activity and neurotransmitter production
    🫀 Heart & Lungs ~19% Never-stopping pumping and respiration
    🟡 Liver ~27% Metabolic hub — detoxification, protein synthesis, bile production
    🫘 Kidneys ~10% Constant blood filtration — 180 litres filtered daily
    💪 Skeletal Muscle ~18% Baseline muscle tone and cell maintenance
    Other Organs ~6% Skin, intestines, reproductive organs, etc.

    Frequently Asked Questions — BMR Calculator

    BMR (Basal Metabolic Rate) is the calories your body burns at complete rest to maintain basic functions — breathing, circulation, cell repair, and temperature regulation. It represents 60–75% of your total daily energy expenditure. Understanding your BMR helps you set accurate calorie targets for weight loss, maintenance, or muscle gain goals.
    BMR is measured under strict conditions: fasted state, complete rest, neutral temperature. RMR (Resting Metabolic Rate) is measured at rest but without strict fasting requirements — it is slightly higher than BMR (about 10–20%). In practice, the terms are used interchangeably, and most online calculators compute RMR while calling it BMR. For practical purposes, the difference is negligible.
    A 2005 study in the Journal of the American Dietetic Association found the Mifflin-St Jeor equation (1990) to be the most accurate for most adults. Harris-Benedict (1919) tends to overestimate BMR by 5–15%. Mifflin-St Jeor was validated on both obese and non-obese populations and is recommended by the Academy of Nutrition and Dietetics. Our calculator uses Mifflin-St Jeor as the primary formula.
    BMR decreases approximately 1–2% per decade after age 20. This is primarily due to sarcopenia — the gradual loss of muscle mass with age. Muscle is metabolically active tissue; less muscle means lower resting calorie burn. Hormonal changes also contribute. The result: the same calorie intake that maintained weight at 30 may cause gradual weight gain at 50. Resistance training is the most effective way to offset age-related BMR decline.
    Yes. Muscle tissue burns approximately 6–7 kcal/kg/day at rest, compared to fat tissue which burns only 2 kcal/kg/day. While modest per kilogram, the cumulative effect of gaining 5–10 kg of lean muscle can increase daily BMR by 30–70 calories. Combined with the EPOC afterburn effect from strength training (elevated metabolism for 24–48 hours post-exercise), resistance training is effective for long-term metabolic rate management.
    Yes, through: (1) Resistance training — builds metabolically active muscle tissue. (2) High-intensity interval training (HIIT) — creates EPOC afterburn effect lasting 24–48 hours. (3) Adequate protein intake — protein has a 20–30% thermic effect (dietary-induced thermogenesis), vs 5–10% for carbs and 0–3% for fat. (4) Avoiding very-low-calorie diets — severe restriction triggers adaptive thermogenesis, reducing BMR by up to 15% as the body conserves energy.