Height Calculator

📏 Free Growth Tool

Children’s Adult Height
Prediction Calculator

Estimate your child’s adult height using three science-based prediction methods — mid-parental formula, linear regression, and percentile projection — with a personalised growth chart.

Science-Based Estimates
Growth Chart Visualisation
Family Friendly Tool
Mid-Parental Height Formula
The most widely used genetic prediction method. Uses both parents’ heights to estimate the child’s adult height target range.
Current Growth Projection
Uses the child’s current age and height to project adult height by estimating their growth percentile track relative to CDC/WHO reference data.
8 yrs
128 cm
Percentile-Based Projection
If your child’s height percentile is known from a doctor visit, this method projects adult height assuming the same percentile track is maintained.
8 yrs
Check your child’s most recent growth chart from their paediatrician.
Predicted adult height
—
Estimated range: —
Adult percentile
—
—
vs. average
—
Range
—
Predicted height position (140–200 cm / 4’7″–6’7″ reference range)
140 cm / 4’7″170 cm200 cm / 6’7″
📊 Child growth chart — predicted height vs CDC/WHO 50th percentile
💡 Growth insights:
—
⚕️ Medical disclaimer: This calculator provides estimates only and is not a medical diagnostic tool. Actual adult height can vary significantly due to genetics, nutrition, health conditions, and individual development timing. These predictions carry a natural margin of uncertainty of ±5–10 cm. Always consult a qualified paediatrician or endocrinologist for concerns about your child’s growth.

Children’s Adult Height Prediction Calculator

“How tall will my child be?” is one of the most common questions parents ask paediatricians — and while no calculator can predict adult height with certainty, several well-validated scientific methods provide useful estimates. This free child height predictor uses three approaches: the mid-parental height formula (the most widely cited genetic method), a current-growth linear projection based on CDC/WHO reference data, and a percentile-based projection using your child’s most recent growth chart measurement.

Quick example: A boy with a 178 cm father and 165 cm mother has a mid-parental predicted height of (178 + 165 + 13) ÷ 2 = 178 cm, with a typical range of 169.5–186.5 cm. For a girl with the same parents: (178 + 165 − 13) ÷ 2 = 165 cm (range 156.5–173.5 cm). Enter your values above for your child’s personalised prediction.

How Adult Height Prediction Works

Height prediction is an estimation science, not an exact calculation. It relies on the strong statistical relationship between parental heights and child adult height — a relationship driven by the polygenic inheritance of hundreds of genetic variants that influence skeletal growth, growth hormone signalling, and pubertal timing.

Several validated clinical methods exist, each with different data requirements and accuracy characteristics. This calculator implements three:

🧬

Mid-Parental Height (Method 1)

Published by Tanner et al. (1966) and refined by multiple subsequent studies. Uses only parental heights. Accuracy: predicts adult height within ±8.5 cm for 95% of children. Most useful for infants and young children where current growth data has limited predictive power.

📊

Current Growth Projection (Method 2)

Based on the principle that children tend to track along a consistent height percentile from age 2 onward. Uses the child’s current height relative to CDC growth chart 50th percentile reference values to estimate their adult percentile position. Most accurate for children who have established a stable growth track (age 4+).

📈

Percentile Projection (Method 3)

Uses an established percentile from a recent clinical visit. Projects the same percentile rank to adulthood using the adult height distribution. Appropriate when you have a trusted percentile from your child’s paediatrician and want to understand what that percentile means for final adult height.

⚕️

Bone Age Radiograph (Clinical Method)

The most accurate clinical prediction method — a hand/wrist X-ray determines skeletal maturity (“bone age”), which is compared to chronological age. Bone age predictions (Bayley-Pinneau tables) are accurate to ±2.5 cm in pubescent children. This requires a clinical referral and is used when growth concerns exist.

The Mid-Parental Height Formula Explained

Formula (metric):
For boys: (Father’s height + Mother’s height + 13 cm) ÷ 2
For girls: (Father’s height + Mother’s height − 13 cm) ÷ 2

The ±13 cm correction accounts for the average height difference between adult males (175.5 cm) and females (162 cm) — a 13.5 cm difference. The formula produces the “mid-parental height target” — the child’s genetically expected adult height assuming average nutritional and health conditions.

Confidence interval: 95% of children grow to within ±8.5 cm of this target. This means if the mid-parental prediction is 175 cm, the child is expected to grow to between 166.5 cm and 183.5 cm with 95% probability.

How the Height Prediction Calculator Formula Works

This calculator measures a statistical estimate of a child’s future adult height, using one of three inputs depending on which method you choose: both parents’ heights, the child’s current age and height, or an established growth percentile. Each method produces a predicted height in centimetres, plus a range reflecting the natural uncertainty in that method. Read the predicted number as the centre of a probability range, not a guarantee. The formula assumes the inputs are accurate and that the child’s growth continues along a broadly typical pattern; conditions that affect growth timing, such as early or delayed puberty, will shift the actual outcome away from any of these estimates.

1

Identify the inputs

For the Mid-Parental method, you enter both parents’ heights and the child’s sex. The other two methods use current age and height, or a known percentile instead.

2

Apply the formula

For boys: (father’s height + mother’s height + 13) ÷ 2. For girls: (father’s height + mother’s height − 13) ÷ 2. The result becomes the centre of a range spanning ±8.5 cm.

3

Perform the calculation

Using the calculator’s default example: a boy with a 178 cm father and 165 cm mother. (178 + 165 + 13) ÷ 2 = 356 ÷ 2 = 178 cm.

4

Interpret the result

178 cm is the statistically expected adult height, with the calculator showing a range of 169.5 to 186.5 cm covering 95% of children with these parental heights.

3 Real-Life Examples

1. Mid-Parental Height for taller-than-average parents

A father is 190 cm and a mother is 175 cm, and they want an estimate for their son, using the Mid-Parental Height method.

(190 + 175 + 13) ÷ 2 = 378 ÷ 2 = 189 cm

The estimated range is 180.5 to 197.5 cm. Because both parents are above average height, the mid-parental target sits well above the average adult male height of 175.5 cm, reflecting the strong genetic component of height.

2. Current Growth Projection for a shorter-than-average boy

A 6-year-old boy is 110 cm tall, below the CDC 50th percentile of 116 cm for his age, and his parents want to know what that trajectory implies for adult height, using Current Growth Projection.

Ratio to 50th percentile = 110 ÷ 116 = 0.948. Predicted adult height = 175.5 × 0.948 = 166.4 cm

The estimated range is 157.4 to 175.4 cm. This method assumes he continues tracking at roughly the same relative position on the growth curve, which tends to hold reasonably well for children past the toddler years who haven’t yet entered puberty.

3. Percentile Projection using a paediatrician’s chart reading

A 10-year-old boy was measured at the 90th percentile for height at his last check-up, and his parents want to understand what that means for his adult height, using Percentile Projection.

90th percentile corresponds to a z-score of 1.28. Predicted adult height = 175.5 + (1.28 × 6.5) = 183.8 cm

The estimated range is 175.8 to 191.8 cm. This method is most reliable when the percentile comes from a recent, accurate clinical measurement rather than an estimate, since it projects that exact percentile rank forward to adulthood.

Growth Percentiles: What They Mean

PercentileWhat it meansAction needed?
Below 3rdTaller than only 3% of children same age/sexPaediatrician consultation recommended
3rd–15thBelow average but within normal variationMonitor; discuss with paediatrician if declining
15th–85thNormal healthy rangeNo action needed
85th–95thAbove average; within normal variationNo action needed
Above 95thTaller than 95% of same-age peersUsually normal; may warrant monitoring

A child’s percentile ranking is more meaningful than the absolute height — it shows where they sit relative to their peers of the same age and sex. A child consistently at the 25th percentile is not “short” — they are exactly where they are genetically expected to be. Concern arises when percentiles cross significantly (dropping from the 50th to the 10th) or when a child falls outside the 3rd–97th percentile range.

Important Notes

What this calculator does and doesn’t cover

This tool applies standard statistical growth-prediction formulas to the numbers you enter. A few things worth understanding before relying on the results:

  • Each method has a different, method-specific margin of error, shown in the range alongside the prediction: ±8.5 cm for Mid-Parental Height, ±9 cm for Current Growth Projection, and ±8 cm for Percentile Projection. None of these ranges guarantee the actual adult height.
  • The Current Growth and Percentile methods reference CDC 50th percentile data for children aged 2 to 18. See the CDC’s official growth charts for the full reference curves these figures are drawn from.
  • Predictions become more reliable as a child gets older, particularly once a stable growth percentile is established (usually by age 4 to 5), and again once puberty timing becomes clearer.
  • Environmental factors matter alongside genetics. Chronic malnutrition, untreated illness, or significant health conditions during childhood can shift actual adult height meaningfully below any of these statistical predictions.
  • Not a diagnostic tool. This calculator cannot detect growth hormone deficiency, genetic growth disorders, or other medical causes of unusually short or tall stature. If you have concerns about your child’s growth, a paediatrician can assess bone age and other clinical markers that this tool has no access to.

Related Health Calculators

Frequently Asked Questions

How accurate are child height predictors?
The mid-parental height formula predicts adult height within ±8.5 cm for 95% of children — meaning the actual adult height falls within a 17 cm range centred on the prediction. The clinical bone-age X-ray method (performed by paediatricians) is more accurate at ±2.5–5 cm for children in active puberty. Online calculators using age and current height have similar accuracy to the mid-parental method for children who have established a stable growth track. All methods are estimates — significant variation is normal and expected.
What is the mid-parental height formula?
The mid-parental height formula estimates a child’s adult height target based on both parents’ heights: For boys: (Father’s height + Mother’s height + 13 cm) ÷ 2. For girls: (Father’s height + Mother’s height − 13 cm) ÷ 2. The 13 cm adjustment accounts for the average height difference between adult males and females. This formula was published by Tanner et al. in 1966 and has been validated in numerous population studies. It’s most useful for young children (under 5) where current height data is less predictive.
Does genetics determine height?
Genetics accounts for approximately 60–80% of adult height variability in well-nourished populations. Over 700 genetic variants have been identified that contribute to height, making it one of the most polygenic traits studied. Identical twins raised apart show very similar adult heights despite different environments, confirming the dominant genetic contribution. However, the remaining 20–40% is environmental — primarily nutrition, sleep quality, physical activity, and general health during childhood. In populations with historical malnutrition, environmental factors play a larger role.
How does puberty affect height growth?
Puberty triggers the pubertal growth spurt — a period of accelerated height increase driven by growth hormone and sex steroids (oestrogen and testosterone). Girls typically experience their growth spurt between ages 10–14, peaking at approximately 8–9 cm/year. Boys’ growth spurts occur later, between ages 12–16, peaking at 9–10 cm/year. After the growth spurt, growth hormone-driven bone lengthening declines as oestrogen causes the growth plates to fuse. Girls stop growing approximately 2 years after menarche; boys continue until their late teens or early twenties.
When do children stop growing?
Most girls reach their final adult height by age 14–16, approximately 2 years after the start of menstruation. Boys typically reach final height between 17–21 years old, later than girls because they begin puberty 1–2 years later and have a more prolonged growth spurt. Growth plates (epiphyseal plates) close when they fuse in response to rising oestrogen levels during puberty — at this point, height increase is no longer possible. Bone age X-rays can determine whether growth plates remain open.
Can nutrition affect my child’s height?
Yes — adequate nutrition is essential for achieving genetic height potential. Protein (particularly during the growth spurt), calcium, vitamin D, and zinc are the most studied nutrients for bone and linear growth. Chronic malnutrition, iron deficiency, and vitamin D deficiency can all impair growth and result in children not reaching their genetic potential. In well-nourished populations, nutritional differences between individuals have relatively modest effects on adult height. Ensuring your child has a balanced, varied diet with adequate protein and micronutrients supports optimal growth.
When should I see a paediatrician about my child’s growth?
Consult a paediatrician if: (1) Your child’s height falls below the 3rd percentile or above the 97th percentile on growth charts; (2) Growth slows significantly — crossing two major percentile lines downward (e.g. from 50th to 10th); (3) Growth velocity is less than 5 cm/year in a pre-pubertal child (from age 4+); (4) Your child shows signs of early or very delayed puberty; (5) There’s a large discrepancy between the child’s height and mid-parental prediction (more than 10 cm below target). A paediatrician can assess bone age, check growth hormone levels, and rule out underlying medical causes if needed.
Can height predictions change over time?
Yes — height predictions become more accurate as children get older, particularly once they’ve established a stable growth percentile track (usually by age 4–5). Predictions also change significantly during puberty, when timing of the growth spurt introduces the most variability. A child who enters puberty earlier than average may appear “taller than expected” in early adolescence but end up shorter as an adult, while a late bloomer may appear shorter before eventually catching up. Re-running predictions with updated measurements every 6–12 months provides progressively more accurate estimates.

Predict your child’s adult height now

Three science-based methods, personalised growth chart, and genetic analysis — free and instant.

Predict adult height ↑