The scale · Decision 12 of 12
Why the weight chart draws a line you did not measure
The heavy line on the weight chart is not your weighings. It is a weighted average of them, where recent days count for more. The kilos-per-week figure beside it is read off that line, not off the scale.
Written and maintained by Mattias Geniar. Last updated .
- What the app does
- Moves the line a tenth of the way towards each new reading, and shows a rate measured over whichever range you are looking at. The dots stay on the chart.
- How sure we are Fair , Real, but small, indirect, or thinly measured.
- The noise figure comes from two small studies measuring different kinds of variation. The smoothing itself is an engineering choice, not a research finding, and it runs about nine days behind.
The evidence for it
Two studies describe daily variation using different metrics. Reading the rate off the range you selected is our engineering choice, not a validated precision guarantee.
We are showing you a calculated figure in the place where a measurement would go, so here is the case for it.
What the scale said, 67 mornings What the app draws The true weight, which nobody can see
Why a single weighing tells you little
Khosla & Billewicz (1964) weighed nineteen people daily under standard conditions for several weeks and measured how far each morning was from that person's own trend. The day-to-day variation ranged from 0.39% to 0.78% of body weight, with a mean of 0.54%. They concluded that day-to-day changes rarely go above 1.5% of body weight. Schneditz et al. (2023) studied one man over 9,521 days of standardised measurements. The standard deviation was 0.53% between one day and the next, rising to 0.69% across a week. Unlike the older study’s residual variation around a fitted trend, this measures differences between two readings. The similar percentages are not interchangeable measurements.
Khosla & Billewicz did more than describe the noise. They set out the arithmetic for estimating a change from several readings at each end rather than one. They also noted that readings on nearby days tend to be off in the same direction. So readings spread further apart tell you more than readings bunched together. Averaging the ends is exactly what a smoothed line does, continuously.
The numbers behind our two settings
The smoothing moves the line a tenth of the way towards each new day's reading, which means a change takes about a week to show half of itself. The weekly rate is measured over the range the chart is showing, so the 7, 30 and 90 day views answer with three different numbers: the short one is about this week and is the noisiest, the long one is about the whole stretch. After a gap of d days, the next reading gets weight 1 − 0.9ᵈ, so a long gap is not treated like a single day. The chart above calls the same WeightTrend calculation as the app. Its noise is independent Gaussian variation with SD 0.6% of simulated weight, and each day has a 20% chance of being missed. These are illustrative assumptions.
The evidence against
Both studies are small. Khosla & Billewicz is nineteen people in 1964, including two babies and pregnant participants, weighed on household scales. Schneditz et al. is a single man, and its purpose was setting target weights for dialysis, not dieting. They measure different quantities and cannot establish a universal noise allowance.
The smoothing itself is not a research finding. A weighted average that takes about a week to show half of a change is an engineering choice with a long history in weight tracking. A Kalman filter could produce a model-based band, but its validity would depend on assumptions and calibration. We chose the simpler one because you can check it by hand and because we cannot yet show a band we would trust.
A smoothed line runs behind reality by design. For a constant linear change and daily readings, the steady-state lag is about nine days. Gaps and changing trends alter that behavior. If you change something today, the line will not agree with you for a week or two, and during that time it is wrong in a direction we can predict. That is the cost of a line that does not react to water weight.
None of this makes the scale a measure of fat. Everything above is about separating a trend from noise in body weight. Glycogen, salt, the menstrual cycle and creatine all change weight without changing fat, and the 30 day range is uncomfortably close to the length of a cycle. The dots stay on the chart on purpose, so you can see the scatter the line is drawn through, rather than being handed a confident line and asked to trust it.