Friction, Backlash, and Wire Stretch: Where Analogue Error Lived
No rounding error — but plenty of drag. How friction, gear backlash, and wire stretch set the accuracy floor every brass predictor lived with.
The mechanisms, explained with drawings instead of hand-waving. Harmonic constituents, gear ratios that model the moon, pulley adders that sum waves on a wire, and the error physics — friction, backlash, stretch — that set every machine’s limits. Start with the spring–neap breathing if you are new.
No rounding error — but plenty of drag. How friction, gear backlash, and wire stretch set the accuracy floor every brass predictor lived with.
The cleverest part of every tide machine: how floating pulleys sum a dozen crank motions onto one wire, and why friction was the eternal enemy.
The fortnightly heartbeat of the tide: how the moon and sun take turns amplifying and cancelling each other, in plain English with a visual.
Three instruments, three jobs: the staff you read by eye, the gauge that records, and the predictor that foretells. How observation became prediction.
How toothed wheels approximate the 12.42-hour lunar period: compound trains, continued fractions, and the craft of the gear cutters explained visually.
Meet the waves inside every prediction: the big four constituents, their shallow-water children, and why America's Machine No. 2 stopped at 37.