What changes
21.0, 21.5, 22.0 and 22.5 °C become 42, 43, 44 and 45 °G. Whole-number settings can be faster to scan and compare.
A simple rescaling of Celsius can change how everyday temperatures feel to read and set — without changing the underlying measurement.
The Galliera scale is not a new thermodynamic quantity, new calibration method, or claim of extra precision. It is a numerical rescaling of Celsius intended for human-facing communication.
For numerical scale readings, multiply Celsius by two or divide Galliera by two. The Celsius zero point remains zero: 0 °G = 0 °C. For interval size, 1 °G = 0.5 °C.
Many thermostats and HVAC interfaces use 0.5 °C increments. Galliera maps the same sequence onto consecutive integers. The information content is identical; the display convention is different.
21.0, 21.5, 22.0 and 22.5 °C become 42, 43, 44 and 45 °G. Whole-number settings can be faster to scan and compare.
A sensor that resolves 0.5 °C resolves 1 °G. Galliera does not magically make the sensor more accurate or precise.
This statement has a precise meaning: keep the physical temperature span identical, then count one-degree intervals. It is a property of the notation—not a claim that the physical measurement has become more accurate.
Galliera gives twice as many whole-degree intervals across every identical physical span. A 0.5 °C change becomes exactly 1 °G.
A Galliera degree is 10% smaller than a Fahrenheit degree, so an identical physical span contains about 11.1% more whole-degree intervals.
Unlike Fahrenheit, Galliera keeps the intuitive Celsius zero reference: 0 °G = 0 °C.
Several possible formulas could have made Galliera resemble Fahrenheit more closely. The final design rejected offsets and extra arithmetic in favor of an exact factor of two.
The familiar Celsius reference remains intact: 0 °G = 0 °C.
Room temperature is around 40–44 °G, body temperature is around 74 °G, and extreme outdoor heat can approach 100 °G.
No offset is needed between Galliera and Celsius: simply multiply or divide by two.
The mathematical definition came first. The letter G then fit the concept in several satisfying ways. These are mnemonics and design rationales, not part of the physics.
Like Celsius, Fahrenheit, Kelvin and Rankine, the name follows the historical convention of an eponymous temperature scale.
In many typefaces, a capital G resembles a C with an added stroke — apt for a scale derived directly from Celsius.
G follows F, a small mnemonic connection to Fahrenheit, and precedes H — an informal reminder of the scale's human-centered goal.
Palais Galliera is the fashion museum of Paris. It is unrelated to the temperature scale; the shared name is simply an interesting coincidence.
Clear limits are part of the proposal.
No. Kelvin remains the SI base unit for thermodynamic temperature, and Celsius remains a standard SI-derived way of expressing temperature.
No. It changes numerical representation, not the underlying measurement or sensor quality.
No. It is simply 50 °C / 122 °F, a memorable extreme-weather reference. The scale has no special upper limit.
No. 74 °G = 37 °C is a familiar nominal reference. Human body temperature varies by person, measurement method and time of day.