Croissants Lab114 recipes

Croissants Lab

What moves together in 114 croissant recipes

When a recipe uses more of one ingredient, does it tend to use more or less of another? For every pair of the 6 ingredient ratios (grams per 100 g of flour), this page ranks all 114 recipes on each and measures how closely the two rankings agree: Spearman's rho, from −1 (the more of one, always the less of the other) through 0 (unrelated) to 1 (always rise together).

15 pairs in all: 1 rises together at rho 0.20 or more, none move in opposite directions at −0.20 or less, and 8 are close to unrelated (between −0.10 and 0.10). This describes recipes as they are published; it does not say what changing one amount would do to a bake.

Every pair at once

Read a cell by its row and column. Caramel cells rise together, slate cells move in opposite directions, and the deeper the color the stronger the relationship. Pale cells with grey numbers are not distinguishable from no relationship with 114 recipes (p of 0.05 or more).

Butter and milk or water: rho 0.05, negligible, not distinguishable from zero0.05Butter and sugar: rho 0.27, weak0.27Milk or water and sugar: rho −0.11, very weak, not distinguishable from zero−0.11Butter and salt: rho 0.12, very weak, not distinguishable from zero0.12Milk or water and salt: rho 0.07, negligible, not distinguishable from zero0.07Sugar and salt: rho 0.06, negligible, not distinguishable from zero0.06Butter and yeast: rho 0.15, very weak, not distinguishable from zero0.15Milk or water and yeast: rho −0.03, negligible, not distinguishable from zero−0.03Sugar and yeast: rho 0.06, negligible, not distinguishable from zero0.06Salt and yeast: rho 0.15, very weak, not distinguishable from zero0.15Butter and egg in the dough: rho 0.05, negligible, not distinguishable from zero0.05Milk or water and egg in the dough: rho −0.19, very weak−0.19Sugar and egg in the dough: rho 0.01, negligible, not distinguishable from zero0.01Salt and egg in the dough: rho −0.10, negligible, not distinguishable from zero−0.10Yeast and egg in the dough: rho 0.10, very weak, not distinguishable from zero0.10Milk or waterSugarSaltYeastEgg in the doughButterMilk or waterSugarSaltYeast
All 15 pairs as a table
Spearman correlation for every pair of ratios, strongest first
PairRhoStrengthp
Butter and sugar0.27weak0.004
Milk or water and egg in the dough−0.19very weak0.042
Butter and yeast0.15very weak0.11
Salt and yeast0.15very weak0.11
Butter and salt0.12very weak0.20
Milk or water and sugar−0.11very weak0.26
Yeast and egg in the dough0.10very weak0.29
Salt and egg in the dough−0.10negligible0.31
Milk or water and salt0.07negligible0.43
Sugar and salt0.06negligible0.53
Sugar and yeast0.06negligible0.56
Butter and milk or water0.05negligible0.59
Butter and egg in the dough0.05negligible0.61
Milk or water and yeast−0.03negligible0.79
Sugar and egg in the dough0.01negligible0.88

The one clear relationship

The strongest pairs that reach rho 0.20 either way with a p-value under 0.01. Each dot is a recipe; the line joins the median of the second ingredient within each fifth of recipes ranked by the first.

  1. Recipes with more butter tend to use more sugar

    rho 0.27 across 114 recipes · weak · p 0.004

    The third of recipes with the most butter use a median of 10% sugar; the third with the least butter, 8%.

    0%50%100%150%0%10%20%30%Butter, % of flour →↑ Sugar, % of flour

What moves on its own

Every ingredient moves with at least one other: none has its strongest correlation under 0.15.

The pairs closest to unrelated: sugar and egg in the dough (0.01), milk or water and yeast (−0.03), butter and egg in the dough (0.05) and butter and milk or water (0.05).

How the numbers are made

Spearman's rho is the ordinary correlation of the two rankings, so it measures whether one amount tends to rise with the other, in a straight line or not, and a single extreme recipe moves it little. A recipe with none of an ingredient ranks lowest on it. An ingredient fewer than 12 recipes use is left out of the matrix.

The p-value is the chance of a rho at least this far from zero if the two amounts were unrelated. With 15 pairs tested, about 0.8 would pass 0.05 by chance alone even if no ingredient were related to another, which is why the relationships explained above must pass 0.01 and reach 0.20.

Every number is divided by the same flour weight, so a recipe light on flour reads high on every ingredient at once. That nudges every correlation toward positive: part of a positive rho can be flour, not the two ingredients. A negative one holds despite it.

A correlation describes the recipes as published. “Recipes with more butter tend to use…” is a statement about what bakers write down together, not a rule that adding one forces the other. Plot any two ingredients to see the recipes behind a number.