Cinderlift wiki

Materials

Every one of the 115 substances in the world, with the numbers that decide how each behaves. Click a column to sort by it.

115 of 115
Material Kind Density Conducts Ignites Melts or boils Freezes or sets
Wall Solid 255 30
Stone Solid 255 85 185 °C
Sand Powder 150 90 170 °C
Dirt Powder 140 80
Grass Powder 140 80
Water Liquid 100 180 100 °C 0 °C
Ice Solid 92 120 6 °C
Steam Gas 8 5 45 °C
Fire Gas 3 200 215 °C 100 °C
Plasma Gas 1 255 120 °C
ColdFire Gas 3 200 5 °C
LiqN2 Liquid 80 200 -25 °C
Mercury Liquid 250 240 150 °C -30 °C
HgVapour Gas 20 20 130 °C
FrozenHg Solid 255 240 -24 °C
Iron Solid 220 255 200 °C
MoltIron Liquid 215 255 160 °C
Copper Solid 224 255 175 °C
MoltCopp Liquid 218 255 140 °C
Graph Solid 190 255
Lava Liquid 200 120 100 °C
Wood Solid 150 70 80 °C
Rubber Solid 150 12 100 °C
MoltRub Liquid 115 12 65 °C
Clone Solid 255 40
Void Solid 255 40
Heater Solid 255 200
Cooler Solid 255 200
Lamp Solid 255 6
Torch Solid 255 6
CuOre Powder 168 100 165 °C
FeOre Powder 170 100 190 °C
MoltSlag Liquid 190 110 120 °C
Slag Solid 255 60
Clay Powder 145 70 120 °C
Ceramic Solid 255 18
Coal Powder 130 40 90 °C
Ember Solid 255 220 213 °C 70 °C
Fuel Liquid 160 45 135 °C
FuelFire Solid 255 255 95 °C
Door Solid 255 12
Open Door Solid 255 12
Rope Solid 255 14 90 °C
Platform Solid 255 14 90 °C
Oak Seed Powder 120 12 95 °C
Oak Sapling Solid 255 12 85 °C
Oak Leaves Solid 255 10 80 °C
Oak Seed Pod Solid 255 10 80 °C
Birch Seed Powder 120 12 95 °C
Birch Sapling Solid 255 12 85 °C
Birch Wood Solid 255 14 90 °C
Birch Leaves Solid 255 10 80 °C
Birch Seed Pod Solid 255 10 80 °C
Stalk Solid 255 9 70 °C
Dry Stalk Solid 255 9 65 °C
Wheat Seed Powder 110 10 90 °C
Wheat Solid 255 10 70 °C
Flax Seed Powder 110 10 90 °C
Flax Solid 255 10 70 °C
Cotton Seed Powder 110 10 90 °C
Cotton Solid 255 10 60 °C
Device Solid 255 200
Aluminum Nitride Solid 255 255
Bench Solid 255 60
Anvil Solid 255 200
ChemStn Solid 255 40
Assembly Solid 255 100
GlasMelt Liquid 190 80 130 °C
Glass Solid 255 30
TinOre Powder 165 100 120 °C
Tin Solid 210 230 130 °C
TinMelt Liquid 205 230 105 °C
BrnzMelt Liquid 222 255 150 °C
Bronze Solid 226 255 185 °C
SteelMlt Liquid 230 255 170 °C
Steel Solid 235 255 210 °C
Acid Liquid 95 40 70 °C
AcidGas Gas 10 5 45 °C
GoldOre Powder 175 100 160 °C
Gold Solid 240 255 150 °C
GoldMelt Liquid 236 255 120 °C
TiOre Powder 180 110 208 °C
Titanium Solid 215 150 205 °C
TiMelt Liquid 210 150 175 °C
WOre Powder 195 120 211 °C
Tungsten Solid 255 200 213 °C
WMelt Liquid 250 200 195 °C
Refract Solid 240 4
Stratum Solid 255 30
Forge Solid 255 40
Spring Solid 255 26
Chitin Powder 90 14 120 °C
Glowfluid Liquid 140 150
Sieve Solid 255 4
GasSieve Solid 255 4
Wax Liquid 104 55
Inert Fluid Liquid 100 180
Flower Solid 30 10 65 °C
Beeswax Solid 96 70 105 °C 60 °C
Molten Beeswax Liquid 94 60 105 °C 25 °C
Honey Liquid 138 90
Coal Wax Solid 100 70 78 °C
Coal Honey Liquid 142 90 72 °C
Wax Ember Solid 255 180 50 °C
Web Solid 255 110 60 °C
Brimstone Solid 150 80 140 °C
Brimfire Solid 255 210 80 °C
Ash Powder 90 40
Fumarole Solid 255 180
Wood Ember Solid 255 120
Flower Seed Powder 120 12 85 °C
Coke Powder 190 70 150 °C
Coke Ember Solid 255 255 95 °C
Coke Gas Gas 8 25 145 °C
Cinderling Ember Solid 255 255 95 °C

Density is relative: a heavier material sinks through a lighter one, and a gas rises through anything denser than itself. Conductivity is how readily heat crosses INTO a material, which is why an iron wall cooks what is behind it and a refractory one does not.