made up some hardnesses
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@ -1,3 +1,12 @@
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elements.iron.hardness = 0.74
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//https://www.engineeringtoolbox.com/bhn-brinell-hardness-number-d_1365.html
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//https://en.wikipedia.org/wiki/Hardnesses_of_the_elements_(data_page)
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//"Annealed chissel steel" hardness and then divided by iron hardness (Brinell)
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//sqrt()ed like IACS-derived conductivities and scaled to the 0.8 hardness of steel
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//and because 1 means infinite hardness, the others are derived using
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//1-(0.26/(otherThingBHN/200))
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//it doesn't matter much anyway but I'd like to have some semblance/veneer of accuracy
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//Copper exists
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elements.ruthenium = {
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@ -7,6 +16,7 @@ elements.ruthenium = {
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category: "solids",
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density: 12450,
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conduct: 0.45,
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hardness: 0.97593,
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},
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elements.molten_ruthenium = {
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@ -20,6 +30,7 @@ elements.rhodium = {
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category: "solids",
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density: 12410,
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conduct: 0.59,
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hardness: 0.94694,
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},
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elements.molten_rhodium = {
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@ -33,6 +44,7 @@ elements.palladium = {
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category: "solids",
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density: 12023,
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conduct: 0.38,
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hardness: 0.82667,
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},
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elements.molten_palladium = {
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@ -48,6 +60,7 @@ elements.rhenium = {
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category: "solids",
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density: 21020,
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conduct: 0.29,
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hardness: 0.96061,
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},
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elements.molten_rhenium = {
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@ -61,6 +74,7 @@ elements.osmium = {
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category: "solids",
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density: 22590,
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conduct: 0.40,
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hardness: 0.98673,
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},
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elements.molten_osmium = {
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@ -74,6 +88,7 @@ elements.iridium = {
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category: "solids",
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density: 22560,
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conduct: 0.54,
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hardness: 0.96886,
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},
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elements.molten_iridium = {
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@ -87,6 +102,7 @@ elements.platinum = {
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category: "solids",
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density: 21450,
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conduct: 0.38,
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hardness: 0.83226,
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},
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elements.molten_platinum = {
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@ -104,7 +120,8 @@ elements.mercury = {
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stateLow: "frozen_mercury",
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category: "liquids",
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density: 13534,
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conduct: 0.13
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conduct: 0.13,
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breakInto: "mercury_gas",
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},
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elements.frozen_mercury = {
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@ -117,6 +134,7 @@ elements.frozen_mercury = {
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stateHigh: "mercury",
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category: "solids",
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hidden: true,
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hardness: 0.2775, //(desperately scaled Mohs hardness)
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},
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elements.mercury_gas = { //hg d@bp extrapolated from density change with temperature: 12743
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@ -130,4 +148,4 @@ elements.mercury_gas = { //hg d@bp extrapolated from density change with tempera
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stateLow: "mercury",
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category: "gases",
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hidden: true,
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}
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}
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