253 lines
9.3 KiB
JavaScript
253 lines
9.3 KiB
JavaScript
neighbors = [[-1,0],[0,-1],[1,0],[0,1]]
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function exposedToAir(pixel) {
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if(isEmpty(pixel.x+neighbors[0][0],pixel.y+neighbors[0][1],true) || isEmpty(pixel.x+neighbors[1][0],pixel.y+neighbors[1][1],true) || isEmpty(pixel.x+neighbors[2][0],pixel.y+neighbors[2][1],true) || isEmpty(pixel.x+neighbors[3][0],pixel.y+neighbors[3][1],true)) {
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return true
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} else {
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return false
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}
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}
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function randomChoice(array) {
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return array[Math.floor(Math.random() * array.length)];
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}
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function tryTarnish(pixel,element,chance) {
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if(exposedToAir(pixel)) {
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if(Array.isArray(element)) {
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if(Math.random() < chance) {
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changePixel(pixel,randomChoice(element))
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}
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} else {
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if(Math.random() < chance) {
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changePixel(pixel,element)
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}
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}
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}
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}
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//Non-element: Liquid ammonia
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elements.liquid_ammonia = {
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color: "#bab6a9",
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behavior: behaviors.LIQUID,
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reactions: {
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"methane": { "elem1":null, "elem2":"cyanide", "chance":0.25 },
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"plant": { "elem1":"plant", "chance":0.05 },
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"wheat_seed": { "elem1":"wheat", "chance":0.05 },
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"grass": { "elem1":"grass", "chance":0.05 },
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"grass_seed": { "elem1":"grass", "chance":0.05 },
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"bamboo_plant": { "elem1":"bamboo", "chance":0.05 },
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"flower_seed": { "elem1":"flower_seed", "chance":0.05 },
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"petal": { "elem1":"flower_seed", "chance":0.05 },
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"vine": { "elem1":"vine", "chance":0.05 },
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"sapling": { "elem1":"tree_branch", "chance":0.05 },
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"tree_branch": { "elem1":"tree_branch", "chance":0.05 },
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"corn_seed": { "elem1":"corn", "chance":0.05 },
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"root": { "elem1":"root", "chance":0.05 },
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"dirt": { "elem1":"grass", "chance":0.05 },
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"mud": { "elem1":"grass", "chance":0.05 },
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"potato_seed": { "elem1":"potato", "chance":0.05 },
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"yeast": { "elem1":"yeast", "chance":0.05 },
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"fish": { "elem2":"meat" },
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"frog": { "elem2":"meat" },
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},
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tempHigh: -78,
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stateHigh: "ammonia",
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category: "liquids",
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state: "liquid",
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hidden: true,
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density: 681.9,
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}
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elements.ammonia.tempLow = -78
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elements.ammonia.stateLow = "liquid_ammonia"
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//Hydrogen
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//Hydrogen exists, but its solid form doesn't.
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elements.liquid_hydrogen.tempLow = -259.16
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elements.liquid_hydrogen.stateLow = "hydrogen_ice"
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elements.hydrogen_ice = {
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color: "#E6E6FF",
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behavior: behaviors.WALL,
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density: 76,
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category: "solids",
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state: "solid",
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hidden: true,
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tempHigh: -259,
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stateHigh: "liquid_hydrogen",
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}
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//Lithium
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elements.lithium = {
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color: "#b0ab9d",
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behavior: behaviors.WALL,
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tick: function(pixel) {
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tryTarnish(pixel,"lithium_oxide",0.007) //oxidation
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if(pixel.temp >= 179) {
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pixel.burning = true; //auto-ignition at 179*C
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pixel.burnStart = pixelTicks;
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}
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},
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reactions: {
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"steam": { "elem1": "hydrogen", "elem2": "lithium_hydroxide" }, //should be 2 Li(s) + 2 H2O -> 2 LiOH (aq) + H2(g) according to https://www.lenntech.com/periodic/water/lithium/lithium-and-water.htm#ixzz7LUgLrzua
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"water": { "elem1": "hydrogen", "elem2": "lithium_hydroxide" }, //should be 2 Li(s) + 2 H2O -> 2 LiOH (aq) + H2(g) according to https://www.lenntech.com/periodic/water/lithium/lithium-and-water.htm#ixzz7LUgLrzua
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"nitrogen": { "elem1": "lithium_nitride", "elem2": "lithium_nitride" }, //should be 6 Li + N2 → 2 Li3N according to Wikipedia
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"liquid_nitrogen": { "elem1": "lithium_nitride", "elem2": "lithium_nitride" }, //should be 6 Li + N2 → 2 Li3N according to Wikipedia
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"liquid_hydrogen": { "elem1": "lithium_hydride", "elem2": "lithium_hydride" }, //2 Li + H2 → 2 LiH
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"ammonia": { "elem1": ["hydrogen",null], "elem2": "lithium_amide" }, //2Li + 2NH_3 → 2LiNH_2 + H_2
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"liquid_ammonia": { "elem1": ["hydrogen",null], "elem2": "lithium_amide" }, //2Li + 2NH_3 → 2LiNH_2 + H_2
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},
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density: 534,
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category: "solids",
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state: "solid",
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conduct: 0.42697,
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hardness: 0.019,
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tempHigh: 180,
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burn: 20,
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burnTime: 130,
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burnInto: "lithium_oxide",
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fireColor: "#fc0a22",
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}
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elements.molten_lithium = { //this s*** is so f*** reactive when it's molten that there literally isn't enough research in the world to get even close to including a reasonable amount of its reactions because they simply don't say what it does to the 99,999,999,999 things it reacts with so i'm just going to f***ing use HT
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color: "#b0ab9d",
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behavior: [
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"XX|HT:1%1|XX",
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"M2 AND HT:0.1%1|HT:1%1|M2 AND HT:1%1",
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"M1|M1 AND HT:1%1|M1"
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],
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tick: function(pixel) {
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tryTarnish(pixel,"lithium_oxide",0.014) //oxidation
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},
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reactions: {
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"steam": { "elem1": "hydrogen", "elem2": "lithium_hydroxide" }, //should be 2 Li(s) + 2 H2O -> 2 LiOH (aq) + H2(g) according to https://www.lenntech.com/periodic/water/lithium/lithium-and-water.htm#ixzz7LUgLrzua
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"water": { "elem1": "hydrogen", "elem2": "lithium_hydroxide" }, //should be 2 Li(s) + 2 H2O -> 2 LiOH (aq) + H2(g) according to https://www.lenntech.com/periodic/water/lithium/lithium-and-water.htm#ixzz7LUgLrzua
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"nitrogen": { "elem1": "lithium_nitride", "elem2": "lithium_nitride" }, //should be 6 Li + N2 → 2 Li3N according to Wikipedia
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"liquid_nitrogen": { "elem1": "lithium_nitride", "elem2": "lithium_nitride" }, //should be 6 Li + N2 → 2 Li3N according to Wikipedia
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"liquid_hydrogen": { "elem1": "lithium_hydride", "elem2": "lithium_hydride" }, //2 Li + H2 → 2 LiH
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"ammonia": { "elem1": ["hydrogen",null], "elem2": "lithium_amide" }, //2Li + 2NH_3 → 2LiNH_2 + H_2
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"liquid_ammonia": { "elem1": ["hydrogen",null], "elem2": "lithium_amide" }, //2Li + 2NH_3 → 2LiNH_2 + H_2
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},
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burning: true,
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burnInto: "lithium_oxide",
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fireColor: "#fc0a22",
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density: 512,
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}
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elements.lithium_oxide = {
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color: "#eee9ec", //HRT UV-to-visible strategy again
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behavior: behaviors.POWDER,
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reactions: {
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"steam": { "elem1": "lithium_hydroxide", "elem2": "lithium_hydroxide", chance: 0.03 }, //> The oxide reacts slowly
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"water": { "elem1": "lithium_hydroxide", "elem2": "lithium_hydroxide", chance: 0.03 }, //> The oxide reacts slowly
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"carbon_dioxide": { "elem1": null, "elem2": "lithium_carbonate" },
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},
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density: 2013,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 1438,
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}
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elements.lithium_hydroxide = {
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color: "#eeeeee",
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behavior: behaviors.POWDER,
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reactions: {
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"steam": { "elem1": null, "elem2": "lithium_hydroxide_monohydrate" },
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"water": { "elem1": null, "elem2": "lithium_hydroxide_monohydrate" },
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"carbon_dioxide": { "elem1": "water", "elem2": [null,"lithium_carbonate"], chance: 0.5 }, //simulating 2 LiOH + CO_2 → Li_2_CO_3 + H_2_O
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},
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density: 1460,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 462,
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}
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elements.lithium_hydroxide_monohydrate = {
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color: "#e0e4e7",
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behavior: behaviors.POWDER,
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reactions: {
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"carbon_dioxide": { "elem1": "water", "elem2": [null,"lithium_carbonate"], chance: 0.5 }, //should be 2x water: 2 LiOH•H_2_O + CO_2 → Li_2_CO_3 + 2 H_2_O
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},
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tick: function(pixel) {
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emptyNeighborArray = [] //get empty neighbors to place split products
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for(i=0;i<4;i++) {
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if(isEmpty(pixel.x+neighbors[i][0],pixel.y+neighbors[i][1],true)) {
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emptyNeighborArray.push(neighbors[i])
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}
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}
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if(pixel.temp >= 100) {
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if(emptyNeighborArray.length > 0) {
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var placement = randomChoice(emptyNeighborArray)
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if(isEmpty(pixel.x+placement[0],pixel.y+placement[1])) {
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createPixel("steam",pixel.x+placement[0],pixel.y+placement[1])
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changePixel(pixel,"lithium_hydroxide")
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}
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}
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}
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},
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density: 1510,
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category: "powders",
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state: "solid",
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hidden: true,
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}
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elements.lithium_carbonate = { //todo?: https://en.wikipedia.org/wiki/Lithium_carbonate
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color: "#eeeeee",
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behavior: behaviors.POWDER,
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density: 2110,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 723,
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}
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elements.lithium_nitride = {
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color: "#eeeeee",
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behavior: behaviors.POWDER,
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reactions: {
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"steam": { "elem1": "lithium_hydroxide", "elem2": "ammonia" }, //should be Li_3_N + 3 H_2_O → 3 LiOH + NH_3
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"water": { "elem1": "lithium_hydroxide", "elem2": "ammonia" }, //should be Li_3_N + 3 H_2_O → 3 LiOH + NH_3
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"hydrogen": { "elem1": "lithium_hydride", "elem2": "lithium_amide" }, //possibly Li_3_N + H → LiH + LiNH_2
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"liquid_hydrogen": { "elem1": "lithium_hydride", "elem2": "lithium_amide" }, //possibly Li_3_N + H → LiH + LiNH_2
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},
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density: 1270,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 813,
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}
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elements.lithium_hydride = {
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color: "#eeeeee",
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behavior: behaviors.POWDER,
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reactions: { //this stuff is really f***ing reactive
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//"water": this thing's reaction with water has f***ing hydroxide ions and we know *nothing* about the physical properties of isolated hydroxide ions
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"ammonia": { "elem1": "hydrogen", "elem2": "lithium_amide" },
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"liquid_ammonia": { "elem1": "hydrogen", "elem2": "lithium_amide" },
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},
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density: 780,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 689,
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}
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elements.lithium_amide = {
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color: "#eeeeee",
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behavior: behaviors.POWDER,
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reactions: {
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"steam": { "elem1": "lithium_hydroxide", "elem2": "ammonia" },
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"water": { "elem1": "lithium_hydroxide", "elem2": "ammonia" },
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},
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density: 1178,
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category: "powders",
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state: "solid",
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hidden: true,
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tempHigh: 375,
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}
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//Sodium exists
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