Add more precise fusion material calculations and Chrome
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Notes.md
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Notes.md
@ -288,20 +288,70 @@ Keep enough for Assemblers making Data Control Circuits etc.
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## Items for Fusion:
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33 Fusion Coils:
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157 Energy Flow Circuits
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132 Chrome Plates
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132 Titanium Plates
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66 Chrome Ingots
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- 132 Energy Flow Circuits
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- 33 Superconductors
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- 132 Chrome Plates
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- 66 Chrome Ingots
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- 132 Titanium Plates
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- 33 Iridium Plates
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- 264 Beryllium Cells
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- 1056 Dense Copper Plates
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- 4224 Coal Dust
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- 4224 Tin Dust
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120 Advanced Machine Casings (32 (below) + 30 (above) + 24 (inner) + 34 (outer)):
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- 60 Data Control Circuits
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- 300 Chrome Plates
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- 120 Titanium Plates
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1 Fusion Control Computer (not including the fusion coil):
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- 4 Data Orbs
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- 10 Energy Flow Circuits
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4 Fusion Energy Injectors
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- 24 Superconductors
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- 32 Energy Flow Circuits
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- 16 Chrome Plates
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- 16 Titanium Plates
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- 2 Iridium Plates
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- 16 Lapotron Crystals
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2 Fusion Material Injectors
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- 6 Energy Flow Circuits
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- 8 Chrome Plates
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- 8 Titanium Plates
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1 Fusion Material Extractor
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- 3 Energy Flow Circuits
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- 4 Chrome Plates
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- 4 Titanium Plates
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Total of 57 Superconductors required (15 recipes of 4):
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- 45 Helium cells
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- 30 Tungsten Plates
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- 15 Iridium Plates
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- 45 Energy Flow Circuits
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120 Advanced Machine Casings:
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60 Data Control Circuits
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300 Chrome Plates
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120 Titanium Plates
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Other compos:
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60 Energy Flow Circuit
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4 Data Orb
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**Important Base Material Totals**:
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- 228 Energy Flow Circuits -> 228 Lapotron Crystals, 228 Platinum, 9576 Redstone (including redstone to lapis), 2052 Copper, 4104 Rubber
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- 526 Chrome
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- 280 Titanium
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- 50 Iridium Plates / 200 Iridium Ingots
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- 264 Beryllium Cells
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- 1056 Dense Copper Plates
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- 289 Platinum Plates (including the ones for energy flow circuits)
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63 Helium Cells
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1 Fusion coil:
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4 energy flow circuits
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1 superconductor
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2 chrome ingots
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4 chrome plates
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4 titanium plates
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1 iridium plate
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8 beryllium cells
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32 dense copper plates
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128 coal dust
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128 tin dust
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@ -1,36 +1,36 @@
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# Chrome Production Calculations
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**498 total chrome needed**
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**526 total chrome needed**
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## Chrome Ingots from Chrome Dust
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1 chrome dust in an IBF takes 40 seconds. For 498 chrome that would take ~5.5 hours. 4 IBF (one circle around a casing) takes 1:23h.
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1 chrome dust in an IBF takes 40 seconds. For 526 chrome that would take ~5:50h. 4 IBF (one circle around a casing) takes 1:27h.
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Power consumption is 128EU/t per IBF.
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## Chrome Dust from Ruby Dust
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9 ruby dust make 1 chrome dust in an electrolyzer in 25 seconds. For 498 chrome dust, 4482 ruby dust are necessary. In one electrolyzer, this would take ~3.5h. 4 electrolyzers need 51 minutes.
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9 ruby dust make 1 chrome dust in an electrolyzer in 25 seconds. For 526 chrome dust, 4734 ruby dust are necessary. In one electrolyzer, this would take ~3:39h. 4 electrolyzers need 55 minutes.
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Power consumption is 50EU/t per electrolyzer.
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## Ruby Dust from Redstone Dust
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10 redstone dust make 1 ruby dust in a centrifuge in 350 seconds. A stack of centrifuges produces 1 ruby dust every 5.47s or 0.183 ruby dust per second. For 4482 ruby dust, a stack of centrifuges needs 6:48h. Two stacks need 3:24h, 3 stacks 2:16h, 4 stacks 1:42h.
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10 redstone dust make 1 ruby dust in a centrifuge in 350 seconds. A stack of centrifuges produces 1 ruby dust every 5.47s or 0.183 ruby dust per second. For 4734 ruby dust, a stack of centrifuges needs 7:11h. Two stacks need 3:36h, 3 stacks 2:24h, 4 stacks 1:48h, 5 stacks 1:26h.
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Note that extra rubies will be found by the mining turtles/quarry.
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Each stack of centrifuges consumes 1.8 redstone per second or 110 redstone per minute. For the entire 498 chrome, 44.8k redstone are necessary.
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Each stack of centrifuges consumes 1.8 redstone per second or 110 redstone per minute. For the entire 526 chrome, 47.34k redstone are necessary.
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Power consumption is 320EU/t per stack of centrifuges.
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## Suggestion
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- 4 IBFs on chrome -> 1:23h, 512EU/t
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- 4 electrolyzers -> 0:51h, 200EU/t
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- 3 stacks of redstone centrifuges -> 2:16h, 1280EU/t
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- 4 IBFs on chrome -> 1:27h, 512EU/t
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- 4 electrolyzers -> 0:55h, 200EU/t
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- 3 stacks of redstone centrifuges -> 2:24h, 1280EU/t
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In 1:23h, the centrifuges would produce 2732 ruby dust, so quarries would need to supplement 1750.
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In 1:27h, the centrifuges would produce 2865 ruby dust, so quarries would need to supplement 1868.
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Total power: ~2000EU/t, needs about 10 boilers
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material calculations/iridium_calcs.md
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material calculations/iridium_calcs.md
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# Iridium Production Calculations
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**200 total iridium ingots needed**
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## Making Plates
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*No iridium is needed in ingot form, everything can be converted to plates!*
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50 Plates are needed for the Fusion Reactor. Nothing needed for anything else!
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An Implosion Compressor makes 1 plate per second from Iridium Alloy Ingots. That takes a minute for all Iridium Plates needed in the run, using 32EU/t. Basically completely irrelevant other than having to place the machine once.
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For 50 Iridium Plates, 400 Industrial TNT are needed.
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## Making Iridium Alloy Ingots
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Make in a rolling machine using 4 Iridium Ingots, 4 Advanced Alloys and 1 Diamond Dust. Takes 5 seconds per Plate. For 50 Plates that is about 4 minutes. Uses MJ.
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## Making Ingots
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From Ore: Compress 1 ore to 1 ingot.
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From Sheldonite: Grind Sheldonite with mercury cells in the Industrial Grinder. Takes 5s per ore and 128EU/t. Produces 2 Iridium Nuggets and 3 Platinum Dust per ore. Platinum Dust can be centrifuged to Iridium Nuggets 1:1, so in total that is 5/9 Iridium Ingots per Sheldonite Ore. Compress the nuggets into ingots.
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From Ferrous Ore: Grind Ferrous with mercury cells in the Industrial Grinder. Takes 5s per ore and 128EU/t. Produces 1 Platinum Dust per ore.
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## Centrifuging Platinum Dust
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1 Centrifuge takes 1 Platinum Dust (no cells) and makes 1 Iridium Nugget (and 1 tiny pile of Nickel Dust) in 150s using 5EU/t.
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One stack of centrifuges produces 0.427 Iridium Nuggets per second, which is 0.047 Iridium Ingots per second or 2.84 Iridium Ingots per Minute.
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