Calculations for Titanium, Chrome and Iridium #2
							
								
								
									
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| ## miner setup | ## miner setup | ||||||
|  | - place one ender chest, then 4 turtles facing away from it around it, with fuel and preferably labels set, like this: | ||||||
|  |  | ||||||
| - place one ender chest, then 4 turtles facing away from it around it, with fuel and preferably labels set |  | ||||||
|  |  | ||||||
|  | - give each turtle compare blocks before starting the program like this | ||||||
|  |  | ||||||
|  |  | ||||||
|  |  | ||||||
| **execute commands**: | **execute commands**: | ||||||
| - pastebin get gGy2HWcF mine | - `pastebin get gGy2HWcF mine` | ||||||
| - mine | - `mine` | ||||||
|  |  | ||||||
| ## boiler builder | ## boiler builder | ||||||
|  |  | ||||||
| - place turtle infront (facing away) from a resupply station | - **give the turtle fuel beforehand** | ||||||
| - provide low pressure boilers, liquid fueled fireboxes and liquiducts in the resupply station | - place turtle infront (facing away) from a resupply station like this: | ||||||
| - follow the instructions of the turtle after placing it and starting the program |  | ||||||
| - give the turtle fuel beforehand |  | ||||||
|  | - the boilers are built infront of the turtle to the right, make sure the ground is even and is at least 2 blocks deep for the water | ||||||
|  | - provide low pressure boilers, liquid fueled fireboxes and liquiducts in the resupply station like this: | ||||||
|  |  | ||||||
|  |  | ||||||
|  | - follow the instructions of the turtle after placing it and starting the program, required items will look like this: | ||||||
|  |  | ||||||
|  |  | ||||||
|  |  | ||||||
| **execute commands**: | **execute commands**: | ||||||
| - pastebin get ZJt5uwjW boiler | - `pastebin get ZJt5uwjW boiler` | ||||||
| - boiler | - `boiler` | ||||||
|  |  | ||||||
| ## lava refuel setup | ## lava refuel setup | ||||||
|  |  | ||||||
| @@ -23,16 +35,31 @@ | |||||||
| - place 1 bucket of lava in first slot | - place 1 bucket of lava in first slot | ||||||
|  |  | ||||||
| **execute commands**: | **execute commands**: | ||||||
| - label set <name> | - `label set <name>` | ||||||
| - pastebin get nFSUKiYE lava | - `pastebin get nFSUKiYE lava` | ||||||
| - refuel | - `refuel` | ||||||
| - lava 10 | - `lava 10` | ||||||
|  |  | ||||||
|  | ## IBF Distribution turtle | ||||||
|  |  | ||||||
|  | - **give the turtle fuel beforehand** | ||||||
|  | - place above me interface, set the interface to keep 4 dust (titanium/chrome/tungsten) | ||||||
|  |  | ||||||
|  | Like this: | ||||||
|  |  | ||||||
|  |  | ||||||
|  |  | ||||||
|  | **execute commands**: | ||||||
|  | - `pastebin get iq0Xe2KF ibf` | ||||||
|  | - `ibf` | ||||||
|  |  | ||||||
| ## grindstone turtle | ## grindstone turtle | ||||||
|  |  | ||||||
|  | Place an engineering turtle (turtle with crescent hammer, 3 iron + 1 silver) facing the crank of a grindstone | ||||||
|  |  | ||||||
| **execute commands**: | **execute commands**: | ||||||
| - pastebin get pRPJkvnv grind | - `pastebin get pRPJkvnv startup` | ||||||
| - grind | - `startup` | ||||||
|  |  | ||||||
| same for the killing turtles in xp farm | same for the killing turtles in xp farm | ||||||
|  |  | ||||||
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							| @@ -228,11 +228,11 @@ In 3x3 Chunk Fläche: | |||||||
| - 34x Reinforced Machine Casings (54x Steel (plates), 9x Advanced Machine Blocks, 18x Advanced Circuits) | - 34x Reinforced Machine Casings (54x Steel (plates), 9x Advanced Machine Blocks, 18x Advanced Circuits) | ||||||
| - 2x Lava inside | - 2x Lava inside | ||||||
|  |  | ||||||
| End setup: 4 Stacked on top of each other | End setup: 3 Stacked on top of each other | ||||||
| - 4x Titanium | - 4x Titanium | ||||||
| - 7x Chrome (keep an eye on balancing, logistic pipes?) | - 4x Chrome | ||||||
| - 4x Tungsten (need 16x kanthal heating coils, no nichrome) | - 1x Tungsten (need 4x kanthal heating coils, no nichrome) (only 30 total tungsten are needed, 1 IBF takes less than an hour to make those) | ||||||
| - 1x Aluminium (if using aluminium for the mixed metal ingots, otherwise 1 is fine) | - 3x Aluminium (if using aluminium for the mixed metal ingots, otherwise 1 is fine) | ||||||
|  |  | ||||||
| ### Drop Mob Farms | ### Drop Mob Farms | ||||||
|  |  | ||||||
| @@ -271,18 +271,31 @@ Keep enough for Assemblers making Data Control Circuits etc. | |||||||
|  |  | ||||||
| ## End Game | ## End Game | ||||||
|  |  | ||||||
| ### For Chrome (need 498) | ### For Iridium (need 200) | ||||||
| 4 Electrolyzers on ruby dust -> chrome dust | - Mine 5-6 stacks of Sheldonite Ore | ||||||
| 2+ stacks centrifuges for redstone -> ruby dust | - 2 Grinders for Sheldonite and Ferrous with Mercury Cells | ||||||
|  | - 1 stack of centrifuges for platinum dust | ||||||
|  | - Keep ~300 platinum for circuit boards for the fusion | ||||||
|  |  | ||||||
| ### For Titanium (need 252) | More details [here](./material%20calculations/iridium_calcs.md) | ||||||
| 16 Electrolyzers on bauxite dust |  | ||||||
|  |  | ||||||
| ### For Beryllium (need 256) | ### For Chrome (need 526) | ||||||
| 4 Electrolyzers on ender pearl dust | - 4 IBFs for chrome dust -> chrome ingots | ||||||
|  | - 4 electrolyzers on ruby dust -> chrome dust | ||||||
|  | - 3 stacks centrifuges for redstone -> ruby dust | ||||||
|  |  | ||||||
| ### For Helium (need 63) | More details [here](./material%20calculations/chrome_calcs.md) | ||||||
| 16 Centrifuges on end stone dust (make with tome of alkahest) |  | ||||||
|  | ### For Titanium (need 280) | ||||||
|  | - 16 electrolyzers on bauxite dust | ||||||
|  |  | ||||||
|  | More details [here](./material%20calculations/titanium_calcs.md) | ||||||
|  |  | ||||||
|  | ### For Beryllium (need 264) | ||||||
|  | - 4 electrolyzers on ender pearl dust | ||||||
|  |  | ||||||
|  | ### For Helium (need 45) | ||||||
|  | - 16 centrifuges on end stone dust (make with tome of alkahest) | ||||||
|  |  | ||||||
|  |  | ||||||
| ## Items for Fusion: | ## Items for Fusion: | ||||||
| @@ -337,21 +350,12 @@ Total of 57 Superconductors required (15 recipes of 4): | |||||||
| - 228 Energy Flow Circuits -> 228 Lapotron Crystals, 228 Platinum, 9576 Redstone (including redstone to lapis), 2052 Copper, 4104 Rubber | - 228 Energy Flow Circuits -> 228 Lapotron Crystals, 228 Platinum, 9576 Redstone (including redstone to lapis), 2052 Copper, 4104 Rubber | ||||||
| - 526 Chrome | - 526 Chrome | ||||||
| - 280 Titanium | - 280 Titanium | ||||||
| - 50 Iridium Plates / 200 Iridium Ingots | - 50 Iridium Plates / 200 Iridium Ingots -> Maximum of 360 or ~6 Stacks of Sheldonite necessary!! | ||||||
| - 264 Beryllium Cells | - 264 Beryllium Cells | ||||||
| - 1056 Dense Copper Plates | - 1056 Dense Copper Plates | ||||||
| - 289 Platinum Plates (including the ones for energy flow circuits) | - 289 Platinum Plates (including the ones for energy flow circuits) | ||||||
|  |  | ||||||
|  | ## Charging the Reactor: | ||||||
|  1 Fusion coil:  | - Assuming full throughput, the 4 Energy Injectors can accept 32768EU/t, taking about 1 minute to fully charge the required 40 million EU. | ||||||
| 	4 energy flow circuits | - This would require 64 boiler pairs (4 layers) with at least partially charged MFSUs, or 85 boiler pairs without any buffer dedicated to the charging. | ||||||
| 	1 superconductor |  | ||||||
| 	2 chrome ingots |  | ||||||
| 	4 chrome plates |  | ||||||
| 	4 titanium plates |  | ||||||
| 	1 iridium plate |  | ||||||
| 	8 beryllium cells |  | ||||||
| 	32 dense copper plates |  | ||||||
| 	128 coal dust |  | ||||||
| 	128 tin dust |  | ||||||
|  |  | ||||||
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							| @@ -4,7 +4,7 @@ | |||||||
|  |  | ||||||
| ## Chrome Ingots from Chrome Dust | ## Chrome Ingots from Chrome Dust | ||||||
|  |  | ||||||
| 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. | 1 chrome dust in an IBF takes 40 seconds. For 526 chrome that would take ~5:50h. 4 IBF (one circle around a casing) take 1:27h. | ||||||
|  |  | ||||||
| Power consumption is 128EU/t per IBF. | Power consumption is 128EU/t per IBF. | ||||||
|  |  | ||||||
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|  | # Titanium Production Calculations | ||||||
|  |  | ||||||
|  | **280 total titanium needed** | ||||||
|  |  | ||||||
|  | ## Titanium Ingots from Titanium Dust | ||||||
|  |  | ||||||
|  | 1 titanium dust in an IBF takes 50 seconds. For 280 titanium that would take 3:53h. 4 IBF (one circle around a casing) take 58.3 minutes. | ||||||
|  |  | ||||||
|  | Power consumption is 128EU/t per IBF. | ||||||
|  |  | ||||||
|  | ## Titanium Dust from Bauxite Dust | ||||||
|  |  | ||||||
|  | 12 Bauxite Dust make 0.5 (2 small piles) Titanium Dust in an electrolyzer in 100 seconds using 128EU/t. For 280 Titanium, 6720 Bauxite Dust are necessary. In one electrolyzer, this would take 15:33h. 4 electrolyzers take 3:53h, 16 electrolyzers take 58.3 minutes. | ||||||
|  |  | ||||||
|  | ## Bauxite Dust from Bauxite Ore | ||||||
|  |  | ||||||
|  | 1 Bauxite Ore can be macerated into 4 Bauxite Dust, so 1680 Bauxite Ore are needed. | ||||||
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