Polymer Reaction Formulae are seeded on the NPC market under Reactions > Polymer Reactions.In addition to fullerite gases, these reactions also require the appropriate type of fuel blocks and minerals from standard asteroid ores.Īfter the reaction process the Hybrid polymer produced will typically have 40% or so of the feed materials volume, depending on the exact reaction and on the facility ME bonuses. This is the process by which the fullerite gases mined in wormhole space are transformed into Hybrid Polymers, which can themselves be transformed into Hybrid Tech Components in the manufacture of T3 ships. Blueprint copies to turn the reaction products into consumable Boosters can be bought using loyalty points at pirate faction stations. See Chemical Labs for a list of sites that may drop a biochemical formula. Biochemical formulae can be obtained as drops from some low-sec cosmic signature sites (with enemy rats), or from a null-sec "Gas" site that is really a combat site with rats and data cans. However, biochemical reaction formulae used in Booster manufacture are not. Hybrid and composite reaction formulae are seeded in NPC stations, and can be purchased in many regions of New Eden. Check the market prices and the costs involved to determine whether or not the reaction is likely to earn isk, or if it would be more profitable (and less trouble) to simply sell the raw gas or moon ore products. Players are strongly encouraged to research the specific reaction(s) they are considering prior to buying formulae, raw materials, etc. Some portions of the industrial processes described in this article can be very profitable, but as is usually the case in EVE Online's crafting system, a player can also manage to lose isk. The related Drug Manufacturing ( 2x) skill allows the manufacture of Boosters using the manufacturing interface, not the reactions interface. Remote Reactions ( 3x): Ability to start or deliver reactions at a distance, 5 jumps per level.Advanced Mass Reactions ( 8x): One additional reaction slot per level (for a maximum of 11 with both skills at 5).Mass Reactions ( 2x): One additional reaction slot per Level (from the one slot base allowance).Level 3 is needed for the Hybrid Polymer Reactions needed for T3 production. Reactions ( 1x): 4% reduction of reaction time per skill level.The relevant skills for reactions are as follows: The Carbon Polymers reaction formula in the picture is a composite reaction, and it is possible that the refinery running the Carbon-86 Epoxy Resin job would not accept a composite formula. The pictured reaction creates Carbon-86 Epoxy Resin from Fullerite-C320, Fullerite-C32, Zydrine, and Nitrogen Fuel Blocks. After run time has passed, press deliver.Choose the proper wallet, if you have access to several.The process for any reaction is as follows: Look carefully at your structure browser results before driving expensive materials through dangerous space. For instance, a structure that is capable of running Hybrid reactions may not be able to handle biochemical or composite reactions. Commonly, structures will only be constructed to accept one type of reaction, often with bonuses for that type. The System cost index for reactions is calculated based on all reactions done in the refinery's system, not just on Hybrid reactions.Īgain, be sure to take reaction formulae and materials to a structure that is capable of running that kind of reaction. In this screen capture the facility is bonused, but not for Hybrid reactions, though it is able to run Hybrid reactions. Note the system cost index: this will impact the job cost. Look for a facility that supports (and ideally provides bonuses for) the specific type of reaction you wish you run. When searching for a suitable refinery, look in the Facility tab of the Industry window and mouse over facilities that show up in the Reactions column. These reactor modules can be rigged for material and time efficiency using T1 or T2 rigs, though it should be noted that the rigs are specific to the type of reactor module, providing bonuses only for that type of reaction.
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