Power Plant List: Difference between revisions

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== Table of Power Plants ==
== Table of Power Plants ==
{{#get_web_data:
<tabber>
|url={{fullurl:RawPowerPlantDisplayName|action=raw}}
|-|Basic View=
|data=__all
{{#invoke:PowerPlantLister|ListBasicPowerPlants}}
}}
|-|Detailed View=
{{#get_web_data:
{{#invoke:PowerPlantLister|ListDetailedPowerPlants}}
|url={{fullurl:RawProjectDisplayName|action=raw}}
</tabber>
|data=__all
}}
{{#get_web_data:
|url={{filepath:TIPowerPlantTemplate.csv}}  
|data=
dataname=dataName,
project=requiredProjectName,
class=powerPlantClass,
efficiency=efficiency,
specific=specificPower_tGW,
maxoutput=maxOutput_GW,
water=weightedBuildMaterials/water,
volatiles=weightedBuildMaterials/volatiles,
metals=weightedBuildMaterials/metals,
nobles=weightedBuildMaterials/nobleMetals,
fissiles=weightedBuildMaterials/fissiles,
ams=weightedBuildMaterials/antimatter,
exotics=weightedBuildMaterials/exotics,
}}
=== Basic Version ===
{| class="wikitable sortable mw-collapsible mw-collapsed" style="text-align: center;
! rowspan=2|Power Plant !! rowspan=2|Efficiency !! rowspan=2|Specific power (tons/GW) !! colspan=7|Resources
|-
!  [[File:ICO water.png|25px]] !! [[File:ICO volatiles.png|25px]] !! [[File:ICO metal.png|25px]]  !! [[File:ICO metal noble.png|25px]] !! [[File:ICO fissile.png|25px]] !! [[File:ICO antimatter.png|25px]] !! [[File:ICO exotics.png|25px]]
|-
{{#for_external_table:|  
{{!}}-
{{!}} {{#external_value:{{{dataname}}} }}
{{!}} {{#expr: {{{efficiency}}} *  100}}%
{{!}} {{{specific}}}
{{!}} {{#iferror: {{#expr: {{{water}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{volatiles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{metals}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{nobles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{fissiles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{ams}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{exotics}}} *  100}} | 0}}%
{{!}}-
}}
|}


=== Detailed Version ===
Notes:
{| class="wikitable sortable mw-collapsible mw-collapsed" style="text-align: center;
* The displayed resource costs are shown as %s of the power plant's required mass, based on its specific power and the ship's power requirement. So it does '''not''' include the flat resource costs of the crew. Each crew adds 4 tons of mass in the form of {{TV|water|0.2}} and {{TV|volatiles|0.2}}.
! rowspan=2|Power Plant !! rowspan=2|Required Project !! rowspan=2|Classification !! rowspan=2|Efficiency !! rowspan=2|Specific power (tons/GW) !! rowspan=2|Maximum Output (GW) !! colspan=7|Resources
|-
!  [[File:ICO water.png|25px]] !! [[File:ICO volatiles.png|25px]] !! [[File:ICO metal.png|25px]]  !! [[File:ICO metal noble.png|25px]] !! [[File:ICO fissile.png|25px]] !! [[File:ICO antimatter.png|25px]] !! [[File:ICO exotics.png|25px]]
|-
{{#for_external_table:|  
{{!}}-
{{!}} {{#external_value:{{{dataname}}} }}
{{!}} {{#ifeq: {{{project}}} | | | {{#external_value:{{{project}}} | Alien Only}} }}
{{!}} {{PowerPlantRequirementName|{{{class}}} }}
{{!}} {{#expr: {{{efficiency}}} *  100}}%
{{!}} {{{specific}}}
{{!}} {{{maxoutput}}}
{{!}} {{#iferror: {{#expr: {{{water}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{volatiles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{metals}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{nobles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{fissiles}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{ams}}} *  100}} | 0}}%
{{!}} {{#iferror: {{#expr: {{{exotics}}} *  100}} | 0}}%
{{!}}-
}}
|}


== Sources ==
== Sources ==
This table is computed using data from [[File:TIPowerPlantTemplate.csv]].
This table is computed using data from:
* [[TIPowerPlantTemplate CSV]]
* [[TIPowerPlantTemplate EN]]
* [[TIProjectTemplate EN]]




{{Templates_Navbox}}
{{Templates_Navbox}}

Latest revision as of 02:50, 3 January 2026

This page presents a list of all space ship power plants in Terra Invicta, as well as their stats. For a discussion of the game mechanics for space ships see Spaceships instead.

Table of Power Plants

PowerPlant Classification Efficiency Specific Power
(tons/GW)
Crew Resources
Molten Salt Fission Reactor I Molten Salt Core Fission 92% 2 8 10% water 20% volatiles 50% base metals 15% noble metals 5% fissiles
Fusion Tokamak II Toroid Magnetic Confinement Fusion 95% 2 8 2% water 30% volatiles 52% base metals 16% noble metals
Molten Salt Fission Reactor II Molten Salt Core Fission 93% 1.8 8 10% water 20% volatiles 50% base metals 15% noble metals 5% fissiles
Electrostatic Confinement Fusion Reactor I Electrostatic Confinement Fusion 95% 1 4 2% water 30% volatiles 50% base metals 16% noble metals 2% fissiles
Electrostatic Confinement Fusion Reactor II Electrostatic Confinement Fusion 95% 0.5 4 2% water 30% volatiles 50% base metals 16% noble metals 2% fissiles
Fuel Cell II Fuel Cell 70% 450 0 35% water 30% volatiles 30% base metals 5% noble metals
Antimatter Beam Core Reactor Beam Core Antimatter 99.9% 0.00002 12 20% volatiles 40% base metals 30% noble metals 5% antimatter 5% exotics
Fusion Tokamak V Toroid Magnetic Confinement Fusion 99% 0.1 8 2% water 30% volatiles 51.9% base metals 16% noble metals 0.1% exotics
Hybrid Confinement Fusion Reactor III Hybrid Confinement Fusion 99% 0.5 12 2% water 18% volatiles 40% base metals 40% noble metals
Inertial Confinement Fusion Reactor IV Inertial Confinement Fusion 95% 0.5 12 2% water 15% volatiles 48% base metals 35% noble metals
Inertial Confinement Fusion Reactor VI Inertial Confinement Fusion 99% 0.068 10 2% water 15% volatiles 47.9% base metals 35% noble metals 0.1% exotics
Fusion Tokamak III Toroid Magnetic Confinement Fusion 96% 1 8 2% water 30% volatiles 52% base metals 16% noble metals
Inertial Confinement Fusion Reactor I Inertial Confinement Fusion 85% 4 12 2% water 15% volatiles 48% base metals 35% noble metals
Antimatter Plasma Core Reactor I Plasma Core Antimatter 99.75% 0.4 12 20% volatiles 59.99% base metals 20% noble metals 0.01% antimatter
Alien Hybrid Confinement Fusion Reactor III Hybrid Confinement Fusion 99.8% 0.05 4 2% water 16% volatiles 66.5% base metals 15% noble metals 0.7% exotics
Hybrid Confinement Fusion Reactor I Hybrid Confinement Fusion 97% 2 12 2% water 18% volatiles 40% base metals 40% noble metals
Molten Core Fission Reactor II Molten Core Fission 88% 3.5 6 10% water 10% volatiles 55% base metals 20% noble metals 5% fissiles
Compact Solid Core Fission Reactor III Solid Core Fission 82.5% 4 3 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Fuel Cell I Fuel Cell 70% 2800 0 35% water 30% volatiles 30% base metals 5% noble metals
Mirror Cell Fusion Reactor II Mirrored Magnetic Confinement Fusion 95% 4 6 2% water 20% volatiles 54% base metals 24% noble metals
Inertial Confinement Fusion Reactor VII Inertial Confinement Fusion 99.9% 0.002 10 2% water 15% volatiles 39% base metals 34% noble metals 10% exotics
Solid Core Fission Reactor III Solid Core Fission 80% 28 6 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Solid Core Fission Reactor IV Solid Core Fission 82.5% 12 6 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Fusion Tokamak IV Toroid Magnetic Confinement Fusion 98.5% 0.5 8 2% water 30% volatiles 52% base metals 16% noble metals
Alien Hybrid Confinement Fusion Reactor II Hybrid Confinement Fusion 99.5% 0.35 4 2% water 16% volatiles 66.58% base metals 15% noble metals 0.1% exotics
Z-Pinch Fusion Reactor II Z-Pinch Fusion 95% 2 12 2% water 20% volatiles 48% base metals 30% noble metals
Z-Pinch Fusion Reactor IV Z-Pinch Fusion 98% 0.4 12 2% water 20% volatiles 45% base metals 33% noble metals
Z-Pinch Fusion Reactor I Z-Pinch Fusion 95% 3 12 2% water 20% volatiles 48% base metals 30% noble metals
Terawatt Gas Core Fission Reactor I Gas Core Fission 93% 10 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Alien Hybrid Confinement Fusion Reactor I Hybrid Confinement Fusion 99% 1 4 2% water 16% volatiles 67% base metals 15% noble metals
Flow-Stabilized Z-Pinch Fusion Reactor Z-Pinch Fusion 99.5% 0.0068 12 2% water 20% volatiles 44% base metals 32% noble metals 2% exotics
Antimatter Plasma Core Reactor III Plasma Core Antimatter 99.8% 0.004 12 20% volatiles 59.9989% base metals 20% noble metals 0.0001% antimatter 0.001% exotics
Terawatt Gas Core Fission Reactor III Gas Core Fission 96% 1 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Compact Solid Core Fission Reactor II Solid Core Fission 80% 5 3 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Gas Core Fission Reactor III Gas Core Fission 95% 3 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Z-Pinch Fusion Reactor III Z-Pinch Fusion 96% 1.4 12 2% water 20% volatiles 45% base metals 33% noble metals
Inertial Confinement Fusion Reactor V Inertial Confinement Fusion 97.5% 0.25 10 2% water 15% volatiles 47.999% base metals 35% noble metals 0.001% exotics
Inertial Confinement Fusion Reactor III Inertial Confinement Fusion 92% 1 12 2% water 15% volatiles 48% base metals 35% noble metals
Electrostatic Confinement Fusion Reactor III Electrostatic Confinement Fusion 95% 0.005 4 2% water 30% volatiles 51.9% base metals 16% noble metals 0.1% exotics
Molten Core Fission Reactor III Molten Core Fission 90% 3 6 10% water 10% volatiles 55% base metals 20% noble metals 5% fissiles
Terawatt Gas Core Fission Reactor II Gas Core Fission 95% 3.5 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Inertial Confinement Fusion Reactor II Inertial Confinement Fusion 89% 2 12 2% water 15% volatiles 48% base metals 35% noble metals
Vapor Core Fission Reactor III Gas Core Fission 92% 2.5 5 10% water 10% volatiles 50% base metals 25% noble metals 5% fissiles
Antimatter Plasma Core Reactor II Plasma Core Antimatter 99.75% 0.04 12 20% volatiles 59.999% base metals 20% noble metals 0.001% antimatter
Hybrid Confinement Fusion Reactor IV Hybrid Confinement Fusion 99% 0.05 12 2% water 18% volatiles 10% base metals 70% noble metals
Hybrid Confinement Fusion Reactor II Hybrid Confinement Fusion 98% 1 12 2% water 18% volatiles 40% base metals 40% noble metals
Compact Solid Core Fission Reactor IV Solid Core Fission 85% 3 3 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Solid Core Fission Reactor II Solid Core Fission 77.5% 34 6 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Solid Core Fission Reactor I Solid Core Fission 75% 40 6 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Fusion Tokamak I Toroid Magnetic Confinement Fusion 92% 4 8 2% water 30% volatiles 52% base metals 16% noble metals
Mirror Cell Fusion Reactor I Mirrored Magnetic Confinement Fusion 93% 5 6 2% water 20% volatiles 54% base metals 24% noble metals
Gas Core Fission Reactor I Gas Core Fission 90% 8 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Vapor Core Fission Reactor I Gas Core Fission 90% 4 8 10% water 10% volatiles 50% base metals 25% noble metals 5% fissiles
Mirror Cell Fusion Reactor III Mirrored Magnetic Confinement Fusion 97% 0.8 6 2% water 20% volatiles 54% base metals 24% noble metals
Compact Solid Core Fission Reactor I Solid Core Fission 77.5% 6 3 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Vapor Core Fission Reactor II Gas Core Fission 92% 3 6 10% water 10% volatiles 50% base metals 25% noble metals 5% fissiles
Molten Core Fission Reactor I Molten Core Fission 85% 4 6 10% water 10% volatiles 55% base metals 20% noble metals 5% fissiles
Solid Core Fission Reactor V Solid Core Fission 85% 8 6 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles
Fuel Cell III Fuel Cell 72% 120 0 35% water 30% volatiles 30% base metals 5% noble metals
Gas Core Fission Reactor II Gas Core Fission 91% 5 6 10% water 10% volatiles 45% base metals 30% noble metals 5% fissiles
Compact Solid Core Fission Reactor V Solid Core Fission 87.5% 2 3 10% water 10% volatiles 65% base metals 10% noble metals 5% fissiles

PowerPlant Required Project Classification Efficiency Specific Power
(tons/GW)
Max Output
(GW)
Crew Resources
water volatiles base metals noble metals fissiles antimatter exotics
Molten Salt Fission Reactor I Molten Salt Fission Reactor I Molten Salt Core Fission 92% 2 40 8 10% 20% 50% 15% 5% 0% 0%
Fusion Tokamak II Fusion Tokamak II Toroid Magnetic Confinement Fusion 95% 2 401 8 2% 30% 52% 16% 0% 0% 0%
Molten Salt Fission Reactor II Molten Salt Fission Reactor II Molten Salt Core Fission 93% 1.8 420 8 10% 20% 50% 15% 5% 0% 0%
Electrostatic Confinement Fusion Reactor I Electrostatic Confinement Fusion Reactor I Electrostatic Confinement Fusion 95% 1 46 4 2% 30% 50% 16% 2% 0% 0%
Electrostatic Confinement Fusion Reactor II Electrostatic Confinement Fusion Reactor II Electrostatic Confinement Fusion 95% 0.5 74 4 2% 30% 50% 16% 2% 0% 0%
Fuel Cell II Fuel Cell II Fuel Cell 70% 450 0.8 0 35% 30% 30% 5% 0% 0% 0%
Antimatter Beam Core Reactor Antimatter Beam Core Reactor Beam Core Antimatter 99.9% 0.00002 3000000 12 0% 20% 40% 30% 0% 5% 5%
Fusion Tokamak V Fusion Tokamak V Toroid Magnetic Confinement Fusion 99% 0.1 5060 8 2% 30% 51.9% 16% 0% 0% 0.1%
Hybrid Confinement Fusion Reactor III Hybrid Confinement Fusion Reactor III Hybrid Confinement Fusion 99% 0.5 1900 12 2% 18% 40% 40% 0% 0% 0%
Inertial Confinement Fusion Reactor IV Inertial Confinement Fusion Reactor IV Inertial Confinement Fusion 95% 0.5 5500 12 2% 15% 48% 35% 0% 0% 0%
Inertial Confinement Fusion Reactor VI Inertial Confinement Fusion Reactor VI Inertial Confinement Fusion 99% 0.068 20420 10 2% 15% 47.9% 35% 0% 0% 0.1%
Fusion Tokamak III Fusion Tokamak III Toroid Magnetic Confinement Fusion 96% 1 624 8 2% 30% 52% 16% 0% 0% 0%
Inertial Confinement Fusion Reactor I Inertial Confinement Fusion Reactor I Inertial Confinement Fusion 85% 4 370 12 2% 15% 48% 35% 0% 0% 0%
Antimatter Plasma Core Reactor I Antimatter Plasma Core Reactor I Plasma Core Antimatter 99.75% 0.4 1200 12 0% 20% 59.99% 20% 0% 0.01% 0%
Alien Hybrid Confinement Fusion Reactor III The AliensAlien Only Hybrid Confinement Fusion 99.8% 0.05 21510 4 2% 16% 66.5% 15% 0% 0% 0.7%
Hybrid Confinement Fusion Reactor I Hybrid Confinement Fusion Reactor I Hybrid Confinement Fusion 97% 2 180 12 2% 18% 40% 40% 0% 0% 0%
Molten Core Fission Reactor II Molten Core Fission Reactor II Molten Core Fission 88% 3.5 35 6 10% 10% 55% 20% 5% 0% 0%
Compact Solid Core Fission Reactor III Compact Solid Core Fission Reactor III Solid Core Fission 82.5% 4 12 3 10% 10% 65% 10% 5% 0% 0%
Fuel Cell I Fuel Cell 70% 2800 0.2 0 35% 30% 30% 5% 0% 0% 0%
Mirror Cell Fusion Reactor II Mirror Cell Fusion Reactor II Mirrored Magnetic Confinement Fusion 95% 4 215 6 2% 20% 54% 24% 0% 0% 0%
Inertial Confinement Fusion Reactor VII Inertial Confinement Fusion Reactor VII Inertial Confinement Fusion 99.9% 0.002 306430 10 2% 15% 39% 34% 0% 0% 10%
Solid Core Fission Reactor III Solid Core Fission Reactor III Solid Core Fission 80% 28 20 6 10% 10% 65% 10% 5% 0% 0%
Solid Core Fission Reactor IV Solid Core Fission Reactor IV Solid Core Fission 82.5% 12 60 6 10% 10% 65% 10% 5% 0% 0%
Fusion Tokamak IV Fusion Tokamak IV Toroid Magnetic Confinement Fusion 98.5% 0.5 1260 8 2% 30% 52% 16% 0% 0% 0%
Alien Hybrid Confinement Fusion Reactor II The AliensAlien Only Hybrid Confinement Fusion 99.5% 0.35 6400 4 2% 16% 66.58% 15% 0% 0% 0.1%
Z-Pinch Fusion Reactor II Z-Pinch Fusion Reactor II Z-Pinch Fusion 95% 2 610 12 2% 20% 48% 30% 0% 0% 0%
Z-Pinch Fusion Reactor IV Z-Pinch Fusion Reactor IV Z-Pinch Fusion 98% 0.4 3970 12 2% 20% 45% 33% 0% 0% 0%
Z-Pinch Fusion Reactor I Z-Pinch Fusion Reactor I Z-Pinch Fusion 95% 3 260 12 2% 20% 48% 30% 0% 0% 0%
Terawatt Gas Core Fission Reactor I Terawatt Gas Core Fission Reactor I Gas Core Fission 93% 10 1650 6 10% 10% 45% 30% 5% 0% 0%
Alien Hybrid Confinement Fusion Reactor I The AliensAlien Only Hybrid Confinement Fusion 99% 1 1000 4 2% 16% 67% 15% 0% 0% 0%
Flow-Stabilized Z-Pinch Fusion Reactor Flow-Stabilized Z-Pinch Fusion Reactor Z-Pinch Fusion 99.5% 0.0068 7590 12 2% 20% 44% 32% 0% 0% 2%
Antimatter Plasma Core Reactor III Antimatter Plasma Core Reactor III Plasma Core Antimatter 99.8% 0.004 66000 12 0% 20% 59.9989% 20% 0% 0.0001% 0.001%
Terawatt Gas Core Fission Reactor III Terawatt Gas Core Fission Reactor III Gas Core Fission 96% 1 1650 6 10% 10% 45% 30% 5% 0% 0%
Compact Solid Core Fission Reactor II Compact Solid Core Fission Reactor II Solid Core Fission 80% 5 5 3 10% 10% 65% 10% 5% 0% 0%
Gas Core Fission Reactor III Gas Core Fission Reactor III Gas Core Fission 95% 3 150 6 10% 10% 45% 30% 5% 0% 0%
Z-Pinch Fusion Reactor III Z-Pinch Fusion Reactor III Z-Pinch Fusion 96% 1.4 2510 12 2% 20% 45% 33% 0% 0% 0%
Inertial Confinement Fusion Reactor V Inertial Confinement Fusion Reactor V Inertial Confinement Fusion 97.5% 0.25 19090 10 2% 15% 47.999% 35% 0% 0% 0.001%
Inertial Confinement Fusion Reactor III Inertial Confinement Fusion Reactor III Inertial Confinement Fusion 92% 1 3170 12 2% 15% 48% 35% 0% 0% 0%
Electrostatic Confinement Fusion Reactor III Electrostatic Confinement Fusion Reactor III Electrostatic Confinement Fusion 95% 0.005 310 4 2% 30% 51.9% 16% 0% 0% 0.1%
Molten Core Fission Reactor III Molten Core Fission Reactor III Molten Core Fission 90% 3 420 6 10% 10% 55% 20% 5% 0% 0%
Terawatt Gas Core Fission Reactor II Terawatt Gas Core Fission Reactor II Gas Core Fission 95% 3.5 1650 6 10% 10% 45% 30% 5% 0% 0%
Inertial Confinement Fusion Reactor II Inertial Confinement Fusion Reactor II Inertial Confinement Fusion 89% 2 860 12 2% 15% 48% 35% 0% 0% 0%
Vapor Core Fission Reactor III Vapor Core Fission Reactor III Gas Core Fission 92% 2.5 60 5 10% 10% 50% 25% 5% 0% 0%
Antimatter Plasma Core Reactor II Antimatter Plasma Core Reactor II Plasma Core Antimatter 99.75% 0.04 11150 12 0% 20% 59.999% 20% 0% 0.001% 0%
Hybrid Confinement Fusion Reactor IV Hybrid Confinement Fusion Reactor IV Hybrid Confinement Fusion 99% 0.05 11370 12 2% 18% 10% 70% 0% 0% 0%
Hybrid Confinement Fusion Reactor II Hybrid Confinement Fusion Reactor II Hybrid Confinement Fusion 98% 1 510 12 2% 18% 40% 40% 0% 0% 0%
Compact Solid Core Fission Reactor IV Compact Solid Core Fission Reactor IV Solid Core Fission 85% 3 20 3 10% 10% 65% 10% 5% 0% 0%
Solid Core Fission Reactor II Solid Core Fission Reactor II Solid Core Fission 77.5% 34 6 6 10% 10% 65% 10% 5% 0% 0%
Solid Core Fission Reactor I Solid Core Fission Reactor I Solid Core Fission 75% 40 2 6 10% 10% 65% 10% 5% 0% 0%
Fusion Tokamak I Fusion Tokamak I Toroid Magnetic Confinement Fusion 92% 4 128 8 2% 30% 52% 16% 0% 0% 0%
Mirror Cell Fusion Reactor I Mirror Cell Fusion Reactor I Mirrored Magnetic Confinement Fusion 93% 5 120 6 2% 20% 54% 24% 0% 0% 0%
Gas Core Fission Reactor I Gas Core Fission Reactor I Gas Core Fission 90% 8 8 6 10% 10% 45% 30% 5% 0% 0%
Vapor Core Fission Reactor I Vapor Core Fission Reactor I Gas Core Fission 90% 4 6.5 8 10% 10% 50% 25% 5% 0% 0%
Mirror Cell Fusion Reactor III Mirror Cell Fusion Reactor III Mirrored Magnetic Confinement Fusion 97% 0.8 256 6 2% 20% 54% 24% 0% 0% 0%
Compact Solid Core Fission Reactor I Compact Solid Core Fission Reactor I Solid Core Fission 77.5% 6 1.5 3 10% 10% 65% 10% 5% 0% 0%
Vapor Core Fission Reactor II Vapor Core Fission Reactor II Gas Core Fission 92% 3 20 6 10% 10% 50% 25% 5% 0% 0%
Molten Core Fission Reactor I Molten Core Fission Reactor I Molten Core Fission 85% 4 8 6 10% 10% 55% 20% 5% 0% 0%
Solid Core Fission Reactor V Solid Core Fission Reactor V Solid Core Fission 85% 8 125 6 10% 10% 65% 10% 5% 0% 0%
Fuel Cell III Fuel Cell III Fuel Cell 72% 120 1.5 0 35% 30% 30% 5% 0% 0% 0%
Gas Core Fission Reactor II Gas Core Fission Reactor II Gas Core Fission 91% 5 33 6 10% 10% 45% 30% 5% 0% 0%
Compact Solid Core Fission Reactor V Compact Solid Core Fission Reactor V Solid Core Fission 87.5% 2 20 3 10% 10% 65% 10% 5% 0% 0%

Notes:

  • The displayed resource costs are shown as %s of the power plant's required mass, based on its specific power and the ship's power requirement. So it does not include the flat resource costs of the crew. Each crew adds 4 tons of mass in the form of 0.2 waterWater and 0.2 volatilesVolatiles.

Sources

This table is computed using data from: