User contributions for Cardinal

A user with 2,050 edits. Account created on 4 December 2024.
Jump to navigation Jump to search
Search for contributionsExpandCollapse
⧼contribs-top⧽
⧼contribs-date⧽
(newest | oldest) View ( | ) (20 | 50 | 100 | 250 | 500)

10 January 2025

  • 05:3805:38, 10 January 2025 diff hist +930 N Tree seed/zh Created page with "{{Languages}} {{:Infobox:Tree seed}} {{About/Space age}} '''{{L|Tree seed}}'''是用于在{{L|Nauvis}}上种植{{L|Tree}}的物品。{{L|Agricultural tower}}可以自动在树木成熟时收获{{L|Wood}}并种植新的树木。在新地星上树木需要10分钟生长成熟,采伐一棵成熟的树会获得4个木材。 树种子可以通过木材加工生产,每2个木材可以生产1颗种子,即1棵树木可以生产4颗种子,因此树木种植可以自动..." current
  • 05:3005:30, 10 January 2025 diff hist 0 m Template:Translation/zh No edit summary
  • 05:2105:21, 10 January 2025 diff hist +1,192 N Pentapod egg/zh Created page with "{{Languages}} {{:Infobox:Pentapod egg}} {{Stub/zh}} {{About/Space age}} '''{{L|Pentapod egg}}'''是从{{L|Gleba}}上的卵筏重踏五足虫中获得的物品,它也可以在{{L|Biochamber}}中批量生产。 五足虫卵{{L|Spoilage mechanics|变质}}后会生成早衰蠕动五足虫。五足虫卵可以作为燃料,因此多余的五足虫卵可以投入{{L|Heating tower}}或任..."
  • 04:5904:59, 10 January 2025 diff hist +1,196 N Yumako mash/zh Created page with "{{Languages}} {{:Infobox:Yumako mash}} {{Stub/zh}} {{About/Space age}} '''{{L|Yumako mash}}'''是一种中间产品,使用{{L|Gleba}}上产出的{{L|Yumako}}制造。制造玉玛果泥是获取{{L|Yumako seed}}以种植{{L|Yumako tree}}的唯一方法。{{L|Player}}可以食用玉玛果泥,立即恢复80点生命值,并在接下来的12秒内每秒恢复1点生命值,此效果有16秒的冷却时间。 == 可选配方 == {|class = "wikitable" ! 配方 !! 原料..."
  • 04:3604:36, 10 January 2025 diff hist +797 N Holmium solution/zh Created page with "{{Languages}} {{:Infobox:Holmium solution}} {{Stub/zh}} {{About/Space age}} '''{{L|Holmium solution}}'''是由{{L|Fulgora}}{{SA}}上的{{L|Holmium ore}}、{{L|Stone}}和{{L|Water}}组成的{{L|Fluids}}混合物。它可以用来制造固态的{{L|Holmium plate}},也是制造{{L|Electrolyte}}和{{L|Electromagnetic science pack}}的流体原料之一。 {{L|Quality}}机制并不适用于流体,因此没有必要使用高品质原料制造钬溶液。 钬溶液不能..."
  • 04:2104:21, 10 January 2025 diff hist +652 N Plasma/zh Created page with "{{Languages}} {{:Infobox:Plasma}} {{Stub/zh}} {{About/Space age}} '''{{L|Plasma}}'''是一种特殊的{{L|Fluids}},它是由{{L|Fusion reactor}}产生的极高温电离气体, 且只能在{{L|Fusion generator}}中流动。由于温度极高,等离子体无法通过{{L|Pipe}}、{{L|Storage tank}}或{{L|Pump}}储运,在聚变反应堆旁放置这些设施不会使它们相互连通。 一座使用等离子体的聚变发电机可以产生高达50兆瓦的{{L|Elect..."

9 January 2025

8 January 2025

7 January 2025

(newest | oldest) View ( | ) (20 | 50 | 100 | 250 | 500)