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*If the target temperature is reached, a cooler consumes 20 W (low power).
 
*If the target temperature is reached, a cooler consumes 20 W (low power).
  
If the room's surroundings are warmer, then the room constantly needs cooling, and a cooler remains at high power. If you have multiple coolers in a room, you can exploit this by having each cooler be 1 degree lower than the last - one will actively cool the room, while the others will be in low power state.
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If the room's surroundings are warmer, then the room constantly need cooling, and a cooler remains at high power. If you have multiple coolers in a room, you can exploit this by having each cooler be 1 degree lower than the last - one will actively cool the room, while the others will be in low power state.
  
 
Coolers can theoretically cool 1800 degrees Celsius, total - 1 tile by 1800 degrees, 50 tiles by 36 degrees - but this is before considering outside temperature. Simple playtesting reveals that with an exterior temperature of {{Temperature|27|38}}, a single cooler can cool a room with a 10x10 exterior to a minimum temperature of {{Temperature|10|16}}. Under these conditions, 2-3 coolers were required to maintain a constant (frozen) {{Temperature|-1|0}} within the same space.
 
Coolers can theoretically cool 1800 degrees Celsius, total - 1 tile by 1800 degrees, 50 tiles by 36 degrees - but this is before considering outside temperature. Simple playtesting reveals that with an exterior temperature of {{Temperature|27|38}}, a single cooler can cool a room with a 10x10 exterior to a minimum temperature of {{Temperature|10|16}}. Under these conditions, 2-3 coolers were required to maintain a constant (frozen) {{Temperature|-1|0}} within the same space.

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