Difference between revisions of "Element:PTNM"

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(SMKE -> PTNM)
(Cleanup platinum page)
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| icon = PTNM.png
 
| icon = PTNM.png
 
| longname = Platinum
 
| longname = Platinum
 
+
| image = [[File:PlatinumSticker.gif]]
  
 
| identifier = DEFAULT_PT_PTNM
 
| identifier = DEFAULT_PT_PTNM
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| highpressuretransition =  
 
| highpressuretransition =  
 
}}
 
}}
 
'''Platinum is only available in [https://powdertoy.co.uk/Discussions/Thread/View.html?Thread=20456| Snapshot 199] or higher!'''
 
 
== Creation ==
 
By brush only.
 
  
 
==Reactions==
 
==Reactions==
'''Every reacting element must touch {{MaterialBtn | PTNM }} in order to react!'''
+
'''Every reacting element must directly touch PTNM in order to react!'''
  
 +
{{MaterialBtn | ISZS }} / {{MaterialBtn | ISOZ }} -> {{MaterialBtn | PLUT }} + {{MaterialBtn | PHOT }}
  
 +
[[Element:SHLD|SHLD]] elements progress to the next stage and grows instantly when touching PTNM
  
{{MaterialBtn | HYGN }} + {{MaterialBtn | DESL }} -> {{MaterialBtn | OIL }} + {{MaterialBtn | WATR }}
+
The following 3 reactions happen based on quadratic probability curve, from 0% at <= 0C up to a 100% chance at 1500C
  
{{MaterialBtn | HYGN }} + {{MaterialBtn | OXYG }} -> {{MaterialBtn | DSTW }} + {{MaterialBtn | SPRK }} + Heat
+
at over 2 pressure and 200C: {{MaterialBtn | GAS }} -> {{MaterialBtn | INSL }} + 60C
  
{{MaterialBtn | ISZS }} / {{MaterialBtn | ISOZ }} -> {{MaterialBtn | PHOT }} + {{MaterialBtn | PLUT }}
+
at over 50 pressure and 1000C: {{MaterialBtn | BREL }} -> {{MaterialBtn | EXOT }} + -30C
 
 
{{MaterialBtn | GAS }} + >2 pressure + >200C -> {{MaterialBtn | INSL }}
 
  
 
{{MaterialBtn | SMKE }} -> {{MaterialBtn | CO2 }}
 
{{MaterialBtn | SMKE }} -> {{MaterialBtn | CO2 }}
  
{{MaterialBtn | BREL }} + +1000C + +50 pressure -> {{MaterialBtn | EXOT }}
+
There is a class of reactions that occur when both HYGN and another element are nearby.
  
{{MaterialBtn | SHLD }} grows instantly without SPRK
+
{{MaterialBtn | HYGN }} + {{MaterialBtn | DESL }} -> {{MaterialBtn | OIL }} + {{MaterialBtn | WATR }}  
  
 +
{{MaterialBtn | HYGN }} + {{MaterialBtn | OXYG }} -> {{MaterialBtn | DSTW }} + {{MaterialBtn | SPRK }} + 5C, PTNM is sparked
  
>500C {{MaterialBtn | HYGN }} has chance to perform ''Cold fusion.''
+
Two {{MaterialBtn | HYGN }} at greater than 500C have a 1/1000 chance to perform ''Cold fusion''. This spawns one [[Element:NBLE|NBLE]], one [[Element:NEUT|NEUT]], and one [[Element:PHOT|PHOT]] and rarely (1/10) one [[Element:ELEC|ELEC]]. This also generates 1000C and 10 pressure.
  
 
==Uses==
 
==Uses==
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- In [[Element:HYGN|HYGN]] and [[Element:OXYG|OXYG]] power plants, such as hydrogen and oxygen fuel cells in real life
 
- In [[Element:HYGN|HYGN]] and [[Element:OXYG|OXYG]] power plants, such as hydrogen and oxygen fuel cells in real life
 
  
  

Revision as of 03:31, 7 July 2021

PTNM.png Platinum
PlatinumSticker.gif
Platinum. Catalyzes certain reactions.
Properties
Section Solids
Spawn temperature 22°C
Heat Conductivity 100%
Relative weight 100
Gravity 0.0
Acid dissolve rate 0%
Flammability 0
State Solid
Transitions
High temperature LAVA.png above 1768°C
Misc properties
Conducts electricity (SPRK)
Source code


Reactions

Every reacting element must directly touch PTNM in order to react!

ISZS.png / ISOZ.png -> PLUT.png + PHOT.png

SHLD elements progress to the next stage and grows instantly when touching PTNM

The following 3 reactions happen based on quadratic probability curve, from 0% at <= 0C up to a 100% chance at 1500C

at over 2 pressure and 200C: GAS.png -> INSL.png + 60C

at over 50 pressure and 1000C: BREL.png -> EXOT.png + -30C

SMKE.png -> CO2.png

There is a class of reactions that occur when both HYGN and another element are nearby.

HYGN.png + DESL.png -> OIL.png + WATR.png

HYGN.png + OXYG.png -> DSTW.png + SPRK.png + 5C, PTNM is sparked

Two HYGN.png at greater than 500C have a 1/1000 chance to perform Cold fusion. This spawns one NBLE, one NEUT, and one PHOT and rarely (1/10) one ELEC. This also generates 1000C and 10 pressure.

Uses

- Since it conducts fast like GOLD, it can be used as GOLD alternative with higher melting point.

- In HYGN and OXYG power plants, such as hydrogen and oxygen fuel cells in real life


Language: [[::Element:PTNM|English]]