Difference between revisions of "Element:LITH"

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(Carbonation , hydrogenation factors and battery usage)
(Add note about PHOT wavelengths)
 
(4 intermediate revisions by 2 users not shown)
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| icon = LITH.png
 
| icon = LITH.png
 
| longname = Lithium
 
| longname = Lithium
| image =  
+
| image = [[File:LITHSticker.gif]]
  
 
| identifier = DEFAULT_PT_LITH
 
| identifier = DEFAULT_PT_LITH
 
| name = Lith
 
| name = Lith
 
| description = Lithium. Reactive element that explodes on contact with water.
 
| description = Lithium. Reactive element that explodes on contact with water.
| colour = C5C5BB
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| colour = B6AABF
 
| menusection = SC_EXPLOSIVE
 
| menusection = SC_EXPLOSIVE
 
| menuvisible = 1
 
| menuvisible = 1
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| temperature = 295.15
 
| temperature = 295.15
 
| weight = 17
 
| weight = 17
| properties = TYPE_PART PROP_LIFE_DEC
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| properties = TYPE_PART PROP_LIFE_DEC
 
| lowtemperature =  
 
| lowtemperature =  
 
| lowtemperaturetransition =  
 
| lowtemperaturetransition =  
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| highpressuretransition =  
 
| highpressuretransition =  
 
}}
 
}}
 
''Lithium is available in The Powder Toy version 96.0 which is currently a beta version''
 
 
 
 
'''Description:'''
 
"Lithium. Reactive element that explodes on contact with water."
 
 
 
'''Type:''' Powder.
 
 
 
'''Hex triplet color:''' #C5C5BB. 
 
 
  
 
'''Hydrogenation (tmp):'''
 
'''Hydrogenation (tmp):'''
 
When LITH touches {{MaterialBtn | WATR}} {{MaterialBtn | SLTW}} {{MaterialBtn | DSTW}} {{MaterialBtn | BUBW}} or {{MaterialBtn | WTRV}} its hydrogenation factor increases by 1 for each water particle.
 
When LITH touches {{MaterialBtn | WATR}} {{MaterialBtn | SLTW}} {{MaterialBtn | DSTW}} {{MaterialBtn | BUBW}} or {{MaterialBtn | WTRV}} its hydrogenation factor increases by 1 for each water particle.
  
If the lithium particle is above 440C it will explode. Otherwise it will convert water particles into H2 and heat up.
+
If the lithium particle is above 166.85C it will explode. Otherwise it will convert water particles into [[Element:HYGN|HYGN]] and heat up. The reactions and heat produced will be more violent when lithium is charged up with electricity.
 
 
The reactions will be more violent when lithium is charged up.
 
 
 
The Hydrogenation factor is stored as TMP property.
 
  
 +
The Hydrogenation factor is stored in the .tmp property.
  
 
'''Carbonation (tmp2):'''
 
'''Carbonation (tmp2):'''
When LITH touches {{MaterialBtn | CO2 }} its carbonation factor increases by 1 for each CO2 particle that gets absorbed.
+
When LITH touches {{MaterialBtn | CO2}} its carbonation factor increases by 1 for each CO2 particle that gets absorbed. The carbonation factor is stored in the .tmp2 property
 
 
  
 
'''Lithium ion batteries:'''
 
'''Lithium ion batteries:'''
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it can be used as a chargeable battery.
 
it can be used as a chargeable battery.
  
Lithium is charged by sparked {{MaterialBtn | PSCN }}.
+
Lithium is charged by sparked {{MaterialBtn | PSCN}}. To discharge lithium it needs to come in contact with {{MaterialBtn | NSCN}}.
 
 
To discharge lithium it needs to come in contact with {{MaterialBtn | NSCN}}.
 
  
The charge value is stored as a number in the CTYPE property (ctype numbers can be displayed as element names in the gui)
+
The charge value is stored in the .ctype property, and is shared among nearby LITH particles.
  
 +
Lithium can be overcharged when it reaches .ctype of 100. The explosion will propagate through all neighboring highly-charged lithium particles.
  
 
'''Impurity:'''  
 
'''Impurity:'''  
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When impurity reaches the maximum value of 10 it will stop reacting with CO2 and water particles (unless its already burning).
 
When impurity reaches the maximum value of 10 it will stop reacting with CO2 and water particles (unless its already burning).
  
For usage in batteries the lithium impurity cant reach the value of 5 or greater.
+
'''Explosion:'''
 +
While in its explosion phase, LITH will start a countdown timer and release FIRE particles. If LITH comes into contact with [[Element:OXYG|OXYG]] in this state, it will turn the OXYG and itself into [[Element:PLSM|PLSM]], and create some pressure. When the explosion timer finishes, it will turn into [[Element:LAVA|LAVA]]. If the carbonation factor is greater than 3, it will turn into molten [[Element:GLAS|GLAS]], rather than molten LITH.
 +
 
 +
LITH will also explode if it comes into contact with [[Element:FIRE|FIRE]] while it's temperature is greater than 166.85C and it's hydrogenation value is less than 6.
 +
 
 +
'''Misc:'''
 +
 
 +
[[Element:ACID|ACID]] will turn LITH into [[Element:HYGN|HYGN]], rather than destroying it.
  
 +
[[Element:PHOT|PHOT]] will change wavelengths when bouncing off LITH, with varying wavelengths depening on LITH's charge level.
  
{{Languages}}
+
{{Languages|Element:LITH}}
  
 
[[Category:Elements]]
 
[[Category:Elements]]
 
[[Category:Work in progress]]
 
[[Category:Work in progress]]

Latest revision as of 00:58, 30 December 2022

LITH.png Lithium
LITHSticker.gif
Lithium. Reactive element that explodes on contact with water.
Properties
Section Explosives
Spawn temperature 22°C
Heat Conductivity 28%
Relative weight 17
Gravity 0.2
Acid dissolve rate 1.5%
Flammability 0
State Powder
Transitions
High temperature LAVA.png above 180.5°C
Misc properties
Source code


Hydrogenation (tmp): When LITH touches WATR.png SLTW.png DSTW.png BUBW.png or WTRV.png its hydrogenation factor increases by 1 for each water particle.

If the lithium particle is above 166.85C it will explode. Otherwise it will convert water particles into HYGN and heat up. The reactions and heat produced will be more violent when lithium is charged up with electricity.

The Hydrogenation factor is stored in the .tmp property.

Carbonation (tmp2): When LITH touches CO2.png its carbonation factor increases by 1 for each CO2 particle that gets absorbed. The carbonation factor is stored in the .tmp2 property

Lithium ion batteries: When lithium is pure enough (hydrogenation factor + carbonation factor < 5) it can be used as a chargeable battery.

Lithium is charged by sparked PSCN.png. To discharge lithium it needs to come in contact with NSCN.png.

The charge value is stored in the .ctype property, and is shared among nearby LITH particles.

Lithium can be overcharged when it reaches .ctype of 100. The explosion will propagate through all neighboring highly-charged lithium particles.

Impurity: Lithium impurity is determined by the sum of hydrogenation and carbonation factors.

When impurity reaches the maximum value of 10 it will stop reacting with CO2 and water particles (unless its already burning).

Explosion: While in its explosion phase, LITH will start a countdown timer and release FIRE particles. If LITH comes into contact with OXYG in this state, it will turn the OXYG and itself into PLSM, and create some pressure. When the explosion timer finishes, it will turn into LAVA. If the carbonation factor is greater than 3, it will turn into molten GLAS, rather than molten LITH.

LITH will also explode if it comes into contact with FIRE while it's temperature is greater than 166.85C and it's hydrogenation value is less than 6.

Misc:

ACID will turn LITH into HYGN, rather than destroying it.

PHOT will change wavelengths when bouncing off LITH, with varying wavelengths depening on LITH's charge level.

Language: English