Difference between revisions of "Element:ANAR"
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In the process both particles will get a temperature of -273.15 °C and pressure will decrease by 0.5. | In the process both particles will get a temperature of -273.15 °C and pressure will decrease by 0.5. | ||
− | '''[[Element:BVBR|Broken Vibranium (BVBR)]]:''' Anti Air Particles in contact with [[Element:VIBR|Vibranium (VIBR)]] will break the Vibranium particle into Broken Vibranium.< | + | '''[[Element:BVBR|Broken Vibranium (BVBR)]]:''' Anti Air Particles in contact with [[Element:VIBR|Vibranium (VIBR)]] will break the Vibranium particle into Broken Vibranium.<br> |
In the process, pressure is decreased by 1. | In the process, pressure is decreased by 1. | ||
Revision as of 13:35, 1 May 2020
Properties | |
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Section | Powders |
Spawn temperature | 22°C |
Heat Conductivity | 28% |
Relative weight | 85 |
Gravity | -0.1 |
Acid dissolve rate | 3% |
Flammability | 0 |
State | Powder |
Source code |
Creation
Only by brush and clone.
Reactions
Sub-Zero Flame (CFLM): Anar will combust if exposed to a cold flame. In turn creating more cold flame with a random life value between 50 to 200.
In the process both particles will get a temperature of -273.15 °C and pressure will decrease by 0.5.
Broken Vibranium (BVBR): Anti Air Particles in contact with Vibranium (VIBR) will break the Vibranium particle into Broken Vibranium.
In the process, pressure is decreased by 1.
Special properties
Anti Air Particles behaves opposite to gravity, instead of falling down they float up.
ANAR has a negative air drag and advection giving it opposite effects to pressure and gravity fields. For instance, ANAR will be pulled into White Holes (WHOL) and pushed away by Black Holes (BHOL).
ANAR will be destroyed by White Holes in the same manner any other particle would be destroyed by Black Holes.
ANAR is essentially anti-DUST. It will "rise" through most particles, except DUST, which will block it except at the edges.
Language: | [[::Element:ANAR|English]] |
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