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titsay
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Claire Keane
he wasn't even looking at me and he found me
art blog(derogatory)
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@bismuth-offical
INTRO POST BELOW
what is your opinion on Bismuth (the bisexual element)
The only true queer element, I mean, just look at it
I would eat bismuth
let's both eat bismuth 🤤
@bismuth-offical
they're eating you gay style
ummm...😳
That is very unprofessional
(Is this an offer tho😏)
GUESS WHAY I FOUND IN MY BASEMNET
Are you bismuth
Wait am i?
@bismuth-offical am i you?
Nahhhh don't think soo
Wait what if.. we're all eachother? Yoo thats crazzzy
🤯
rainbow!!!!!
Meth
B)
ladies ladies one at a time
hello my rainbow sibling how have you been been
@ninovium-offical
Ive been good bruh!
Thank you @rattmann-offical and everyone who got me to 25 reblogs!
you’re rainbow so are you gay. asking for research purposes.
- @fluorine-offical
yes but that's not why im rainbow
Bismuth crystals are rainbow-colored because of thin-film interference caused by a super-thin, iridescent layer of bismuth oxide that forms on their surface as they cool, bending and reflecting light in different colors, much like soap bubbles or oil on water. The variation in oxide layer thickness creates different wavelengths of light to interfere, producing the vibrant, shifting rainbow effect.
How it works:
Oxidation: When molten bismuth is cooled, it naturally reacts with oxygen in the air, forming a thin film of bismuth oxide (\(Bi_{2}O_{3}\)) on its surface.
Light Interference: This oxide layer is so thin that light reflects off both its top surface and the metal surface beneath it.
Varying Thickness: The oxide layer isn't perfectly uniform; it's thicker in some spots and thinner in others, especially on the crystal's unique stair-stepped edges.
Color Production: Different thicknesses of the oxide layer cause different colors (wavelengths) of light to constructively or destructively interfere, meaning some colors are canceled out while others are enhanced, resulting in the observed rainbow spectrum.
Key Factors:
Cooling Rate: Slower cooling allows for more defined, geometric crystals and distinct oxide layers.
Crystal Structure: Bismuth's tendency to form hopper crystals (stair-stepped patterns) provides varied surfaces for the oxide to form on, enhancing the effect.
Bro that’s so many wordssss ughhhhhh
that is ꓯ lot of words
I know it’s very unlikely and you are just well in formed but you type and laid out the info EXACTLY like the google AI does especially the “Key Factors:” part
ooc: yeah just copy and pasted it im lazy
ooc: I fuckin knew it *foaming at the mouth* I knew it I was right *seizing*
ooc: also just now realised that I posted that on my main🫢
you’re rainbow so are you gay. asking for research purposes.
- @fluorine-offical
yes but that's not why im rainbow
Bismuth crystals are rainbow-colored because of thin-film interference caused by a super-thin, iridescent layer of bismuth oxide that forms on their surface as they cool, bending and reflecting light in different colors, much like soap bubbles or oil on water. The variation in oxide layer thickness creates different wavelengths of light to interfere, producing the vibrant, shifting rainbow effect.
How it works:
Oxidation: When molten bismuth is cooled, it naturally reacts with oxygen in the air, forming a thin film of bismuth oxide (\(Bi_{2}O_{3}\)) on its surface.
Light Interference: This oxide layer is so thin that light reflects off both its top surface and the metal surface beneath it.
Varying Thickness: The oxide layer isn't perfectly uniform; it's thicker in some spots and thinner in others, especially on the crystal's unique stair-stepped edges.
Color Production: Different thicknesses of the oxide layer cause different colors (wavelengths) of light to constructively or destructively interfere, meaning some colors are canceled out while others are enhanced, resulting in the observed rainbow spectrum.
Key Factors:
Cooling Rate: Slower cooling allows for more defined, geometric crystals and distinct oxide layers.
Crystal Structure: Bismuth's tendency to form hopper crystals (stair-stepped patterns) provides varied surfaces for the oxide to form on, enhancing the effect.
heyyyyyy my favourite bi how's it rolling
- @astatine-offical
pretty chill pretty chill my friend
Thank you to everyone who got me to 50 likes!
hello my rainbow sibling how have you been been
@ninovium-offical
Ive been good bruh!
Hey. Another pnictogen. I'm not as colourful as you but I like to think we're quite similar.
@antimony-offical
well hello friend wsup.
@carbon-offical @iron-offical @ninovium-offical @phosphorus-offical heeyyyy! I'm inquiring as to what elements you guys know are already in the officalverse? I only know of y'all so far :)
me and my friend want to join the elements teehee!
@iron-offical probably knows more than I do, but I do know there is a bismuth, sulfur, and the periodic table. I’m a little new
*in the cadence of yakko's world*
@iron-offical @carbon-offical @uranium-offical @calcium-offical @ninovium-offical @iodine-offical @florine-offical @sodium-offical @phosphorus-offical @neon-offical @oxygen-officially @bismuth-offical @sulfur-offical @arsenic-offical @lead-official and @aluminum-offical
I think there might be a few more
Idk ask @periodic-table-official
I've been informed that I low-key need to @ fellow elements and/or officals
so..