💥 Heyoo everyone 💥
Here! Some quick sketches of Candy and Jesta hugging Beggie 🧡
Candy got a little jealous, so she showed Jesta how it's done 🔥 ~w~
Beggie belongs to NovaKaiLastic29 (via Twitter)
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💥 Heyoo everyone 💥
Here! Some quick sketches of Candy and Jesta hugging Beggie 🧡
Candy got a little jealous, so she showed Jesta how it's done 🔥 ~w~
Beggie belongs to NovaKaiLastic29 (via Twitter)

Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
Free to watch • No registration required • HD streaming
💥 Heyooo everyone!!! 💥
🧡 There's nothing better than starting a good morning with a nice loooooooong streeeetch!!!~ 🔥
Heyoo everyone!! 💥💥💥
[ESPAÑOL]
🧡 Aquí está Candy disfrutando de la elasticidad de su nuevo y cómodo traje 🧡
⭐¡Le queda tan bien que es como si no llevara nada puesto!⭐
[ENGLISH]
🧡 Here's Candy enjoying the stretchiness of her new comfortable suit🧡
⭐It fits her so well that it's as if she's not wearing anything at all!⭐
Créditos por la imagen | Credits for the image: AlejanyYami
Heyoo everyone!! 💥💥💥
[ESPAÑOL]
Hace unos días tomé esta foto y alguien me ofreció cuatro helados a cambio.
¡La verdad es que fue un trato excelente! ~w~
[ENGLISH]
A few days ago I took this and someone offered me four ice creams for it
I have to say it was a great deal ~w~
Créditos por la imagen | Credits for the image: AlejanyYami
Elastic rules may explain why nematic crystals look ordered and disordered at once
Electronic nematicity is a phase of some crystalline solids in which electrons' collective properties, such as charge or spin densities, organize themselves into ordered patterns, lowering the crystal's rotational symmetry. This phase is found across a wide range of diverse materials, making nematicity crucial to understanding emergent solid-state phenomena, such as unconventional superconductivity and magnetism. Lately, experimentalists have encountered a hurdle to understanding nematicity: despite exhibiting nematic order at macroscopic scales, at the microscopic level, many nematic materials seem to exhibit disorder instead. To address this seeming paradox, theorists at the University of Illinois Urbana-Champaign have invented a new way of looking at the interactions between nematicity and elasticity, incorporating aspects of elasticity theory, whose impacts on nematicity have previously been overlooked.
Read more.

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File/Archivo RL.2 CodeName: 01LY_DR34M5
NAMES:Anne Tegus de Count and Olga Doniris
SPECIES: Plasmoids
SUBESPECIES: Intermediate between Types 1 and 2 / Intermediate between Types 1 and 2 Hydraulic
ADDITIONAL INFO:
https://www.deviantart.com/riuterlabs/art/File-Archivo-RL-2-CodeName-01LY-DR34M5-1334133748
https://bsky.app/profile/riuterlabs.bsky.social/post/3mm2agpdiy22r
New Data Reveals MSTR Is Not 1.5x Bitcoin But Far More Complex
MSTR Bitcoin model shows 1.53x power-law elasticity, higher volatility, and amplified returns versus BTC exposure.
➤ A new data model reveals MicroStrategy (MSTR) exhibits a power-law relationship with Bitcoin (BTC), not simple leverage, with an estimated elasticity factor of 1.53. ➤ This nonlinear structure implies amplified upside (nearly 2.89x MSTR for a 100% BTC move) and deeper downside (65% drawdown for a 50% BTC decline) for MSTR. ➤ While MSTR shows higher absolute CAGR, Bitcoin slightly favors in risk-adjusted returns due to MSTR's significantly higher volatility (91% vs. 60%).