#Exponential-Long-Con
I WISH I understood how #CryptoBULLSHIT is anything besides
#MoneyLaundering X #PyramidScheme
and an #Exponential-Long-Con
And the cherry on top is the “drain the swamp” voters somehow don’t care 🍒 💰
September 4, 2025 at 4:24 PM
Nadie:
Yo escuchando Exponential Entropy: Forward and back and then forward and back and then go forward and back, then put one foot forward
a man in a long coat is dancing in a video game
Alt: Emet-Selch con gafas de sol bailando en el eterito de Radz-At-Han
media.tenor.com
June 4, 2025 at 11:59 PM
You gotta think long term. Sure, it's only 200 now, but in 50 years it will be almost 600, and surely 1000 by the year 2100. The growth of this con is exponential!!!
April 18, 2025 at 11:39 PM
having worked behind the scenes like long time volunteers basically crunch themselves to keep the event going as well as it has and I really gotta wonder about the exponential growth of the con itself and the staff's capacity to keep up

I know that's part of why I'm just not gonna do it anymore
September 18, 2026 at 4:53 AM
From Nonprofit to Nonsense: Is OpenAI a Long Con?
open.substack.com/pub/amuseonx...
From Nonprofit to Nonsense: Is OpenAI a Long Con?
What is the value of trust in a domain governed by exponential power?
open.substack.com
June 19, 2025 at 4:04 PM
Chirped amplitude mode in photo-excited superconductors
Using a state-of-the-art numerical scheme, we show that the Higgs mode under excitation exhibits chirped oscillations and exponential decay when fluctuations are included. This is in stark contrast to conventional BCS collisionless dynamics which predict power-law decay and the absence of chirping. The chirped amplitude mode enables us to determine the local modification of the effective potential even when the system is in a long-lived prethermal state. We then show that this chirped amplitude mode is an experimentally observable quantity since the photoinduced (super)current in pump-probe experiments serves as an efficient proxy for the order parameter dynamics, including the chirped dynamics. Our result is based on the attractive Hubbard model using dynamical mean-field theory within the symmetry-broken state after a excitation across the superconducting gap. Since the collective response involves long timescales, we extend the hierarchical low-rank compression method for nonequilibrium Green's functions to symmetry-broken states and show that it serves as an efficient representation despite long-lived memory kernels.
arxiv.org
May 2, 2025 at 1:27 PM