IVERMECTINA
1 – A Ivermectina evita os danos provocados pelas Vacinas RNA.
2 – A Ivermectina bloqueia a entrada da Proteína Spike para dentro das células.
Então, se a pessoa foi vacinada, tem uma esperança, tem uma forma de se tratar através da Ivermectina.
3 – A Ivermectina faz tratamento pós Covid e pós vacinal, é um medicamento eficaz em todas as fases da Covid 19, antes mesmo de entrar na célula a Ivermectina já destrói o vírus no sangue.
Ela só tem efeitos benéficos e nenhum maléfico no tratamento do coronavírus.
4 – A Ivermectina tem ação anti-inflamatória muito potente no Coronavírus.
5 – A Ivermectina tem ação potente para lesões traumáticas e ortopédicas, e sem os efeitos colaterais dos corticoides.
6 – A Ivermectina trata doenças autoimunes como: artrite reumatoide, espondilite anquilosante, fibromialgia, psoríase, doença de Crohn, rinite alérgica.
7 – A Ivermectina reduz a frequência de gripes e resfriados.
8 – A Ivermectina melhora a imunidade de pacientes cancerosos.
9 – A Ivermectina trata Herpes Simplex e Herpes Zoster.
10 – A Ivermectina reduz frequência de sinusites e diverticulites.
11 – A Ivermectina protege o coração numa sobrecarga cardíaca, numa embolia por exemplo ela evita a hipóxia cardíaca porque ela estimula a produção de energia básica para que o tecido não seja destruído e melhora assim a função cardíaca.
12 – A Ivermectina é antiparasitária.
13 – A Ivermectina é antineoplásica (anticancerígena), suprime a proliferação e metástase das células cancerosas matando apenas as células cancerosas e preservando as células sadias, melhorando a eficácia do tratamento quimioterápico, pois mata as células cancerosas resistentes à quimioterapia, vencendo a resistência a múltiplos quimioterápicos que os tumores desenvolvem, e combinada com a quimioterapia e/ou anticancerígenos, ela proporciona o aumento da eficácia desses tratamentos.
14 – A Ivermectina é antimicrobiana (bactérias e vírus), e aumenta a imunidade.
15 – A Ivermectina tem capacidade fantástica de regeneração dos nervos.
16 – A Ivermectina regula o metabolismo da glicose e da insulina.
17 – A Ivermectina regula o metabolismo do colesterol.
18 – A Ivermectina reduz gordura hepática na esteatose.
29 – A Ivermectina protege o fígado exposto à inseticidas.
20 – A Ivermectina ataca o vírus em todos os lugares em que ele estiver, independente das mutações.
21 – A Ivermectina serve para a prevenção e para o tratamento do coronavírus, de forma surpreendente. Eficácia não comprovada não é da Ivermectina, e sim das vacinas.
22 – A Ivermectina, usada como agente profilático, foi associada à redução significativa das taxas de infecção, hospitalização e mortalidade por COVID-19.
23 - A Ivermectina não agride o fígado, pois não é metabolizada nele, e sim no intestino, pelo contrário, ela protege o fígado.
O estudo foi publicado no Cureus Journal of Medical Science.
Fonte:
https://t.co/JmvdifqxfG
#Terremoto | Un gallinazo tocó la campana de un templo en el municipio de Convención Norte de Santander.
El curioso caso fue grabado por un habitante de esa localidad.
#Convencion
⚠️ 30 HUMANS VS. 1 HUMANOID ROBOT. IT SOUNDS LIKE A JOKE — UNTIL YOU REMOVE THE HUMAN LIMITS!
EngineAI’s T800 stands 1.73 m tall, weighs up to 85 kg, reaches speeds above 3 m/s and is designed to operate for 4–5 hours. Its Pro version has 29 degrees of freedom, giving the machine far more control over its body than the first generation of humanoids. And the starting price is already around $40,500.
But the hardware we see today is only the beginning. Add full-body LiDAR, thermal cameras, better sensor fusion and AI models capable of processing the world in milliseconds, and the equation changes again. Humans have limits in reaction time, vision, strength and endurance — a machine doesn't have to share all of them.
That's why the idea of one robot facing 30 people is worth thinking about, even if the T800 obviously can't do that today. Every improvement in perception, balance, reaction speed and endurance pushes the boundary further. The real breakthrough won't be when a robot becomes stronger than a human — it'll be when it stops inheriting the weaknesses that make humans human.
The first humanoids won't change the world because they look like us.
They'll change it when they no longer have to live by our limits.
⚠️ THE WEIRDEST PART OF THIS ROBOT DEMO? NOBODY SEEMS SURPRISED ANYMORE!
Humanoid robots are moving through a crowded public space while people walk around them like they're just another part of the environment. There’s no empty laboratory, no isolated testing area and no perfect path marked on the floor — just machines and humans sharing the same space. That makes this feel less like a robot demonstration and more like a preview of everyday life.
Getting one humanoid to walk is one problem. Getting several machines to move safely around unpredictable people is another, because humans constantly stop, turn, cross paths and change direction without warning. Every movement requires the robots to perceive what is happening around them, maintain balance and continuously adjust their path.
That's the shift worth paying attention to. The milestone isn't simply that robots can walk among humans — it's that we're starting to see environments where they can actually belong. Once that becomes reliable enough for shopping centers, airports, factories and offices, the question stops being whether humanoids can enter our world.
It becomes what we're going to ask them to do once they're here.
⚠️ THIS ROBOT ISN’T JUST DANCING. IT’S SHOWING HOW FAR MACHINE BODY CONTROL HAS COME!
At MWC 2026 Shanghai, this humanoid robot moves through a sequence of sharp twists, weight shifts and coordinated arm and leg movements that look almost effortless. Every transition requires multiple joints to work together while the robot keeps its balance and controls its momentum. For a machine, making movement look this natural is a serious engineering problem disguised as entertainment.
And that's what makes the clip worth watching. The robot isn't simply moving one limb at a time — its entire body has to respond as one system, constantly adjusting position as the choreography changes. The smoother those transitions become, the less these machines look like collections of motors and more like bodies with genuine physical control.
The bigger implication goes far beyond dancing. The same coordination will be needed when humanoids have to navigate crowded factories, manipulate objects, recover from unexpected movements and work safely around people. Dance is just one of the clearest ways to show that robots are learning something humans have taken for granted their entire lives: how to control a body.
The impressive part isn't that a robot can dance.
It's that the robot is getting better at being a body.
🚨CANDELA FRANCISCO CAMPEONA PANAMERICANA🚨
La ajedrecista argentina se convierte en la segunda mujer en la historia en ganar un panamericano abierto (jugando exclusivamente contra hombres).
Obtuvoel título de Maestro Internacional y una norma de Gran Maestro.
Otros títulos de esta talentosa jugadora:
✅ BICAMPEONATO CONTINENTAL
✅ CAMPEONA MUNDIAL JUVENIL
✅ 4 VECES CAMPEONA ARGENTINA JUVENIL (SUB-12, SUB 14, y SUB-16 dos veces)
🔥¿Será Candela la primera GM latinoamericana en la historia?
This puzzle was created by renowned Japanese puzzle designer Nobuyuki “Nob” Yoshigahara (1936–2004), who regarded it as his absolute masterpiece.
Nobuyuki “Nob” Yoshigahara (1936–2004) was a Japanese puzzle designer, mathematician, writer, and teacher who became one of the most influential figures in recreational mathematics. Trained in applied chemistry, he created hundreds of mathematical, logic, and mechanical puzzles and authored more than 80 books.
I tried solving this one without any help and thought I had it figured out—until I hit a wall. Give it a try yourself. It’s surprisingly fun, and once you solve it, you’ll understand why Yoshigahara considered it his masterpiece.
Harvard thinks a future Einstein could already be here. Sabrina Gonzalez Pasterski is a young theoretical physicist known for her strong ability in physics.
At age 14, she built an airplane. At 16, she flew it by herself. When MIT first rejected her application, she sent them a video of the plane she had built. After seeing it, they admitted her for the next semester.
She graduated from MIT with a perfect GPA. Her work has been mentioned by Stephen Hawking. She also received job offers from companies like Google and Facebook, and from Jeff Bezos, but she chose not to accept them. Instead, she decided to continue her research and focus on understanding physics.
There is a well-known story about George Dantzig, who later became a key figure in linear programming, from his time as a student at UC Berkeley.
One day, he arrived late to a class taught by Professor Jerzy Neyman. When he entered the classroom, he saw three problems written on the board. He assumed they were homework and copied them down.
After class, Dantzig started working on the problems. He solved two of them easily, but the third one was much harder. He kept working on it and finally finished it.
About six weeks later, on a Sunday morning, Dantzig was woken up by someone knocking on his door. When he opened it, he saw Professor Neyman holding some papers. Neyman was very excited and said he had written an introduction to one of Dantzig’s papers and wanted him to check it so it could be published.
It turned out that two of the problems on the board were not homework at all. They were well-known unsolved problems in statistics. Dantzig had solved them without knowing they were unsolved.
Later, when Dantzig needed a topic for his thesis, Neyman suggested that he submit those solutions. They were accepted as his thesis.
🚨PURGADA. El gobierno de España despide a una mujer tras la invasión de Ceuta. Lo que hizo desató la furia de las altas instancias... Pero no te puedes imaginar cuál fue realmente su error.
Su nombre permanece anónimo. Pero era la encargada de las alertas de Seguridad Nacional. La funcionaria que el viernes solo hizo su trabajo: colgó en la web el dato oficial que le pasó Interior: 49.000 personas ilegales dentro de Ceuta.
¿Problema?
Lo replicaron las agencias de medio mundo.
Horas después, el informe había desaparecido de la página. Censurado. Y ella recibe una llamada.
Estaba de vacaciones. La llama la jefa de Departamento. La general Loreto Hurtado. Cese inmediato por teléfono. Solo la dejan volver a por sus cosas.
¿Quién tomó la decisión? Órdenes de arriba. Se habla de gran malestar de Presidencia y del Ministerio del Interior de Marlaska. Ahí tienes la pista.
Ahora la pregunta:
¿La echaron por mentir?
NO. La cifra era correcta.
La castigaron porque gracias a ella se supo lo que trataban de ocultar: la verdad.
El CNI los avisó
Marruecos los avisó
Los periodistas locales lo sabían.
Ellos lo ignoraron todo.
Y ahí tienes el resultado: de toda la cadena de mando, repleta de incompetentes y negligentes, solo una persona ha pagado por Ceuta. Solo una... La única que dijo la verdad.
Este es el país en el que vives.
7.500 disidentes ya estamos dentro
Faltas tú → https://t.co/JtP6bmpKel
PD: el "Manual del Disidente" te llega al correo en cuanto entras. No tienes que hacer nada más.
🍌 Aunque parezca increíble, los plátanos emiten una cantidad diminuta de antimateria. Esto ocurre porque contienen potasio-40, un isótopo natural que, en raras ocasiones, libera positrones, la antipartícula del electrón. No representa ningún riesgo para la salud, pero sí es un curioso dato de la física. ⚛️
Finnished the tournament with 9.5/21 the first day, 19/27 the second day, safe to say I locked into blitz mode after 48 rounds of over-the-board 3+2. Not sure I can play classical chess ever again. Can’t wait for next year 🇫🇮
On The Big Bang Theory, Sheldon Cooper called 73 the best number. It sounds like a joke — but the math behind it is surprisingly beautiful.
First, 73 is a prime number. But it also holds a special spot in the list of primes. If you count them one by one, 73 turns out to be the 21st prime number. Now flip the digits of 73 and you get 37 which is the 12th prime number (21 reversed becomes 12).
Second, take the number 21 and factor it: 21 = 7 × 3. Those are the exact digits that make 73.
And finally, write 73 in binary (the language computers use): 1001001. Read it left to right or right to left — it’s the same. That makes it a binary palindrome.