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Buzz Aldrin Reveals: On the Moon We Were Ordered by Aliens To Move Away!




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Here are the statements by the former astronauts:

Professor: What really happened out of Apollo 11?

Buzz Aldrin: An amazing thing, even though we have always known of this possibility. The fact is that they (aliens) have ordered us to turn away! .

Professor: What do you mean "warned to move away"?

Buzz Aldrin: I can not go into details, there are structures on the Moon, and not ours. I can only say that their ships were far superior to ours both in size and technology. Wow if you were big! … And menacing!

Professor: But NASA also sent to the moon missions after Apollo 11 ….

Buzz Aldrin: Naturally, NASA had already announced at that time, and could not risk panic on Earth.

According to the American ufologist Vladimir Azhazha, "Neil Buzz Aldrin said to Mission Control that two large unknown objects were watching him and…

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Tags: science, astronomy, NASA, UFOs, aliens, space, space science, science, breaking news, Earth, Earth science, science, science, astronomy, NASA, UFOs, aliens, space, space science, science, breaking news, Earth, Earth science, science, science, astronomy, NASA, UFOs, aliens, space, space science, science, breaking news, Earth, Earth science, science, science,

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Only a few people manage to live longer than 100 years, and Bernard LaPallo, lived a happy, fulfilling, and healthy life well into his second century. This man was born in 1901 in Victoria, Brazil, and as a little boy, he migrated to the United States

He managed to have four careers during the 114 years of his life.

In the 1920s, he started out as a 5-star chef, then ran a successful massage practice for 20 years after obtaining his license at the age of 71, and later in life, he became an author and lecturer.

At the age of 73, he graduated from New York University for reflexology and podiatry and delved into the study of herbology with Dr. Richard Schulze of the American Botanical Pharmacy.

When he was recognized as the oldest living Yankee, he became popular and used his fame to inspire thousands of other people. During his entire life, he was dedicated to a healthy lifestyle and healthy everyday routines.

According to the American ufologist Vladimir Azhazha, "Neil Buzz Aldrin said to Mission Control that two large unknown objects were watching him and Aldrin after landing on the moon. But this message was never heard by the public, because NASA censored it. "But a 2006 video interview made astronaut Neil Buzz Aldrin, it is analyzed the footage of the meeting between the Apollo 11:02 UFO. This was just one of many "encounters" with aliens, duration the journey to the moon. W

It should also add that for some time circulating on the Internet an audio file that contains the conversation between the astronauts and control center in Houston, captured from various terrestrial radio stations frequency ultra-fast, before NASA suppressed in the telecast that illustrated the ‘ arrival of Apollo XI on the moon (NASA despite assertions to the contrary, there was in fact a slight shift between the real-Apollo NASA communications and those relayed to the world). Astronaut 1: But what is that?

Astronaut 2: Do you have an explanation?

Houston: Do not worry, stick to the program!

Astronaut 1: My God, it’s amazing, that’s great, do not you could ever imagine!

Houston: We know this, go to the other side!

A superhabitable planet is one that has a better chance of supporting life than our own planet, Earth.

Because Earth is the only known inhabited planet and life on it is dependent on liquid water, efforts to find exoplanets that could support life are centered on Earth-like worlds. However, some scientists believe that other types of planets may have conditions for life that are as good as — or even better than — Earth. Indeed, some scientists argue that focusing entirely on Earth-like worlds may be too "anthropocentric and geocentric," potentially blinding us to the possibilities of exobiology.

"We are so over-focused on finding a mirror image of Earth that we may overlook a planet that is even more well-suited for life," Dirk Schulze-Makuch, an astrobiologist at Washington State University and the Technical University of Berlin.

Schulze-Makuch and his colleagues searched the Kepler Object of Interest Exoplanet Archive for potentially superhabitable exoplanets, focusing on 4,500 planetary systems with rocky planets within their stars’ habitable zones, where liquid water can persist. The researchers published their findings in the journal Astrobiology.

The scientists looked at planetary systems

with yellow dwarf stars like our sun, as well as orange dwarf stars, which are cooler, dimmer, and less massive than our sun.

"Our sun is actually not the best kind of star for hosting a planet with lots of life on it," Schulze-Makuch said.

In the Milky Way, orange dwarf stars are roughly 50% more common than yellow dwarf stars. Unlike our sun, which has an estimated lifetime of less than 10 billion years, orange dwarfs have lifetimes ranging from 20 billion to 70 billion years. Because complex life took approximately 3.5 billion years to emerge on Earth, the longer lifetimes of orange dwarf stars may allow planets within their habitable zones more time to develop life and accumulate biodiversity.

Because Earth is approximately 4.5 billion years old,

the researchers hypothesized that the sweet spot for life would be a planet between 5 billion and 8 billion years old.

The size and mass of a planet can also affect how well it can support life, according to the researchers. A larger-than-Earth rocky planet would have a larger habitable surface area and possibly a thicker, more stable atmosphere. A planet 1.5 times the mass of Earth would likely retain its interior heat for a longer period of time, which would help keep its core molten and its protective magnetic field active for a longer period of time during which life could arise and evolve.

Worlds that are slightly warmer than Earth

by about 8 degrees Fahrenheit (5 degrees Celsius) may be habitable, as they may have larger tropical zones, which support more biodiversity on Earth. However, warmer planets might also need more moisture, since greater heat could expand deserts.

Furthermore, planets with the same land area as Earth but divided into smaller continents may be more habitable. When continents become particularly large (like Earth’s past continent Gondwana did about 500 million years ago), their centers are often located far from oceans, resulting in vast, inhospitable deserts in their interiors. Moreover, because Earth’s shallow waters support more biodiversity than its deep oceans, scientists believe that planets with shallower waters could support more life. A surprisingly beautiful photo of an ice crystal on the window of the International Space Station (ISS) has left the experts both fascinated and puzzled.

Cosmonaut Sergey Korsakov captured a stunning image of frost on the International Space Station’s window (ISS). You might think it’s beautiful but not unusual, but it is. This could be the first image of ice crystals forming on a spacecraft window, and no one knows how they formed.

The image shows a crescent-shaped ice formation

looming over the Earth, much like an icy moon like Europa or Enceladus.

Korsakov posted the image on Twitter and Telegram in late May. The cosmonaut explained on Telegram that the ice crystals were long-lived, lasting 24 hours, and that the condensation pattern remained even after they melted. Its formation is unclear, and, surprisingly, there is no scientific literature on the subject.

When journalists contacted ISS members from NASA, ESA, and JAXA for comment, all three were hesitant to comment because the window could be in the Russian module of the ISS and no one is speaking to Roscosmos.

Astronomers have discovered a black hole "giving birth" to stars at the center of a nearby dwarf galaxy — and the stellar newborns are held together by a massive "umbilical cord" of gas and dust.

The supermassive black hole was seen spewing a 500-light-year-long jet of ionized gas from its center at around 1 million mph (1.6 million km/h), contributing to a "firestorm" of new star formation in a nearby stellar nursery.

According to experts,

the discovery, made possible by NASA’s Hubble Space Telescope, is the first time that black holes have given strong indications that they stimulate star formation in very small galaxies, raising the question of what role black holes play.

The remarkable finding was described in a study published in the journal Nature.

"From the beginning, I knew something unusual and special was happening in Henize 2-10, and now Hubble has provided a very clear picture of the connection between the black hole and a neighboring star-forming region located 230 light-years from the black hole," study co-author Amy Reines, an astrophysicist at Montana State University, said in a statement. "Hubble’s amazing resolution clearly shows a corkscrew-like pattern in the velocities of the gas, which we can fit to the model of a precessing, or wobbling, outflow from a black hole."

The jet’s thin tendril was observed

stretching out from the black hole and across space to a bright stellar nursery. Supermassive black holes, which are millions to billions of times the size of stellar-mass black holes, have previously been observed emitting cosmic plumes, but astronomers originally thought that these jets hindered rather than helped star formation in dwarf galaxies.

"At only 30 million light-years away, Henize 2-10 is close enough that Hubble was able to capture both images and spectroscopic evidence of a black hole outflow very clearly, lead author Zachary Schutte, a graduate student at Montana State University, said in the statement. "The additional surprise was that, rather than suppressing star formation, the outflow was triggering the birth of new stars."

Black holes create the jets

that spew from them by sucking in material from nearby gas clouds or stars and slingshotting it back into space as blazing plasma traveling near the speed of light. If heated sufficiently, the gas clouds that collide with the jet will become ideal nurseries for future stars.

However, getting to that Goldilocks zone is critical; according to NASA, if the jets heat up the gas clouds too much, they may lose their ability to cool back down in the way needed for star formation. But with the gentle, less-massive outflow from the black hole in Henize 2-10 created ideal gas conditions for star formation.

Because this black hole

has remained relatively small over time, the researchers believe that studying it in greater detail will help them understand the smaller origins of larger supermassive black holes in the universe, as well as the processes that caused them to balloon to such massive scales. Furthermore, the team’s high-resolution method for detecting the black hole’s dim signature can now be used to find others like it.

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