"We Saw Extraterrestrial Spaceships Spotted In Saturn’s Rings," NASA Scientists Reveal
All UFO and extraterrestrial fans are familiar with Dr. Norman Bergrun. He is a physicist, engineer, and former employee of NASA.
His book reveals that huge extraterrestrial spaceships parked between Saturn’s rings pose a threat to Earth and the rest of the solar system.
After 12 years as a consultant to the National Advisory Committee for Aeronautics, Dr. Bergrun was employed at Lockheed Missiles and Space Company for more than 13 years.
He believes that the large electromagnetic vehicles (EMVs)...
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After two failed attempts, NASA has successfully launched the Space Launch System, a Moon-bound megarocket that will travel beyond the far side of the Moon and back – further than any other habitable spacecraft so far.
The Artemis 1 mission is the first step in NASA’s plan to return to the Moon after 50 years and eventually travel to Mars in the 2030s.
The rocket lifted off from NASA’s Kennedy Space Center in Florida at 06:48 UTC on Wednesday, November 16, 2022.
NASA announced at 0657 UTC that the SLS rocket had reached the main engine cutoff point in the mission timeline. The RS-25 engines shut down, and the core stage separated.
The solar arrays will be deployed next, allowing the rocket to be powered by the Sun.
The unmanned test flight will travel 64,000 kilometers (40,000 miles) beyond the Moon’s far side.
The mission will last 25 days, 11 hours, and 36 minutes. The Space Launch System (SLS) will return to Earth on December 11, 2022, after traveling a total distance of 2.09 million kilometers (1.3 million miles).
This is the first of a series of increasingly complex missions aimed at returning humans to the Moon for the first time since December 1972.
The new SLS rocket being used is the most powerful rocket NASA has ever launched, and it will not only travel to the Moon – further than any human-built spacecraft has ever flown – but will also deploy some small satellites.
Mannequins, artifacts, mementos, and zero-gravity indicators will be on board the Orion Crew Capsule.
The goal is to practice spacecraft operation and crew conditions to ensure that the spacecraft is safe for future crew.
NASA plans to launch Artemis 2, the first crewed Artemis mission, into space in 2024 using an upgraded version of the Space Launch System rocket (assuming the spacesuits are ready).
Artemis 3 is scheduled to launch in 2025, with the goal of landing the first woman and first person of color near the Moon’s south pole.
In 2027, the Artemis 4 mission will take astronauts to a mini-lunar station called Gateway.
Just over 300 light-years away is a star that’s a lot like a very young version of our Sun, with multiple exoplanets orbiting it. That’s an interesting find in itself. But what makes the system truly dazzling is that it just became the first of its kind to be directly imaged, planets and all.
On the night of 16 February 2020, astronomers using the Very Large Telescope in Chile were able to obtain direct observations of two enormous exoplanets on extremely large orbits around the star named TYC 8998-760-1.
Directly imaging exoplanets is challenging, to say the least. They are very dim compared to their host stars, and very far away from us. Most of the over 4,000 exoplanets confirmed to date have only been detected via indirect means – such as faint, regular dips in the star’s light as the exoplanet passes in front of it, or a slight wobble in the star’s position due to the exoplanet’s gravity.
Because these signals are easier to detect when the planet is very large and very close to the star, the majority of confirmed exoplanets are large and on close orbits. But exoplanets on very close orbits are difficult to image directly, because they tend to be vastly outshone by their host stars; and distantly orbiting planets in older systems are too cool for infrared detection.
To date, only a few tens of exoplanets have been directly imaged, and only two other multi-planet systems – both around stars very different from the Sun.
But last year, using direct imaging, a team of astronomers led by Alexander Bohn of Leiden University in the Netherlands found an unusual planet orbiting TYC 8998-760-1.
It was a gas giant around 14 times the mass of Jupiter, orbiting the star at a distance of around 160 astronomical units. To put that in perspective, Pluto orbits the Sun at an average distance of 39 astronomical units.
So Bohn and his colleagues decided to take a closer look, using the Very Large Telescope’s exoplanet-imaging SPHERE instrument. They took several observations over the last year, and added them to data dating back to 2017.
When all the data were put together, they held a surprise. Clear and bright, there was the exoplanet they expected to see, TYC 8998-760-1 b. But, at a much greater distance of 320 astronomical units, the astronomers found another bright dot.
Careful analysis and comparison of images taken at different times revealed this wasn’t a star or glitch, but a second, smaller exoplanet, clocking in at about six times the mass of Jupiter. It’s been named TYC 8998-760-1 c.