Showing posts with label telescope. Show all posts
Showing posts with label telescope. Show all posts

Monday, December 16, 2019

Could the iron ore use as the antenna for radio telescopes?

Could the iron ore use as the antenna for radio telescopes?


Is it possible to transform the Rocky Mountains and Appalachian mountains iron ore the natural antennas for radio telescopes?


Could iron ore act as the natural antenna for radio-telescopes, and the answer is that in the iron ore is the same iron with the radio antennas. So if we would benefit natural deposits of iron ore, we must just check, that the radio waves are touching the ore, and then we must connect the amplifier system to the iron ore.

There is one little but a very interesting coincidence with the form of Big Ear(1) telescope and the terrain form of the United States of America. The mountain areas of the USA are like the antennas of the "Big Ear" telescope.

And sometimes has been introduced ideas, that the iron ore of the Rocky Mountains and Appalachian mountains can be used as the natural antenna for radio telescopes, which means that there is possible to create "Bigger Ear" telescope. That means that the amplifier of the radio telescopes can be connected to the iron ore, which will transform mountains into the bigger version of the "Big Ear" telescope.

The "Wow!"(2) signal, and why the magnetic fields, what radio signal passes are making it very difficult to determine the origin of that signal?


The main reason, why the "Wow!" signal is really hard to analyze is that the signal is unique. That means that only the "Big Ear" has noticed that thing. This famous signal has been caused thoughts that what if the system would be out of the electricity just at that time? And another thing, what makes this case lucky is that "Big Ear" is the fixed system. The telescope is two fixed antennas, and that allowed to catch the signal. If the telescope would be aimed, and the aiming point of the telescope would be different, there would be no "Wow!" signal.

And there is claiming that somebody has asked did humanoids or whatever those creatures are known about the error in program code?  Maybe that thing was a joke, but it's quite a creepy version of humor. 


This "joke" is quite bad, but if the humanoids would know the error, that the computer couldn't determine the antenna what will catch the signals, and they would predict that there is an update brings, they could expect that the telescope was out of use. And then they would send that message.

The calculation of the point, where the famous signal came should not be very difficult. The reason for missing coordinates is that the computer programmer, who has made the program, what is used to isolate the signal didn't determine, which antenna caught that signal. So the thing that must be done is just calculate the point, where the message is coming for both antenna, and then the optical telescopes can turn to those points, and observe is there some kind of star, where that signal can come from.

And in this case, we must realize, that the location and direction of the signal could be impossible to determine, even we could determine the point, where the signal is coming. The black holes can turn the direction of the radio waves, and that would make possible, that the signal would come originally from a different direction, what the "Big Ear" would detect. Another problem is the "Radio maser emission", what means that when the radio signal faces another radio source what will transfer energy to it, would that make the effect, what is called as "virtual transistor".

So that means that the outcoming radiowaves are acting like radio amplifier. This makes impossible to determine the original transmitting energy. We can see the same effect if the signal travels through the magnetic fields or the bursts of pulsars, that radiowaves can increase the power of the signal, which means that it can come from a very long distance like from another galaxy, and maybe the origin of that signal remains a mystery forever.

(1)

http://www.bigear.org/

(2)

https://en.wikipedia.org/wiki/Wow!_signal

Image:

https://thumbs-prod.si-cdn.com/dUX84feLvtnHxyBLItuTbdJqWEE=/800x600/filters:no_upscale()/https://public-media.si-cdn.com/filer/39/91/39911ef6-b5d6-442f-817c-6d1e886ed5e5/bigear2l.jpg

Friday, November 22, 2019

Why Tau Ceti and Epsilon Eridani was selected to target for Ozma message?





Why Tau Ceti and Epsilon Eridani was selected to target for Ozma message?

The "Project Ozma" (1)from the year 1960 was the first attempt to make contact with other civilizations. It was the pilot experiment for the SETI (2)-program and another kind of interesting stuff. When this program was failed to making the contact, that means that things like searching the exoplanets got the scientific basement, and at that time, we didn't have a single observation of the exoplanet. Today we know thousands of exoplanets, and maybe we would make contact with another civilization. 

The famous "Ozma" message to another star was sent to Tau Ceti (3) and Epsilon Eridani (4). The attempt was to make contact with super civilizations, and the idea was that those stars and their solar systems were so different than our own that those civilizations would not threaten us. If the solar system would not have oxygen, there would be no water and the "Ozma" researchers thought that they could find the civilization, what would be the silicon-based, what means that the hypothetical civilization would not even want to land on our planet. 

Epsilon Eridani was another object, where the scientists send so-called "Ozma-Message". The thing is that the Epsilon Eridani is too young to be the home of the advanced civilization is putting brakes to those people's operations, who are working with SETI-program. 

And sometimes people would ask, why those researchers selected the Epsilon Eridani to target for "Ozma-message"? The star was too young for the intelligent civilization, and the answer would not even be hoped to get.

If the answer to Ozma-message would come near the young star, that means the answerer is the colony of a very advanced civilization. "Ozma" was projected, what mission was to look for intelligent and advanced civilizations. And it was the pathfinder for a modern way to make science. Today we know that most of the stars might have some kind of planets around them, and the thank to this thing would belong to the "Ozma"-team. 

The dust and ice makes difficult to see the planets near Epsilon Eridani

They opened the eyes of the people to see, that there would be something, that we don't know. In modern times the way to make science is that the team would research and make observations before we would not laugh or punch anybody. The thing is that the Tau Ceti, Epsilon Eridani, and Alpha Centauri have at least suspected planets orbiting them. And the Tau Ceti and Alpha Centauri (5) have confirmed planets, and Epsilon Eridani has suspected followers. The disk of dust and ice makes difficult to see planets, what are orbiting it.

So the answer is that the scientists thought that if the answer for those messages would come from Epsilon Eridani, the hypothetical answer to out message would come from the transmitter from the very advanced civilization. This hypothetical civilization had the technology, which allows them to create colonies to another star system. 

And if the answer would come near the young star, that must be the colony, what will answer to the message, what the scientists have sent. The target stars would be carefully selected, because "Ozma" was looking for intelligent and advanced civilizations. So the thing, what those people had to find was the star, where is no planet, what has endemic lifeforms. 

(1)

(2)

(3)

(4)

(5)

Image: 

Wednesday, August 28, 2019

James Webb telescope

James Webb telescope

James Webb telescope has been assembled, and the importance of this system is that it would be used along with observations to test the technology like computer programs and controlling systems what would be used in the telescopes, what is planned to send to the Kuiper belt for more difficult missions. The telescope, what operates in the Kuiper belt would have so minimum errors because of thermal radiation, that it will reach extreme accuracy also in infrared areas.

If the James Webb type infrared telescope would operate in Kuiper belt, that would give very much information about the other solar systems. The system would have minimum errors, which are caused because of the warming of the telescope, and the sunlight in that area would be so low, that it would not disturb telescope.

Every people who have seen the images of James Webb telescope have noticed, that telescope is the structure what is above the other structure of telescope. The James Webb telescopes structure allows turning the telescope without using fuel whenever the telescope is turning. That thing makes many benefits with James Webb. If we are thinking about elder solutions like Hubble, we must realize, that every time the telescope changed the target, it must burn the fuel.

And that thing is not a problem if space telescope will orbiting the Earth, because the telescope can refill with fuel. But if the telescope would send outside from the solar system, the use of fuel is an extremely important thing if we are thinking about the lifetime of the telescope, what would travel to Kuiper belt for getting data about the other solar systems. And the distance from the sun is so big to that telescope because the sun will disturb the telescope what is near the sun.

That means the telescope must send to the edge of the solar system because that denies the sun radiation disturbing the metering, what is made by using the telescope. So if we would want to create very high definition images from other solar systems, we must take a telescope very far away from the Earth. James Webb itself would not go to Kuiper belt, but its successors would go to that area. And in James Webb is a plan to test technology, what is planned to use in following missions.

The thing is that in the Kuipers belt the temperature is extremely low, which means that the high definition observations in infrared frequency are also possible because the telescopes own temperature doesn't disturb the observations in the infrared area, and also the separately installed telescope doesn't get disturbing radiation from the power source of the telescope. The parabolic form of the telescope could also benefit for high power communication.

If the communication antenna would installed in the back of the optical telescope that allows it to find Earth if the data communication has been cut because the antenna has been turned to the wrong direction. The antenna must have to command algorithm that it turns itself to the Sun, and then then it can find the marks, what the radio telescopes would send to it.

https://www.jwst.nasa.gov/

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