Rastolkovsky, Professor Rastolkovsky (b. 16 July 1960, Yakutsk) — the pen name of the Nizhny Novgorod inventor and physicist-engineer Igor Knyaginichev.
Has lived in Moscow since 2013, call:
MTS: 915-178-76-99
Beeline: 965-178-97-12
Megafon: 926-39 55 99-7
The essence of the phenomenon
The chief inventor of the regional centre. According to socionics he was classified in 2004 as a Don Quixote. One of the names of this psychological type is the inventor. Which means that Rastol's calling is to invent. Far from every invention here is put into practice during the inventor's lifetime. And if that is so, then one must invent something of the greatest importance for humanity, so as not to work in vain! That is why, since 2005, he has been inventing in the field of cosmonautics, in order to move humanity out to live in space and to solve all energy and environmental problems by relying on the resources of cosmic matter and its potential energy in the Earth's gravitational field. This resource is inexhaustible for the foreseeable future, for about a billion years!
he can be contacted at his Moscow telephone numbers
MTS: 915-178-76-99 Beeline: 965-178-97-12 Megafon: 926-39 55 99-7
Biography
- Born in the Republic of Sakha (Yakutia), 15 km from its capital Yakutsk, in the settlement of Zhatay.
- Studied at Lobachevsky University) at the Radiophysics faculty from 1977 to 1982,
where, besides radiophysics, he learned celestial mechanics (in 1977-78 it was taught at the Radiophysics faculty within the physics course by Prof. Lupanov) and a great deal of good mathematics
- after his studies he worked in the (Microcircuit) Assembly Division of NIITOP
he developed the optics and electronics of machine vision on high-precision vidicons
- Worked from 1987 to 1995 at the Lenin Nizhny Novgorod Television Plant. Alongside that work he invented:
- an IR and/or microwave digital packet city telephone network with the option of adding video calling to the telephone (delivering digital packets "by the move of a rook on a chessboard"), - a text radio communication system for farmers and rural residents, TELEPOCHTA, based on the then popular ZX Spectrum computer that plugged into a TV set, - A light alarm clock, an analogue of which the SONY company released only 17 years after my proposal to the management of the NITEL plant to make it a mass consumer product.
- 1998. Invented the AEROMETRO as a physical analogue of digital packet delivery in a city telephone network (delivering digital packets "by the move of a rook on a chessboard")
- In 2007-2010 he formulated a space programme for the mass resettlement of part of humanity into orbital colonies near the Earth (using lunar material resources) and orbital colonies near Mars (using the material resources of Deimos and Phobos); he proposed carrying people between these colonies in rotating orbital cities - comfortable (with artificial gravity and massive radiation shielding) reusable transit stations - space analogues of ocean cruise liners for 5,000-10,000 passengers.
- at the same time he proposed the idea of accelerating a spacecraft above the atmosphere to orbital velocity by impacts against a heat-resistant shield behind it from small portions of lunar material thrown from the Moon and travelling along an elliptical orbit at almost the second cosmic velocity
Interests and inventions
- Main interest: the speediest settlement of space by thousands and millions of people, using the resource of lunar soil (LS).
- Inventions: the Space Trebuchet, which carries out an orbit exchange of equal masses, cost-free orbit-exchange space flight to the surface of the Moon and back, the construction on this principle of an Earth-Moon-Earth transport system with a capacity of the order of 10-100 tonnes per month to supply scientific and tourist bases on the Moon, throwing raw-material cosmonautics of lunar soil, the idea of creating a space chemical industry based on processing lunar soil in orbit into its constituent pure chemical elements and building space cities there in orbit out of the materials obtained (metals, glass and composites)
- Launching spacecraft into orbit around the Earth, mainly with equipment for future lunar bases and then with people as well, using the kinetic energy of lunar soil falling towards the Earth, thrown by a lunar throwing system, i.e. using the gravitational energy of lunar soil in the Earth's gravitational field for the impact acceleration of spacecraft, the SHOVEL-FLYER — to carry out this launch process.
( the professor's LiveJournal )
Useful activity
| In Zelenograd the automated microcircuit assembly lines are possibly still running. I took part in creating them at NIITOP and in setting them up at Angstrem in the early and mid-1980s.
And in the late 1980s and early 1990s half the city bought and watched Chaika Ts-280, 310, 465 colour televisions They contained scanning units tested on my non-standard equipment. So that 25 kV wouldn't suddenly disappear inside the box - I was the one measuring it :) I provided the measurement accuracy + a great deal else there, so that defective sets wouldn't reach your home. Well, and the fact that afterwards the components, from Uzbekistan for example, made themselves felt, that is not my fault. |
In his own words
... By the way, these cowardly official scientists, before me, already devoured (this is generally characteristic in nature of animal male packs with a hierarchy) in 1999 at the Moscow IKI (Space Research Institute) a man and his group (Sidorov I.M.) who were working on a similar subject. [ www.iki.rssi.ru/seminar/199911_sid.htm ]
Take a look and compare it with what is in my gallery about Trebuchet-Cosmonautics. That group never thought of the electrostatic cable – and yet they would have been laughed out of that seminar altogether. Listen to the audio files and hear what the "pros" there think of strong ideas in general.
Well, I opened up the road for Humanity, just as Tsiolkovsky once did. I am independent, and I cannot be buried as easily as Sidorov: I have a platform on NN.RU! Although my bet on people's solidarity with my innovation and on the public's knowledge of physics (as it was in the USSR) did not pay off: there are plenty of critics who have gone off their rocker. Lisss, for example, is afraid of the disgrace of the GF if the mad professor wins the contest: www.nn.ru/internet2011/gorod/ - his thread was somewhere there, he was very worried when I was leading in that contest. Maybe someone can find a link to it?
But in time my popularization of ideas that break through into the future on NN.RU will do its work. And the alpha- and beta- and other low-ranking males in our science, looking at the current «revolutionary situation» that is shaking the pyramid under Putin, are already ready to go over to the camp of those who support me. They too, supposedly, are for change. They sense the wind…
(Rastolkovsky on the City Forum of NN.RU of NN.RU)
In 15 years we will be living in a Kosmograd
Earthlings will be able to escape global catastrophes in orbital cities, believes the Nizhny Novgorod inventor Igor Rastolkovsky.
In just 15 years the first of us will be able to begin a new life in Earth orbit. Everything necessary — materials for space housing, rocket fuel — we will obtain on the spot from free lunar soil. We will feed ourselves too — with cucumbers grown right there, in an orbital greenhouse. We will work no more than four hours a day, so the rest of the time can be devoted to earthly pleasures. And if you feel wistful for the Earth you left behind, nipping over for a visit by aerotaxi will be quicker than riding the «Sapsan» from Nizhny to Moscow. The ideas of the 50-year-old inventor Igor Rastolkovsky have literally blown up the Nizhny Novgorod internet with their extravagance.
'Making money out of... oxygen'
— To master space means to live there, the physicist is convinced, positioning himself as the founder of the school of throw-based cosmonautics. - The creation of orbital cities is the salvation of humanity from global catastrophes, a possible way to isolate highly developed countries from peoples who have multiplied but remain of low culture, without violence against them. And, of course, it is a real chance to improve the ecology of the Earth by moving dirty industries into space.
Rastolkovsky recalls: Tsiolkovsky himself put forward the idea that around the Earth there are rings of imperceptible dark matter, similar to the rings of Saturn. It was these that he proposed to use for building «ether settlements».
— No rings have been discovered around the Earth, but we can create them ourselves — by building orbital cities, - Rastolkovsky is convinced. - Such a settlement will revolve around our planet, receding from it at most to 12 Earth radii and coming closest as it passes over Australia — at a distance of 500 km from the Earth. This is a convenient way of safely bypassing the Earth's radiation belts. From this orbit it is equally convenient to fly both to the Moon and to the Earth.
To equip the Kosmograd we will not have to haul tons of terrestrial materials into orbit. The inventor proposes to obtain everything necessary — building materials, rocket fuel - at orbital factories. Lunar soil will do perfectly as the raw material.
— Practically everything can be made from it, - Rastolkovsky believes. - It consists 98% of nine main chemical elements: oxygen, silicon, aluminium, calcium, iron, titanium, magnesium, sodium, potassium. Lunar soil also contains phosphorus, sulphur and chromium. For orbital construction we will need iron, aluminium and fused quartz, in order to obtain fibreglass. By reducing iron we will get oxygen. An admixture of sulphur will let us obtain sulphuric acid, and by dissolving with it we will separate the iron from the rock and obtain pure ferrous sulphate, from which in a solar furnace we will reduce already pure iron.
True, in order to get water, hydrogen will have to be brought from the Earth. That is, if large reserves of ice are never found at the lunar poles. There will be no problems with oxygen — lunar soil consists of it by 40%. Things are rather more complicated with obtaining air for breathing. The nearest space deposits of nitrogen, which is part of it, are on the satellites of Jupiter. But the inventor believes that the inhabitants of the Kosmograd do not have to breathe «earthly» air. «Space» oxygen will do just as well. Only fire safety will have to be watched especially carefully.
— Oxygen extracted from lunar soil is the blood of the future space industry, - Rastolkovsky believes. - Just as oil is on Earth. Space oxygen is water, and air, and the main element of rocket fuel.
The inventor believes that in time we will be able to move all the energy-intensive industries of the Earth into orbit.
— They pollute the environment, but they can only be fenced off in a vacuum. In space it is free, - Igor explains.
But how will lunar soil get into Earth orbit? Very simply: with the help of a lunar carousel and an orbital sling.
— On the Moon it will be necessary to install a small solar power plant with the power of an average car's engine, - the inventor relates. - The power plant will supply energy to the throwing machine. In this way we will be able to provide energy for launching 100 kg of lunar soil per hour, or 2.4 tons per day.
According to Rastolkovsky's idea, the soil will be put into a lunar accumulation orbit with the help of an orbital sling. A special carousel will be installed on the surface of the Moon, and from it the lunar soil will be tossed up to the orbital sling. There it will catch onto the hooks of a massive cable spun up hard in lunar orbit — that is the orbital sling. It will provide the second half of the acceleration of the sack of lunar soil up to space velocity. It is precisely this that makes the project physically possible - the strength of modern materials for cables is already quite sufficient.
To bury the Kosmograd in lunar soil, the inventor plans to install 100 carousels on the Moon along the lunar equator and to launch 100 slings into lunar orbit. The output of lunar soil extraction will grow ten thousandfold.
— In 2006 Russia's plans included beginning the extraction of helium-3 on the Moon by 2015, - says Rastolkovsky. - It would have been better if, instead of these illusory goals, we had equipped a throwing station there, and only afterwards created a permanent base with researchers. Only after setting up the production of everything necessary in that convenient near-Earth elliptical orbit. It is then that from it we will be able to supply them with everything they need. And from the Earth we will not feed them!
'We will live in tins, and fly — in «little coffins»
Interesting: in what conditions will the Kosmograd dwellers live?
— To make quarters for people, we will need to melt metal in the space vacuum in a solar furnace at the focus of a concave mirror made of film, - the inventor relates. - Barely cooled, hanging in space in the form of a drop, it will be rolled into sheet metal — exactly as on Earth. From this tin plate we will weld a huge tin can — 3-5 m in diameter. On the outside we will wind it with fibreglass thread, then release oxygen into it. Then in this can one will be able to breathe even without a spacesuit. And in order to protect it from radiation and small meteorites, the can will have to be surrounded with nets filled with lunar stones.
Of course, one can live in weightlessness the old-fashioned way. Splashing about in these little tin-can houses clad in uncomfortable and expensive spacesuits. But it is far more interesting and pleasant to live under gravity. By Knyaginichev's estimates, the optimal gravity for a merry life is 40% of the Earth's. As on Mars and Mercury. And that means the Kosmograd dwellers will be able to jump high and far, and their later generations will considerably surpass earthlings in height. A two-metre man will be considered a rather short specimen.
When the «virgin-land settlers» have built enough space housing, earthlings can be sent into orbit in batches. A hundred people per rocket. And not three at a time, as now. Rastolkovsky has worked out how to do it:
— The volume under the nose fairing of a carrier rocket is about 40 cubic metres. An average person weighing 60 kg fits into a parallelepiped. If a hundred people are packed into such «little coffins», stacked on top of each other, they will take up only 20 cubic metres. Uncomfortable? The cramped conditions will not have to be endured for long — 10 minutes, until the craft reaches orbit. Individual «little coffins» can be replaced with single-seat sections, in each of which a strong hammock with inflatable elements will be stretched. The sections are combined into blocks of several people and loaded into the ship before launch.
— Docking with the orbital station is best done after half an orbit of space flight, roughly at the 50th minute after launch, - Rastolkovsky believes. - At present 2-3 days are allotted for the gradual approach to the station. But it is possible to close in within half an orbit, if everything is calculated precisely. 50 years ago we managed it. In 1963 two ships were launched from Baikonur a day apart. By the time the second ship reached orbit, the first had made 16 orbits around the Earth. The distance between them in orbit was only 6.5 km. That record has not been beaten to this day.
We will launch rockets... with a shovel
The method of launching into orbit proposed by the inventor is original too. It is called the shovel-flyer. A shield is placed behind the spacecraft, and between the ship and the shield — a spring. Lunar soil strikes the shield from orbit with aimed blows at a speed of 11 km/sec. Exploding, the resulting plasma bounces back in the opposite direction at approximately the same speed. That gives 22 km/sec. That is by how much the speed of the lunar matter changes in an elastic impact. And by the law of conservation of momentum, all this momentum is transferred to the rocket.
— In its ability to accelerate spacecraft, lunar soil is seven times better than the jet fuel we use when launching rockets, - says the inventor. - I propose to keep the first two stages of the carrier rocket, and to do the final acceleration from 5 to 8 km/sec on this principle. A hundred such strikes of lunar soil against the shield — and we have accelerated. That is, if instead of a spring for softening the blows one uses a rotating structure in the shape of a shovel. It is a cable, at one end of which are the cosmonauts, and at the other – a big shield with a bent edge to focus the rebounding plasma towards the centre, so that it comes out something like a scoop shovel. The energy capacity of such an impact damper is hundreds of times greater than that of any spring!
By Rastolkovsky's calculations, the shift of cosmonautics to space resources (even without the use of the shovel-flyer) and the increase of a rocket's load from three to a hundred people will make it possible to cut the cost of launching one person by 30 times. And since with the shovel-flyer we remove the third stage, the launched mass triples. If in one go we send 300 people into space, then the cost of the flight of one cosmonaut into orbit falls a hundredfold.
When the flow of people into space grows thousands of times over, because of the hundredfold drop in the price of a ticket, a shift to reusable carriers will naturally take place. First the first stage will be made reusable, and then the second. And at that point the price of a ticket into space will fall by tens of thousands of times.
— Among other things, the Kosmograd will become a guarantor of peace on Earth, - Igor believes. - Everyone will know that we are keeping watch from orbit and, if necessary, will be able to shell any point on Earth with lunar soil.
Into space! To the white nights!
By Rastolkovsky's calculations, in the number of «white nights» the Kosmograd will outdo Saint Petersburg.
— I have found an orbit convenient for life, where the Earth rarely covers the Sun, - says the inventor. - Therefore the Kosmograd will plunge into darkness only when it passes close to the Earth. Which means that 99% of the time it will be sunny in the orbital city.
What is more, the inhabitants of the Kosmograd will be able to control the climate on Earth as well. Raising the temperature to the desired mark will be possible with the help of a thin-film mirror aimed at the Sun. Feel like cooling off — with the same mirror we screen ourselves from the luminary. Simple as pie. All that will be needed is a hundred thousand tons of lunar aluminium or calcium. Reaching such volumes of space production is possible in a mere 10 years.
But the most pleasant thing in Rastolkovsky's calculations is that the Kosmograd dwellers will not have to work more than four hours a day. And the rest of the time...
— As Charles Fourier wrote back in the 18th century, when the golden age comes, people will have nothing left to do but make love, - the inventor smiles. - All the more so as the gravity in the Kosmograd will be only 40% of the Earth's, and that means the Kosmograd dwellers will have far greater physical opportunities for this than earthlings.
...Meanwhile, internet opponents tell the inventor outright that he is not all there. This does not upset Rastolkovsky in the least: many bold ideas were booed by contemporaries in their day.
— As long as we are shy of great deeds, we will see no luck even in small ones, - says Igor. - Many people have this attitude: to accuse of lying without checking. Or to check wrongly, in a hurry, making mistakes of their own that come from a lack of erudition, from forgetfulness, and from mistakes absorbed back from their teachers.
Rastolkovsky believes that he will not be understood sooner than in 10-15 years. That is why he is betting on the young generation.
— Let plenty of big aunties and uncles hold cosmonautics back, - he instructs the kids in verse. - It is for you to set off in flight, and for them to sit on the ground!
By the way
Rastolkovsky has already worked out what benefit we can draw from our space surroundings. So:
- On Mercury it is possible to build mobile plantations for growing space cucumbers to keep the colonists self-sufficient. One can build a cart that will drive away from the rising Sun at a certain speed. And on top of this cart install a mirror lighting the mobile vegetable garden.
- Besides that, there are deposits of gold and uranium on Mercury. By extracting them, the inhabitants of the Kosmograd can set up trade with the Earth.
- In order to breathe «earthly» air in orbit, space oxygen needs to be «diluted» with nitrogen. However it is more profitable to deliver it not from the Earth, but from the satellites of Jupiter. But, unfortunately, that is no short hop: three years' flight one way alone.
What Kosmograd will look like
From the outside, Kosmograd will look like two spheres joined together by a strong cable. Inside each sphere there will be a skyscraper. They will be shielded from cosmic radiation by a cocoon of calcium. By spinning the cable, we create gravity.
the personal site of journalist Tatyana Kokina-Slavina
Institute of Industrial Technologies of Mechanical Engineering
- Reply to the inquiry Bulavinov from the experts and the rector of the Institute of Industrial Technologies of Mechanical Engineering
Brief description of the works
The works of I.V. Knyaginichev examine previously known projects, as well as new principles and methods of astronautics proposed by the author.
The works contain the following sections: Trebuchet-Cosmonautics, The use of tether systems for carrying out transport operations in outer space, The space elevator, Acceleration systems. In addition, an attempt is made to resolve the question of the strength of various materials for creating space devices of different purposes. Many of the works are posted on the site and there is a sufficient number of blogs on the Internet.
I have never said anything good about the space elevator anywhere — anyone who defends such an ELEVATOR project for our planet is lying, because it has nothing to do with reality!!! It is interesting only as a physics exercise, but it will never actually work!! There is a whole bouquet of utterly unsolvable problems there. God forbid anyone should ascribe to me that I am proposing anything of the sort.
But good for Albert Mikhailovich, that he at least wrote something — he broke through the blockade: now every new expert will write better than the previous one'--RASTOLKOVSKY:)109.184.147.105 06:17, 13 March 2012 (UTC)
The materials presented are, as a rule, largely informational in nature and are not clearly enough substantiated or worked through. As of now they are, in essence, fantastical proposals, and their practical implementation is bound up with solving numerous engineering, technical and economic problems.
Relevance of the works presented
The relevance of the projects presented is driven by the need to modernise practical astronautics and to use new effective devices in it.
In addition, within practical astronautics several fields of research can be singled out whose results may be used in the teaching process by students and postgraduates of technical universities, and of physics and mathematics faculties and departments of universities.
Degree of substantiation of the scientific propositions, conclusions and results
The works lack a thorough analysis of the various methods and devices of modern astronautics that exist at present; there are no references to the well-known innovative projects and inventions proposed by other authors. This is also evidenced by the absence of the author's own patents and publications in various scientific and technical periodicals on the subject of the devices developed and proposed. The projects contain no references to the works of numerous authors on the use of centrifugal devices of various purposes in astronautics.
As a result, the proposed new method and devices have not been brought to practical implementation, as is evidenced by the absence of bench or field test reports and of any introduction of the research results.
Using the projects proposed by the author without appropriate modelling and testing does not make it possible to calculate optimal designs for solving the various tasks of astronautics.
Well, so one should just go and produce right away something optimal for some particular case? "... for solving the various tasks of astronautics." All of them? Well, that is going too far :) First one has to grasp the prospects!!! And then it will be clear that precisely this is the high road of future astronautics. And this is only an intermediate stage of reflection, while the optimum lies somewhere else entirely http://rastol.www.nn.ru/?page=gallery&MFID=88729 roughly here
Novelty and reliability of the results obtained
As has been noted, the proposed projects are not protected by invention patents and have not been published in the scientific press. As publications there exists a certain number of works by the author of the projects in the form of reports and booklets, which were presented at seminars, talks and conferences. Unfortunately, the reliability of the results obtained is not confirmed by agreement between the calculated properties of the devices and the results of computer modelling or the experimental data of bench and field tests
"...the proposed projects are not protected by invention patents" — well, and who would have paid the state fee for those patents for 20 years, for instance, while our state gets around to doing something in this direction? (RASTOLKOVSKY:)))
... and have not been published in the scientific press" — the space in the scientific press is taken by more respected comrades, who do not toss such revolutions in science and technology at the scientific press :) for today's science has no need of revolutions!
"Unfortunately, the reliability of the results obtained is not confirmed by agreement between the calculated properties of the devices and the results of computer modelling" — and has anyone tried to model it on a computer? And has something already failed to agree with my calculations for someone? Here they are — check them! http://rastol.www.nn.ru/?page=gallery&MFID=96202
"... and the experimental data of bench and field tests" — so when will money for that ever be given? Tsiolkovsky first calculated a space rocket back in the 19th century, and it flew only in 1957! That is, more than 60 years later... Yes, that was a single-stage rocket running on liquid hydrogen and oxygen with a theoretical exhaust velocity of 5.6 km/s, and that has still not been reached, nor will it be. He published the information about the multistage rocket (rocket trains) in 1926, that is, 30 years before it was implemented!!!"'
Shortcomings of the works presented
The works do not analyse the large body of known theoretical material, and the original technical solutions that would make it possible to optimise and create new devices are not worked out competently enough. Among the shortcomings of the works one should also count the absence of clear calculations of the energy costs of spinning up the trebuchets, of the tensile resistance of the materials used, of the laws of celestial mechanics and of the dynamics of rotational motion, and the absence of recommendations on safe working practice.
Thus, the work as of now has not been brought to scientific, nor indeed to practical, significance.
Recommendations on the use of the results of the work
In order to obtain a better-grounded conclusion, we recommend that the author of the proposed projects turn more often to the study of those sites that set out new developments in the field of astronautics, for example www.federalspace.ru and others. He should also approach the specialists of the Russian Federal Space Agency (ROSCOSMOS), which holds competitions of works submitted for the Yu.A. Gagarin Prizes of the Government of the Russian Federation in the field of space technologies — 107996 Moscow, Shchepkina St., 42, tel. 8 (495) 631-97-68.
It should be noted that further elaboration of the proposed projects is necessary, since the results obtained in the work are insufficient for creating new devices of astronautics.
Conclusion
The projects of I.V. Knyaginichev represent unfinished work on a relevant subject, carried out by the author independently at an insufficiently high scientific level; many of the problems posed in the works are treated fragmentarily. For that reason the results presented do not allow them to be qualified as a new scientific achievement. The works are based on a large amount of initial data and are written intelligibly. However, across their various sections the conclusions and inferences drawn are on the whole not conclusively substantiated. As of now the work is speculative and requires additional and thorough engineering, technical and economic substantiation.
Should the noted remarks about the projects be addressed and the projects be refined, the results obtained may have practical significance for creating the necessary basis for the further development of new means of astronautics.
Professor of the Department of Astronomy and History of Natural Science, NGPU, Doctor of Technical Sciences A.M. Shutov
Well, what is there to say? These remarks I can easily address, but official science does not need it — it does not even want to listen :) signed: RASTOLKOVSKY
A few pieces of advice for Professor Rastolkovsky
User S@ndro, 24 January 2012 at 14:22:24, City forum NN.RU
Professor, I will choose the method of creating a new thread that is close to your heart instead of describing everything in the previous one, and I will try to offer a few pieces of advice on promoting the acceleration planes. It seems to me that you have made several mistakes that prevent you from achieving success (c).
- 1. Change your surname (pen name) from Rastolkovsky to something more resonant and obscure — for example, "Kubrik" or "Vypendrik". People are drawn to the unknown.
- 2. Change the name of the invention to a foreign one: instead of "acceleration plane" — "jetlifter" or "waterskier". That is fashionable, topical and commands respect.
- 3. Do not ask people for money a kopeck at a time. Declare right away that a hundred million roubles are required for developing the documentation and then fifty times as much again for building a prototype. The minimum contribution is 10 thousand c.u., otherwise the scale of the invention is not clear.
- 4. Do not take people off the street as partners — create a closed club of those in power and small and medium businessmen, and tell them there that the invention is eleetist and exclusive and that not just anyone can get into the club. They will start handing over money on their own.
- 5. Build a working model. Not necessarily based on your invention — you can buy a radio-controlled helicopter and rebuild its cabin for the resemblance; the main thing is that it flies and that everyone sees it. Nobody will understand anyway.
- 6. Hint to everyone that the invention enjoys support from above — from Shoigu, Mironov or the Man Himself.
- 7.???
- 8. Profit!!!
In discussions on social networks
- POLL: Can you think? OIL IS NOW GOING TO LOSE ALL ITS VALUE! The Moon, if its mass (regolith sand) is simply moved to the Earth little by little, has enough energy for 7 000 000 000 earthlings for A BILLION YEARS, if 50 litres of oil or petrol a day are spent on each of them! This has been IRREFUTABLY PROVEN (archive)
Nickname on NN.RU
Facebook account
Mobile phone
- in Moscow (150 metres from Savyolovskaya metro station)
MTS: 915-178-76-99
Beeline: 965-178-97-12
Megafon: 926-39 55 99-7
- in Nizhny Novgorod TELE-2 +7 950 624 99 62 currently unavailable
Rastolkovsky's resources on the internet
- "In about 15 years it will be your turn to fly into space" version 2.0 pictures__ 1024x768 pixels each (archive)
- "In about 15 years it will be your turn to fly into space" version 1.0 pictures __________of __720x540 pixels each (archive)
Interesting facts
- He is often called Rastalkovsky (the way it is pronounced). This is a mistake.
- Razgonoplany and Rastolkovsky himself have become Nizhny Novgorod memes.