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Considered to be the top contender for the title of the “Father of Rocketry” (the other two being Hermann Oberth and Robert Goddard), Tsiolokovsky is responsible for developing the “ Rocket Equation” and the design from which most modern rockets are derived. Like most time-honored revolutionary ideas for space exploration, the space elevator can be traced to Russian/Soviet rocket scientist Konstantin Tsiolkovsky (1857-1935). This engineering facility specializes in the rapid development and scaling-up of graphene and other 2D materials. Nixene’s flagship publication (the Nixene Journal) is an affiliate member of the University of Manchester’s Graphene Engineering Innovation Centre (GEIC).
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John Knapman, a former AI specialist with IBM, a member of the British Interplanetary Society, and the Managing Director of the ISEC. He was joined by Dennis Wright - the vice president of the ISECIBM and a former researcher with the Stanford Linear Accelerator Center (SLAC) National Accelerator Laboratory - and Dr.
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The research was led by Adrian Nixon, a graphene and 2D materials scientist, a Royal Society of Chemistry member, founder and editor of Nixene Publishing, and a board member of StellarModal and the ISEC. But as it turns out, this issue may finally be resolved! According to scientists with the International Space Elevator Consortium (ISEC), a cost-effective manufacturing process could produce graphene ribbons that are strong enough to fashion a tether! Their latest findings are detailed in a paper they will present at the upcoming 2022 International Astronomical Congress in Paris. The single-greatest challenge has always been the tether since no known material has ever been strong enough to handle the stresses involved. But every generation or so, new research comes along that causes engineers and space agencies to reevaluate the concept. The engineering challenges and costs associated with such a structure have always been enormous. Our planet’s rotation would keep this tether taught, and a system of “climbers” would transport people and payloads to and from space. Originally proposed about a century-and-a-quarter ago, this concept calls for a tether of supermaterial that connects a station in orbit to Earth’s surface. The s pace elevatoris one of those ideas that seems to have an endless supply of lives.