The Space Elevator has returned, and Sure to Work Below Budget

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The proof that a space elevator works is now addressed at https://www.SpaceHose.com. Whereas it had been long believed a space cable, regardless how strong and light-weight, will snap as gravity fights centrifugal force for just a 60,000 mile long cable, a hose by using a spiral-helix of multi-walled carbon nanotubes is particularly elastic, the highest possible specific strength for reducing payloads (only a couple dozen rocket missions found it necessary to complete mission with one hose) and can be thickened at the center of mass to beat breaking where it's most vulnerable, potentially only 100 times the diameter at ground level (1 meter versus 1 cm) with hydrogen and oxygen from electrolysis useful for rocket propellant at the end of hose in rare instances when computer sensors indicate hose could become too tight and break without backup. Spinning wheels by the get more info end of the hose can be used as counterweights and may also reduce total hose length 20,000 miles, be harnessed for space stations that simulate gravity through centrifugal force, above all, they accelerate to their spins and cause torque pulling hose inward, powered by solar cells.

This project is indeed fastidious, it really is completed for under $1 billion in just a year, as an alternative to $500 billion proposed from the Obayashi company, never to be completed until 2050. Far safer, less expensive, and deployable in a short time period, with robots launching plenty of satellites per day, a vey important and life-saving of commodities, a multi-trillion-dollar industry is in the works. This is the time to accomplish it!

https://www.SpaceHose.com is critical read!

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