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Spaceship Landing

In 1682, Jakob Bernoulli formulated the theory that the hardness of the bodies depended on the pressure of the aether.[24]

Aether has been used in various gravitational theories as a medium to help explain gravitation and what causes it.

A few years later, aether was used in one of Sir Isaac Newton's first published theories of gravitation, Philosophiæ Naturalis Principia Mathematica (the Principia, 1687). He based the whole description of planetary motions on a theoretical law of dynamic interactions. He renounced standing attempts at accounting for this particular form of interaction between distant bodies by introducing a mechanism of propagation through an intervening medium.[25] He calls this intervening medium aether. In his aether model, Newton describes aether as a medium that "flows" continually downward toward the Earth's surface and is partially absorbed and partially diffused. This "circulation" of aether is what he associated the force of gravity with to help explain the action of gravity in a non-mechanical fashion.[25] This theory described different aether densities, creating an aether density gradient. His theory also explains that aether was dense within objects and rare without them. As particles of denser aether interacted with the rare aether they were attracted back to the dense aether much like cooling vapors of water are attracted back to each other to form water.[26] In the Principia he attempts to explain the elasticity and movement of aether by relating aether to his static model of fluids. This elastic interaction is what caused the pull of gravity to take place, according to this early theory, and allowed an explanation for action at a distance instead of action through direct contact. Newton also explained this changing rarity and density of aether in his letter to Robert Boyle in 1679.[26] He illustrated aether and its field around objects in this letter as well and used this as a way to inform Robert Boyle about his theory.[27] Although Newton eventually changed his theory of gravitation to one involving force and the laws of motion, his starting point for the modern understanding and explanation of gravity came from his original aether model on gravitation.[28][self-published source?]
 
You miss, but use the tractor beam to anchor you to the planet, and sling around until you decelerate to an approachable speed.
 
You miss, but use the tractor beam to anchor you to the planet, and sling around until you decelerate to an approachable speed.


Hmm, using a tractor beam of 50,000 km length while going 0.5c you'd experience ~45887200 Gs of centrifugal acceleration... :toast:
 
You really need a better supplier of handwavium!

Yes, mine is past the expiration date and almost gone.

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Not quite, a nice image though :)
Element 121 or E121 as it is known is likely to be synthesized by the end of the decade at the latest, and its name is currently eka-actinium or Unbiunium depending on the naming convention you go with.
 
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Not quite.
Element 121 or E121 as it is known is likely to be synthesized by the end of the decade at the latest, and its name is currently eka-actinium or Unbiunium depending on the naming convention you go with.

sorry - not a scientist but someone who can do web searches just fine :)
 
Why would the lack of kinetic energy in the collected gas release heat? If anything it has to be accelerated to the same velocity as the ship?

The energy released by the compression is a separate issue, I believe.
My energy of condensation error notwithstanding, the issues is that the relative velocity of the scooping ship doesn't magically vanish. Just as reentry heats up the surfaces of the ship, it heats up the gases equally. the scooped fuel will be near plasma temperatures. All that heat has to be removed. Cooling from intake temp is probably far more than the energy required to cool and liquify from stp.
 
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