Altogether that is a mass of 1 billion tonnes of humanity leaping ten metres in the air. Suppose that all of them jumped ten metres within the air (an enormous overestimate, fifty centimetres is extra doubtless and possibly a lot much less). Solar sail technique. I am unable to actually add much to that article except to say that to maneuver the Earth considerably, the sail used is going to should be pretty massive. Electromagnetic affect. Traditionally the Earth is thought of as "ground", "impartial". Belgium. Design them carefully so that when used the rocket engines don't really simply propel themselves by the ground and into Earth the place they grow to be useless - chances are you'll have to periodically dig them out once more after several thousand years' continued thrusting, or else just build new ones over the top. Wait long enough, and the solar wind blowing the sail outwards will take the Earth outward too, since the two are gravitationally certain together! You can build an engine at either pole and this would not have any effect, but anywhere else and the constantly altering angle of thrust will cause the Earth to behave somewhat like a free Catherine Wheel-kind firework. You bounce up, the Earth goes down: you fall down, the Earth comes up to fulfill you.
Suppose they have been all at the exact same point on Earth (which they will not be, thus mitigating the consequences of the leap). All of it depends how fussy you're about how the Earth appears afterwards, after all. Certainly, no single affect goes to do all the course altering you may be wanting to pull off. Rather than merely bouncing off, the item destroyed much of both itself and Earth, inflicting an enormous spray of matter to be hurled off from the affect point; this matter coagulated into what's now the Moon. The precept here is way the identical, with the railguns behaving somewhat like discretized variations of thrusters, providing instantaneous adjustments in velocity as opposed to sustained regular change. Ceres, the solar system's largest asteroid, has lower than 1/40,000th the mass of Earth; the Moon, a mere 1/80th. These objects are the heaviest you are probably to find - there are heavier moons and total planets you would consider using, but to be honest from this perspective it appears extra like utilizing a succession of hundreds, hundreds or tens of 1000's of smaller asteroid impacts would be a better wager. Another, extra refined, downside is that the Earth is constantly spinning.
Which implies the space the Earth strikes when everybody jumps will be one trillionth of the space that all the individuals jumped: that's to say, 10-eleven metres, or about half the radius of a hydrogen atom. And lastly, suppose that all of them jumped at exactly the same immediate, which after all they won't, seeing as the time distinction between the quickest watch and the slowest will doubtless be over five minutes. Note that the Earth does not and won't behave like a solid, inflexible billiard ball beneath such enormous impacts as these. This may be employed to maneuver the Sun and Earth in tandem to a place the place the Earth can more simply be destroyed. You might reuse the identical asteroid many times, looping it around a couple of gas giants and again to gain lots more kinetic power from these fuel giants in the identical approach that Earth simply gained velocity from the rock. Suppose everyone on the planet weighed 100kg (which is an overestimate, 70kg is more like it, probably less).
Jumping up and down to strive to maneuver the Earth is like mounting a fan on a sailboat, pointing the fan at the sail, and anticipating the boat to move forwards. The Earth could be very large, transferring very fast, and due to this fact very troublesome to cease or even decelerate. The most obvious major drawback with this methodology is that right now there aren't even theories as to how you possibly can probably build rocket engines of the kind proposed right here. Direct rocket propulsion. Build gigantic, presumably nuclear upward-pointing rocket furnaces, maybe one, perhaps 4, possibly 1,000,000, whatever you possibly can finances for. On the other hand, pool specifically refers to a game played on a pool desk. In its unique use, billiards refers to any kind of cue sport, together with carom billiards, pool, and snooker. Billiards technique. Clonk the Earth with something large and heavy, inflicting it to alter course. Maybe Earth is about to hit an asteroid. Alternatively, because the Earth's angular kinetic vitality is negligible in comparison with its orbital kinetic power, you may consider diverting a relatively small amount of assets to simply stopping the Earth from spinning at all, before starting the main mission.
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