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  • $\begingroup$ This answer... does not make sense. The vibration of molecules is heat. By suggesting you stop this vibration, all you're suggesting is freezing the star to 0 Kelvin. That doesn't destroy it. $\endgroup$ Commented Feb 18, 2016 at 18:32
  • $\begingroup$ Have fun trying to get the energy needed to (continuously, no less) levitate the mass of a star to propagate in a vacuum, I guess. $\endgroup$ Commented Feb 19, 2016 at 9:05
  • $\begingroup$ The point is not to continuously levitate the star itself but to focus on a sort of frequency targeted at making one solitary push to alligning all the molecules to perfect cohesion. This would likely only require knowing the exact makeup of it is and what the dentist solid form possible would be for its gravitational force then forcing the solid state. No doubt the force required to accomplish this would need to exceed the millions of tons of pressure over all though a chain reaction event may be calculatable...ie structures formed at surface to penetrate and amplify the effect of x movement. $\endgroup$ Commented Feb 20, 2016 at 1:40
  • $\begingroup$ @Firobug I love how you combine the words only, exact, it (relating to a star) and <superlative> possible. When you can gather all the information required you can probably calculate the correct flap of a solar butterfly to cause the same effect with minimal investment. $\endgroup$ Commented Mar 21, 2016 at 19:44