Exif II* n ( 1 2 0 i J Schematic illustration of the 'black hole bomb' effect. A wave thrown at a black hole can be magnified upon reflection, extracting rotational energy and spinning down the black hole. The mass of the particle acts like a 'wall' for outgoing waves (represented by the enclosing sphere in this figure), so the reflection/amplification process is repeated and causes an instability. Illustration by Ana Sousa. ` ' ` ' Adobe Photoshop CS2 Windows 2012-09-25T18:39:31-05:00 0220 Ducky [ http://ns.adobe.com/xap/1.0/ Schematic illustration of the 'black hole bomb' effect. A wave thrown at a black hole can be magnified upon reflection, extracting rotational energy and spinning down the black hole. The mass of the particle acts like a 'wall' for outgoing waves (represented by the enclosing sphere in this figure), so the reflection/amplification process is repeated and causes an instability. Illustration by Ana Sousa. Photoshop 3.0 8BIM Z %G xSchematic illustration of the 'black hole bomb' effect. A wave thrown at a black hole can be magnified upon reflection, extracting rotational energy and spinning down the black hole. The mass of the particle acts like a 'wall' for outgoing waves (represented by the enclosing sphere in this figure), so the reflection/amplification process is repeated and causes an instability. Illustration by Ana Sousa. 8BIM% S߶"ZPo Adobe d
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