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This progression of holes cannot be distinguished in its effects from a current of positive charges.
The problem with FSM is that holes cannot be easily modeled.
Black holes cannot be observed directly; their gravity is so strong that nothing, not even light, can escape their clutches.
So black holes cannot be the source of galaxy rotation: they are simply too small, and too far away from most of the galaxy to do it.
Black holes cannot be observed directly on account of both their small size and the fact that they emit no light.
Of course, holes cannot be filled with the correct geometry of the statue, which we couldn't see, but the invented geometry is usually plausible, and the resulting mesh of triangles is now watertight.
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Since a black hole cannot be directly observed, astronomers must use circumstantial evidence to prove its existence.
Here, a hole cannot be drilled because something sticking out next to it will get in the way of the drilling machine.
A star interacting with a massive black hole cannot be treated as a point mass if its gets so close to the black hole that it becomes vulnerable to tidal distortions and even disruption.
Even if an ejecta hole cannot be detected morphologically, the presence of a hole in SNR ejecta may allow the inference of a companion from a burst of radiation generated during the impact with the companion, which can escape through the less optically thick region of the companion shadow cone (Kasen 2010).
You know huge problems, a hole cannot be closed, the flap is too short, the screws are wrong, and in the end he could solve everything.
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