| | #In [[Genesis (ch.1)|Genesis 1:6-8]], we are told that one of God's first creations was a firmament in the heavens. This likely refers to the creation of the luminiferous [[aether]]. | | #In [[Genesis (ch.1)|Genesis 1:6-8]], we are told that one of God's first creations was a firmament in the heavens. This likely refers to the creation of the luminiferous [[aether]]. |
| | #Despite a century of wasting billions of dollars in work on the theory, "No one knows how to solve completely the equations of general relativity that describe gravity; they are simply beyond current understanding."<ref>[http://www.mathunion.org/o/General/Prizes/2006/TaoENG.pdf Statement in awarding the coveted Fields Medal]</ref> | | #Despite a century of wasting billions of dollars in work on the theory, "No one knows how to solve completely the equations of general relativity that describe gravity; they are simply beyond current understanding."<ref>[http://www.mathunion.org/o/General/Prizes/2006/TaoENG.pdf Statement in awarding the coveted Fields Medal]</ref> |
| − | #The searchlight paradox: If an observer is at a certain distance of a rotating searchlight, the farthest away the observer is, the faster the beam will sweep past him. Theoretically, if the observer is far enough, there is nothing to prevent the beam to sweep past him faster than the speed of light. This effect actually happens when observing [[pulsar]]s. Most physicists, although accepting this fact, claim that does not disprove Relativity, since you cannot transmit any information in such way. This last claim can be easily disproved by nothing that the light source can be, for example, a movie projector, in which case you are moving an image faster than light.
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| | #The barn and ladder paradox: Person A has a ladder too long to store in his barn. Person B takes the ladder and runs very fast into the barn. For A, who is at rest with respect to the ladder, the ladder will contract, and if the velocity is fast enough, it will fit in the barn. But to B, who is moving with the ladder, it is the barn that will contract, making the problem even worse. So, who is correct? Does the ladder fit in the barn? This problem was considered in the book Introduction to Electrodynamics by David Griffiths, and the author, who supports Relativity, claim that both are correct. The ladder both fit and doesn’t fit in the barn. This is obviously against elementary rules of logic. | | #The barn and ladder paradox: Person A has a ladder too long to store in his barn. Person B takes the ladder and runs very fast into the barn. For A, who is at rest with respect to the ladder, the ladder will contract, and if the velocity is fast enough, it will fit in the barn. But to B, who is moving with the ladder, it is the barn that will contract, making the problem even worse. So, who is correct? Does the ladder fit in the barn? This problem was considered in the book Introduction to Electrodynamics by David Griffiths, and the author, who supports Relativity, claim that both are correct. The ladder both fit and doesn’t fit in the barn. This is obviously against elementary rules of logic. |
| | #Spin is an effect introduced by relativity into quantum mechanics. Spin stands for a rotation of electrons, but that rotation makes the surface of the electron move faster than the speed of light, which is prohibited by relativity itself. | | #Spin is an effect introduced by relativity into quantum mechanics. Spin stands for a rotation of electrons, but that rotation makes the surface of the electron move faster than the speed of light, which is prohibited by relativity itself. |