Which of the following statements accurately describes the Casimir effect? A) It describes the bending of light rays near massive objects. B) It explains the attraction between neutral atoms due to induced dipoles in a vacuum. C) It predicts the existence of virtual particles in empty space, leading to a measurable force between closely spaced parallel plates. D) It describes the scattering of electrons by a crystalline lattice, leading to the phenomenon of electrical resistance.
Which of the following statements accurately describes the Casimir effect? A) It describes the bending of light rays near massive objects. B) It explains the attraction between neutral atoms due to induced dipoles in a vacuum. C) It predicts the existence of virtual particles in empty space, leading to a measurable force between closely spaced parallel plates. D) It describes the scattering of electrons by a crystalline lattice, leading to the phenomenon of electrical resistance.
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
Transcribed Image Text:Which of the following statements accurately describes the Casimir effect? A) It describes the bending of light rays near
massive objects. B) It explains the attraction between neutral atoms due to induced dipoles in a vacuum. C) It predicts
the existence of virtual particles in empty space, leading to a measurable force between closely spaced parallel plates. D)
It describes the scattering of electrons by a crystalline lattice, leading to the phenomenon of electrical resistance.
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