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Anixx
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Yes, gravitational waves can be shielded. As gravitons are the particles which can interact with matter, the matter can absorb gravitons.

This would depend on the wavelength however. For uniform substance the rate of absorption would generally increasedecrease with the wavelength. The rate of absorption also can be increased by constructing mechanical oscillators with frequency in resonance with that of gravitational waves. Such oscillators would transform gravitational waves into mechanical energy.

Yes, gravitational waves can be shielded. As gravitons are the particles which can interact with matter, the matter can absorb gravitons.

This would depend on the wavelength however. For uniform substance the rate of absorption would generally increase with the wavelength. The rate of absorption also can be increased by constructing mechanical oscillators with frequency in resonance with that of gravitational waves. Such oscillators would transform gravitational waves into mechanical energy.

Yes, gravitational waves can be shielded. As gravitons are the particles which can interact with matter, the matter can absorb gravitons.

This would depend on the wavelength however. For uniform substance the rate of absorption would generally decrease with the wavelength. The rate of absorption also can be increased by constructing mechanical oscillators with frequency in resonance with that of gravitational waves. Such oscillators would transform gravitational waves into mechanical energy.

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Anixx
  • 11.3k
  • 4
  • 48
  • 84

Yes, gravitational waves can be shielded. As gravitons are the particles which can interact with matter, the matter can absorb gravitons.

This would depend on the wavelength however. For uniform substance the rate of absorption would generally increase with the wavelength. The rate of absorption also can be increased by constructing mechanical oscillators with frequency in resonance with that of gravitational waves. Such oscillators would transform gravitational waves into mechanical energy.