No, the particles become entangled in the process of their creation. Long before any measurement.
Yes, entanglement has been verified by many experiments.
Temperature is a measurement of the average speed of the particles in a substance.
No, humans cannot be quantum entangled with each other. Quantum entanglement is a phenomenon that occurs at the subatomic level between particles, not at the macroscopic level of human beings.
Particles become entangled when their quantum states become interconnected, regardless of the distance between them. This phenomenon in quantum mechanics suggests that particles can instantaneously influence each other's states, even if they are far apart. This has implications for the concept of non-locality and challenges our understanding of cause and effect in the quantum world.
Quantum entanglement can affect the formation of interference patterns by influencing the behavior of entangled particles, causing them to exhibit correlated behavior even when separated by large distances. This can lead to the creation of interference patterns that are different from those produced by non-entangled particles.
Bell's inequality is a fundamental result in quantum mechanics that demonstrates the limitations of classical physics in explaining the behavior of entangled particles. It provides a way to test the predictions of quantum mechanics against those of local hidden variable theories, which assert that particles have predetermined states independent of measurement. Experiments that violate Bell's inequality suggest that entangled particles exhibit correlations that cannot be accounted for by classical physics, supporting the non-locality and inherent randomness of quantum mechanics. The violation of Bell's inequality has been confirmed in numerous experiments, reinforcing the counterintuitive nature of quantum entanglement.
Your question is unclear. However current theory suggests any particles with mass would be absorbed by a black hole
no.
tempature
Temperature is a measurement of the average speed of the particles in a substance.
Temperature is a measurement of the average speed of the particles in a substance.
Temperature is a measurement of the average speed of the particles in a substance.
Temperature is a measurement of the average speed of the particles in a substance.