That is not currently known. According to some theories in particle physics, that certainly seems to be a possibility. Such a black hole would presumably not last long; specifically, if one were to be created in a laboratory, it is likely to evaporate before it can cause major damage (i.e., destroy Earth).
Stephen Hawking did.
That most likely refers to Stephen Hawking.
Black holes and subatomic particles are a subject of interest in the fields of astronomy, astrophysics, and particle physics. Perhaps the most famous to bring to light the notion that black holes could emit particle/antiparticle pairs and thus lose mass through loss of energy would be Professor Stephen Hawking, who proposed that black holes interact with the universe thermodynamically in this way and could potentially evaporate entirely. This radiation is often known as Hawking radiation.
Only black holes and subatomic particles remain. The universe has expanded so much that these individual particles may be separated from each other by truly enormous distances. Black holes themselves are now evaporating by Hawking radiation.
Black holes do not die but they can evaporate.
Stephen Hawking did.
Stephen Hawkin
He explained the Laws of Motion which govern movement from subatomic particles to black holes; as well as the Universal Law of Gravitation.He explained the Laws of Motion which govern movement from subatomic particles to black holes; as well as the Universal Law of Gravitation.He explained the Laws of Motion which govern movement from subatomic particles to black holes; as well as the Universal Law of Gravitation.He explained the Laws of Motion which govern movement from subatomic particles to black holes; as well as the Universal Law of Gravitation.
That most likely refers to Stephen Hawking.
The discovery of black holes was not due to a single person; several people participated, and at first, it was all very theoretical. You can find some of the history behind the theories and discoveries in the Wikipedia article on "Black hole".
Black holes and subatomic particles are a subject of interest in the fields of astronomy, astrophysics, and particle physics. Perhaps the most famous to bring to light the notion that black holes could emit particle/antiparticle pairs and thus lose mass through loss of energy would be Professor Stephen Hawking, who proposed that black holes interact with the universe thermodynamically in this way and could potentially evaporate entirely. This radiation is often known as Hawking radiation.
Black holes and subatomic particles are a subject of interest in the fields of astronomy, astrophysics, and particle physics. Perhaps the most famous to bring to light the notion that black holes could emit particle/antiparticle pairs and thus lose mass through loss of energy would be Professor Stephen Hawking, who proposed that black holes interact with the universe thermodynamically in this way and could potentially evaporate entirely. This radiation is often referred to as Hawking radiation.
They are studied by astrophysicists which is a branch of astronomy dealing especially with the behavior, physical properties, and dynamic processes of celestial objects and phenomena.
Only black holes and subatomic particles remain. The universe has expanded so much that these individual particles may be separated from each other by truly enormous distances. Black holes themselves are now evaporating by Hawking radiation.
stellar black holes were stars (these are large)primordial black holes were pieces of the big bang (these are microscopic)
No. It certainly has black holes, but it has other things as well.No. It certainly has black holes, but it has other things as well.No. It certainly has black holes, but it has other things as well.No. It certainly has black holes, but it has other things as well.
Black holes do not die but they can evaporate.