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Neutron stars are able to produce pulses of radiation because they are rotating, and only a certain place on the neutron star releases the radiation(just like how light comes out of a flashlight). As the neutron star rotates, the point on the neutron star also moves along. When it points toward the Earth, we see the pulse.

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How are rotating neutron stars able to produce pulses of radiation?

A rotating neutron star may emit continuous beams of electromagnetic radiation from its poles. Due to its rotation, and the fact that the magnetic poles do not necessarily align with the axis of rotation, such a beam may periodically be directed towards our solar system. We observe the beam as it flashes past us, noting a pulse.It may also be possible for a neutron star in a binary system to periodically accrete enough matter on its surface from its companion for it to undergo fusion, producing omnidirectional X-ray flashes.


What do neutron stars emit?

If a neutron star's rotational period is fast enough to produce jets (A pulsar), said jets will emit radio waves, with faster periods emitting higher frequency radiation as well as the jets themselves emitting synchrotron radiation. Also, unless the neutron star were 0K, it will emit thermal radiation However, as far as a neutron star that isn't a pulsar, nobody knows if they emit anything but thermal radiation.


Are neutron stars dead?

Neutron stars are the remnants of massive stars that have gone supernova. While they are no longer actively undergoing nuclear fusion like main sequence stars, they are not truly "dead" as they continue to emit radiation and have incredibly strong gravitational fields.


Do radioactive elements emit radiation all the time?

In order for an atom of an element that is not radioactive to become radioactive, the isotope has to change. This can happen as a result of neutron capture. Neutron capture can simply change the isotope of an atom, as when cobalt-59, which is not radioactive, captures a neutron to become cobalt-60, which is radioactive. Neutron capture can also result in immediate radioactive decay of the atom struck, even if it is not radioactive. For example helium-3 can capture a neutron to produce two atoms of hydrogen, one of hydrogen-3 and one of hydrogen-1.


Which of the is a large rotating thunderstorm?

A supercell is a large rotating thunderstorm that can produce severe weather, including tornadoes, hail, and strong winds.

Related Questions

How are rotating neutron stars able to produce pulses of radiation?

A rotating neutron star may emit continuous beams of electromagnetic radiation from its poles. Due to its rotation, and the fact that the magnetic poles do not necessarily align with the axis of rotation, such a beam may periodically be directed towards our solar system. We observe the beam as it flashes past us, noting a pulse.It may also be possible for a neutron star in a binary system to periodically accrete enough matter on its surface from its companion for it to undergo fusion, producing omnidirectional X-ray flashes.


What do neutron stars emit?

If a neutron star's rotational period is fast enough to produce jets (A pulsar), said jets will emit radio waves, with faster periods emitting higher frequency radiation as well as the jets themselves emitting synchrotron radiation. Also, unless the neutron star were 0K, it will emit thermal radiation However, as far as a neutron star that isn't a pulsar, nobody knows if they emit anything but thermal radiation.


Why do some stars turn into pulsars?

After going nova some stars turn into neutron star - being composed almost entirely of neutrons. These are very compact and massive and rotate extremely quickly. Typically the magnetic poles of the neutron star do not correspond to the rotational poles so the stars has a rotating magnetic field which is one of the conditions you need to produce radio waves. The radio waves produce by this situation is a beam of radio waves from the star's poles. As this beam sweeps out a cone there are times when it is pointed towards a potential observer and times when it is not. The pulses are the times when the beam flashes over the observer.


What will NOT produce a track of condensed vapour in a cloud chamber electron neutron positron proton?

The neutron will not produce a track in the cloud chamber. The neutron, proton, electron and positron are all types of particulate (particle) radiation, and all can do damage, but the neutron interacts much less with the air in a cloud chamber than the other particles will. This means the other particles will leave a tidy little ionized trail behind them on which condensate can form to "paint" the path of the particle. And the neutron will not.


Does the US have neutron bombs?

The US developed neutron bombs during the Cold War, but it is believed that they are no longer in the active arsenal. Neutron bombs are a type of nuclear weapon designed to produce a large amount of neutron radiation while minimizing blast and heat effects, making them potentially more effective in targeting enemy troops while reducing collateral damage.


Would a vibrating neutron produce electromagnetic wave?

no.


What is the surprising effect of the neutron bomb?

A neutron bomb, or enhanced radiation weapon (ERW), is a type of tactical nuclear weapon designed specifically to release a large portion of its energy as energetic neutron radiation rather than explosive energy. Neutron bomb would use nuclear fusion, but in a different way. The detonation of a neutron bomb would still produce an explosion, but one much smaller than a standard nuclear weapon's. The main effect of a neutron bomb would be the release of high-energy neutrons that would take lives far beyond the blast area. The result: fewer buildings, cars, tanks, roads, highways and other structures destroyed.


Are neutron stars dead?

Neutron stars are the remnants of massive stars that have gone supernova. While they are no longer actively undergoing nuclear fusion like main sequence stars, they are not truly "dead" as they continue to emit radiation and have incredibly strong gravitational fields.


How much radiation does a nuclear reactor produce?

A nuclear reactor produces different types of radiation, including gamma rays and neutron radiation. The amount of radiation produced varies depending on the reactor's design, operation, and fuel type, but strict safety measures are in place to protect workers and the environment from excessive radiation exposure.


What would a pinion rotating at 800 rpm and a gear rotating at 200 rpm produce as a gear ratio?

4:1


What is a Geiger counters used for?

It is used to measure radiation and is commonly used to detect objects that produce nuclear radiation.


Is radiation good for nuclear energy?

Radiation is used in nuclear energy to generate heat through fission reactions in the reactor core. This heat is then used to produce steam that drives turbines to generate electricity. While radiation can be harnessed for the production of nuclear energy, it is important to control and manage it to prevent harmful exposure to humans and the environment.