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ITER (initially the International Thermonuclear Experimental Reactor, iter meaning "the way" or "the path" in Latin [2] [3] [4]) is an international nuclear fusion research and engineering megaproject aimed at creating energy through a fusion process similar to that of the Sun.
Consequently, during the operation of envisioned fusion reactors, known as breeder reactors, helium cooled pebble beds (HCPBs) are subjected to neutron fluxes to generate tritium to complete the fuel cycle. [6] As a source of power, nuclear fusion has a number of potential advantages compared to fission.
University of Illinois Dr. George Miley's team at the fusion studies laboratory has built a ~25 cm fusor which has produced 1 × 10 7 neutrons using deuterium gas. [ 6 ] University of Sydney Dr. Joseph Khachan's group in the Department of Physics has built a variety of IEC devices in both positive and negative polarities and spherical and ...
Advances in the potential energy source may not be about electricity, at least at first.
The result was a scientific wonder, a feat that researchers had hoped to create in a laboratory since scientists first started bandying about the idea of using controlled nuclear fusion to produce ...
Nuclear fusion–fission hybrid (hybrid nuclear power) is a proposed means of generating power by use of a combination of nuclear fusion and fission processes. The concept dates to the 1950s, and was briefly advocated by Hans Bethe during the 1970s, but largely remained unexplored until a revival of interest in 2009, due to the delays in the ...
Nuclear technology portal The main article for this category is Fusion power . This is intended to be a list of important experimental reactors built for researching Fusion power .
The following page lists operating nuclear power stations. The list is based on figures from PRIS (Power Reactor Information System) maintained by International Atomic Energy Agency . [ 1 ]