| Hint | Answer | % Correct |
|---|---|---|
| Fertile fuels | Uranium-238 | 78%
|
| Nuclear fusion fuels | Deuterium | 67%
|
| Nuclear fusion fuels | Tritium | 67%
|
| Fissile fuels | Uranium-235 | 67%
|
| Products of fusion | Helium | 56%
|
| Fissile fuels | Plutonium-239 | 56%
|
| Fertile fuels | Thorium-232 | 33%
|
| What makes up 0.7% uranium | 235 | 22%
|
| What makes up 99.3% uranium | 238 | 22%
|
| Plutonium reactor alternative name | Breeder reactor | 22%
|
| Products of fusion | Energy | 22%
|
| Products of fission | Fission products | 22%
|
| Nuclear fusion fuels (overview) | Hydrogen isotopes | 22%
|
| Fissile fuels | Uranium-233 | 22%
|
| 1kg uranium = | 13 tonnes coal | 11%
|
| Thorium abundance | 3x uranium | 11%
|
| Control rods... (7 words) | Absorb excess neutrons to control chain reactions | 11%
|
| Nuclear disasters | Chernobyl 1986 | 11%
|
| Future extraction methods | Coal ash | 11%
|
| H2 production | Extracted from water | 11%
|
| Fusion conditions | Extremely high temperatures | 11%
|
| Nuclear disasters | Fukushima 2011 | 11%
|
| Products of fission | Gamma radiation | 11%
|
| Purpose of gamma radiation | Heats water | 11%
|
| Fusion conditions | Heavy nuclei | 11%
|
| Daughter nuclei become... | High level waste | 11%
|
| Laser fusion alternative name | Inertial confinement fusion | 11%
|
| Reactor examples +location | ITER, France | 11%
|
| Reactor examples +location | JET, Oxford | 11%
|
| Nuclear fusion | Joining nuclei of small atoms | 11%
|
| Fusion reactors | Laser fusion | 11%
|
| Fusion conditions | Magnetic field | 11%
|
| Future fission technology | Molten salt reactors | 11%
|
| Reactor examples +location | National Ignition Facility, California | 11%
|
| Main nuclear fission process | Neutron bombardment | 11%
|
| H3 production | Neutron bombardment of lithium | 11%
|
| Products of fission | Neutrons | 11%
|
| Products of fusion | Neutrons | 11%
|
| Future extraction methods | Phosphate mining | 11%
|
| Fusion conditions | Plasma | 11%
|
| Future fission technology | Plutonium reactors | 11%
|
| Future extraction methods | Polymer adsorption | 11%
|
| Nuclear fission | Splitting nuclei of large atoms | 11%
|
| Future fission technology | Thorium reactors | 11%
|
| Fusion reactors | Toroidal | 11%
|
| Future fission technology | Uranium extraction | 11%
|
| Fusion conditions | Vacuum | 11%
|