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uranium 235 nucleus (blue), with a neutron (dark gray) simulation syntax. Control rods dark gray trying to reach 40 neutrons. Xenon poisoning is included here. Just like in an R.B.M.K reactor. After absorbing a neutron, at a later time the nuclei will have a chance to translation into the isotope of Xenon135. If you want to know why and how, go look about Decay chains and decay branches. Xenon has the property to strongly absorb neutrons. This is important for the Chernobyl ancient as you can effectively poison your reactor, i.e. make it unable to go up in power, because most loose neutrons just gets absorbed by Xenon instead of undergoing fission. In my model all elements that have undergone fission now has a chance of becoming Xenon at a later stage. I'll denote Xenon with the same dark gray color as the control rods. Once it's a Xenon element, the only way to undo that is for the element to absorb a neutron. This is what is to referred to as burning away Xenon.