KnowraHeavy waterLinked fromLinked fromThe 16 pages that link to Heavy water, each with the reason it gives.All 16Broader topic 3Related 9Compared with 4WaterCompared with: It preserves water’s basic chemistry while exhibiting measurable isotope-dependent physical differences.HydrogenRelated: This hydrogen isotope compound serves as a neutron moderator in some nuclear reactors.DeuteriumBroader topic: It is the best-known bulk compound made with deuterium.Sudbury Neutrino ObservatoryRelated: Deuterium nuclei enabled SNO’s distinctive charged-current and neutral-current measurements.Isotopes of hydrogenRelated: Its nuclear and physical properties make deuterium useful in reactors and experiments.Isotope separationRelated: Its production can require separating deuterium from ordinary hydrogen isotopes.Liquid waterCompared with: Its isotopic composition changes physical properties while preserving a closely related liquid structure.ProtiumRelated: Its contrast with ordinary water highlights the chemical effects of substituting protium with deuterium.Harold UreyRelated: The discovery of deuterium made heavy water a measurable substance with scientific and industrial uses.Arthur B. McDonaldRelated: Deuterium enabled the observatory to detect solar neutrinos through both charged- and neutral-current reactions.Hydrogen chalcogenideBroader topic: It is an isotopic form of the family’s most familiar compound, used in nuclear reactors and research.Tritiated waterCompared with: Heavy water is isotopically altered but does not contain radioactive tritium.Pressurized heavy-water reactorRelated: Its low neutron absorption lets the reactor sustain fission with natural uranium.HydronRelated: Deuterium hydrons alter reaction rates and equilibria compared with protium hydrons.Properties of waterBroader topic: Isotopic substitution changes water’s physical properties without changing its basic molecular bonding.Semiheavy waterCompared with: Its two deuterium atoms distinguish it from semiheavy water.
KnowraHeavy waterLinked fromLinked fromThe 16 pages that link to Heavy water, each with the reason it gives.All 16Broader topic 3Related 9Compared with 4WaterCompared with: It preserves water’s basic chemistry while exhibiting measurable isotope-dependent physical differences.HydrogenRelated: This hydrogen isotope compound serves as a neutron moderator in some nuclear reactors.DeuteriumBroader topic: It is the best-known bulk compound made with deuterium.Sudbury Neutrino ObservatoryRelated: Deuterium nuclei enabled SNO’s distinctive charged-current and neutral-current measurements.Isotopes of hydrogenRelated: Its nuclear and physical properties make deuterium useful in reactors and experiments.Isotope separationRelated: Its production can require separating deuterium from ordinary hydrogen isotopes.Liquid waterCompared with: Its isotopic composition changes physical properties while preserving a closely related liquid structure.ProtiumRelated: Its contrast with ordinary water highlights the chemical effects of substituting protium with deuterium.Harold UreyRelated: The discovery of deuterium made heavy water a measurable substance with scientific and industrial uses.Arthur B. McDonaldRelated: Deuterium enabled the observatory to detect solar neutrinos through both charged- and neutral-current reactions.Hydrogen chalcogenideBroader topic: It is an isotopic form of the family’s most familiar compound, used in nuclear reactors and research.Tritiated waterCompared with: Heavy water is isotopically altered but does not contain radioactive tritium.Pressurized heavy-water reactorRelated: Its low neutron absorption lets the reactor sustain fission with natural uranium.HydronRelated: Deuterium hydrons alter reaction rates and equilibria compared with protium hydrons.Properties of waterBroader topic: Isotopic substitution changes water’s physical properties without changing its basic molecular bonding.Semiheavy waterCompared with: Its two deuterium atoms distinguish it from semiheavy water.