000 01421nam a2200181Ia 4500
999 _c171820
_d171820
020 _a9780471384373
040 _cCUS
082 _a551.9
_bFAU/I
100 _aFaure, Gunter
_91686
245 0 _aIsotopes: principles and applications/
_c Gunter Faure and Teresa M. Mensing.
250 _a3rd ed.
260 _aNew Jersey:
_bJohn wiley & sons,
_c2005.
300 _axxvii, 897 p. :
_bill. ;
_c26 cm.
505 _aPart I Principles of Atomic Physics 1 Nuclear Systematics 2 Decay Modes of Radionuclides 3 Radioactive Decay 4 Geochronometry Part II Radiogenic Isotope Geochronometers 5 The Rb-Sr Method 6 The K-Ar Method 7 The ⁴⁰Ar*/³⁹Ar Method 8 The K-Ca Method 9 The Sm-Nd Method 10 The U-Pb, Th-Pb, and Pb-Pb Methods 11 The Common-Lead Method 12 The Lu-Hf Method 13 The Re-Os Method 14 The La-Ce Method 15 The La-Ba Method Part III Geochemistry of Radiogenic Isotopes 16 Mixing Theory 17 Origin of Igneous Rocks 18 Water and Sediment 19 The Oceans Part IV Short-Lived Radionuclides 20 Uranium/Thorium-Series Disequilibria 21 Helium and Tritium 22 Radiation-Damage Methods 23 Cosmogenic Radionuclides 24 Extinct Radionuclides 25 Thermonuclear Radionuclides Part V Fractionation of Stable Isotopes 26 Hydrogen and Oxygen 27 Carbon 28 Nitrogen 29 Sulfur 30 Boron and Other Elements
650 _aIsotope geology
_91687
700 _a Mensing, Teresa M.
_922939
942 _cSC79
_01