Alphabetical Subject Index
Napthalene 34:063 | ||
National Research Fellows 16:226-258 | ||
Natrolite 06:006-012 014-029 | ||
Natural log (ln) | ||
Copper (ln Cu) 19:027 | ||
Gold (ln Au) 19:028 | ||
Silver (ln Ag) 19:026-027 | ||
Neodymium (60Nd) 29:246-247 42:079 | ||
60Nd75 17:137 | ||
60Nd78 42:081 | ||
60Nd82 17:283 | ||
60Nd86 17:282 | ||
60Nd86 17:281 | ||
60Nd88 17:280 | ||
62Nd90 17:286 | ||
Excited bands 31:205 | ||
Properties 27:060 | ||
Neon (20Ne) 31:047 056-057 182 32:028 082-083 110-111 260-261 45:042 | ||
Electric polarizability of 36:004 | ||
Metallic Radii 35:055 | ||
Ne22 at Be10 32:106-107 | ||
Properties 27:010 | ||
Rotation 22Ne 27:137 | ||
Rotational bands 20Ne 18:124 | ||
Structure 32:016 | ||
Nephelite 06:060-065 | ||
Neptunium (Np) | ||
Properties 27:093 | ||
Nesbet, R.K. 26:023 025 | ||
Neurospora 19:086 37:014 | ||
Neutron(s) 32:122 123 126 | ||
α, t distribution 25:212-213 | ||
Atoms with 40 to 50 25:222 | ||
Atoms with 82 25:250 | ||
Atoms with 126 25:251 | ||
Binding 18:087 | ||
Extra neutrons 25:076-078 102 195 196 | ||
Neutron and proton addition to αx 32:153 | ||
Number 90 | ||
Stability 25:214 | ||
Odd 25:168-172 | ||
Odd nuclei 31:084-085 | ||
Proton ratio 25:146 222-227 259 246 | ||
Structural number 32:252-253 | ||
Neutron curve 25:058 | ||
Neutron diffraction FeNi3 (iron nickel) 45:052-053 | ||
Neutron pairs 32:018-021 | ||
Adding pairs of neutrons 25:074-075 | ||
Binding energy 32:068 | ||
Energy of addition 32:067 | ||
Z-even nuclei 25:059 | ||
Neutron Powder diffraction 17:157-158 195 | ||
Nickel (Ni) 37:040-041 39:043 | ||
Antimony hydroxide (Ni(H20)2 Sb(OH)6) 44:130 132 134-147 | ||
Chloride (NiCl2) 17:030-031 | ||
Excited bands 31:205 | ||
Nickel diiridium (NiIr2) 44:003 | ||
Nickel-potassium sulfate (2NiSO4•K2SO4) 02:002 003 | ||
Nickel silicate (NiSi2) 32:250 35:014-015 | ||
Ni2(S2C-CPh)4 31:144 | ||
Nickel silicon (Ni3Si) 35:014-015 | ||
Nickel silicon vanadium (NiSiV) 29:102 104 106 116 122-124 126-127 | ||
Decagonal 17:134 | ||
Nickel strontium (NiSr) 29:006 | ||
Nickel tin (IV) chloride 03:114-116 116a-116b | ||
Nickel titanium (NiTi2) 29:049 | ||
Nickel thallium (Ni-Tl) 17:130 | ||
Nickel (X) L' cosa Ni(Tij-xVx)2 40:274 | ||
Properties 27:028 | ||
Nickelocene 23:205-207 | ||
Nicotinic acid 32:126-127 | ||
Niggliite (NiAs) 24:097 | ||
Niobide (NbO) 36:098 101 | ||
Niobium (Nb) 37:031 39:023 | ||
Nb3Al 32:246-247 249 | ||
Nb3Ga 32:248 | ||
Nb3Sb 32:251 | ||
Properties 27:041 | ||
Reconsideration of R1 32:249 | ||
Nitrogen (N) 23:229-234 32:055 37:114 | ||
Bonds 23:227 28:144-147 149 152-153 | ||
Disassociation energy 28:034-035 | ||
N14 32:193 254 | ||
Magnetic moment 31:082-083 | ||
Odd 32:080-082 | ||
Oxides 28:150-151 | ||
Properties 27:007 | ||
Stability 23:226 | ||
Triple bond to O 28:140-143 | ||
Nitron 35:012 | ||
Nobel Peace Prize 23:100 | ||
Noble metals 17:018 29:278 280-281 288 291-293 | ||
Nolen, J. A. | ||
Re: 1969 Coulomb energies paper 24:140 | ||
Nordheim's Rules 18:075 | ||
Exceptions 18:076 | ||
Notes | ||
Boracite 08:004 | ||
Covellite 08:061-064 | ||
Digermane (Ge2H6) 09:008-009 | ||
Hauerite 08:050-051 | ||
Molybdenum 08:138a | ||
4Ni2K2(SO4)3 02:003 | ||
Paper regarding praseodymium 35:282 | ||
Projects 34:002 | ||
Research problems 16:091-112 32:296 | ||
Spinel 08:005 | ||
Trigermane (Ge3H8) 09:008-009 | ||
X-ray diffraction data | ||
Pyrene 08:150-157 | ||
Nuclear abundances 25:113 | ||
Nuclear bomb tests 23:100 | ||
Nuclear core structures | ||
K40 32:198 199 | ||
Nature 25:231 232 | ||
Nuclear data tables | ||
Transition N=50 to 82 from 2+ 36:016-017 | ||
Nuclear fission 19:149-166 27:130-131 | ||
Nuclear functions 32:228 | ||
Nuclear magnetic moments 25:062 43:144-145 | ||
Nuclear sizes 25:274-275 | ||
Nuclear structure 19:241a-241i 25:013 27:129-137 32:084 170-171 | ||
Articles by Linus Pauling on nuclear structure | ||
October 1965: Reprint: "Structural basis of neutron and proton magic numbers in atomic nuclei", Nature, 208 (1965): 174 by Linus Pauling. 26:008 | ||
September 1965: Reprint: "Structural significance of the principal quantum number of nucleonic orbital wave functions", Phys. Rev. Lett. 15 (1965): 499 by Linus Pauling. 26:010 | ||
October 1965: Reprint: "The close-packed spheron model of atomic nuclei and its relation to the shell model", Proc. Natl. Acad. Sci. 54 (1965): 989-994, by Linus Pauling. 26:012 014 016 018 020 022 | ||
October 1955: Reprint: "Localized orbitals in nuclear structure", Phys. Rev. 100 (1955): 228-234, by R.K. Nesbet. 26:023 | ||
October 1965: Reprint: "The close-packed-spheron theory and nuclear fission", Science 150 (1965): 297-305, by Linus Pauling. 26:024 026 028 030-032 034 036 038-040 042 043 | ||
November 1965: Reprint: "Structural basis of the onset of nuclear deformation at neutron number 90", Phys. Rev. Lett. 15 (1965): 868-870, by Linus Pauling. 26:044 046-047 | ||
July 1966: Reprint: "The close-packed-spheron theory of nuclear structure and the neutron excess for stable nuclei (Dedicated to the seventieth anniversary of Professor Horia Hulubei)" Revue Roumain de Physique 11, no. 9,10 (1966): 825-833, by Linus Pauling. 26:048-053 055-057 | ||
1968: Reprint: "Geometric factors in nuclear structure", in Maria Skodowska-Curie: Centenary Lectures. Vienna: International Atomic Energy Agency, 1968, 83-88, by Linus Pauling. 26:058-064 | ||
December 1966: "Baryon resonances as rotational states", Proc. Natl. Acad. Sci. 56, no. 6 (1966): 1676-1677, by Linus Pauling. 26:066-067 | ||
December 1967: Reprint: Magnetic-moment evidence for the polyspheron structure of the lighter atomic nuclei. Proc. Natl. Acad. Sci. 58, no. 6 (1967): 2175-2178, by Linus Pauling. 26:068-070 | ||
June 1969: Reprint: Magnetic moments of antimony isotopes and other nuclei. Phys. Rev. 182 no. 4 (1969): 1357-1358, by Linus Pauling. 26:071 072 | ||
June 1969: Reprint: "Double-humped fission", Phys. Today 22, no. 6 (June 1969): 9,11, by Linus Pauling 26:073 | ||
November 1969: Reprint: "Orbiting clusters in atomic nuclei", Proc. Natl. Acad. Sci. 64 (1969): 807-809, by Linus Pauling 26:075-077 | ||
July 1974: Reprint: "Resonance between a prolate and superprolate of the 162 Er nucleus", Proc. Natl. Acad. Sci. 71, no. 7 (1974): 2905-2907, by Linus Pauling and John Blethen. 26:079 081 083 | ||
1975: Reprint: "Rotating clusters in nuclei", Can. J. Phys. 53 (1975): 1953-1964, by Linus Pauling and Arthur B. Robinson 26:084 086 088 090 094 096 098 100 102 104 106 108 110 | ||
November 1975: Reprint: "Structure of the excited band in 24Mg", Phys. Rev. Lett. 35 (1975): 1480-1482, by Linus Pauling. 26:112 113 | ||
January 1976: Reprint: "Structure of the excited rotational band in 40 Ca", Phys. Rev. Let. 36 (1976): 162-164, by Linus Pauling. 26:114-116 | ||
October 1980: Reprint: "Superprolate shape of the spontaneous-fission isomer 24OAmm", Phys. Rev. C 22 (1980): 1585-1587, by Linus Pauling. 26:117 | ||
September 1981: "Changes in structure of nuclei between magic numbers 50 and 82 as indicated by a rotating cluster analysis of the energy values of the first 2+ excited states of isotopes of cadmium, tin, and tellurium", Proc. Natl. Acad. Sci. 78 (1981): 5296-5298, by Linus Pauling. 26:119 | ||
November 1982: "Rules governing the composition of revolving clusters in quasiband and prolate-deformation states of atomic nuclei", Proc. Natl. Acad. Sci. 79 (1982): 7073-7075, by Linus Pauling. 26:121 | ||
June 1987: "g factor of the 21+ state in 140Ba and 142Ba", Phys. Rev. C 35 (1987): 2336, by Linus Pauling. 26:122 | ||
March 1987: Reprint: "Discussion of the coexisting O+ band in the doubly closed subshell 96Zr on the basis of the polyspheron model", Phys. Rev. C 35 (1987): 1162-1163, by Linus Pauling. 26:123 | ||
June 1990: Reprint: "Regularities in the sequences of the number of nucleons in the revolving clusters for the ground-state energy bands of the even-even nuclei with neutron number equal to or greater than 126", Proc. Natl. Acad. Sci. 87 (1990): 4435-4438, by Linus Pauling. 26:123 | ||
February 1991: Reprint: "Transition from one revolving cluster to two revolving clusters in the ground-state rotational bands of nuclei in the lanthanon region", Proc. Natl. Acad. Sci. 88 (1991): 820-823, by Linus Pauling. 26:125 | ||
May 1991: Reprint: "Analysis of the energy of the first four excited states of the ground-state rotational bands of the even-even lanthanon nuclei (58Ce to 70Yb) with the model of a single cluster of nucleons revolving about a sphere", Proc. Natl. Acad. Sci. 88 (1991): 4401-4403, by Linus Pauling. 26:127 | ||
Calculations by John Blethen 18:018-044 | ||
Nuclei 17:277 19:070-071 23:274-275 27:130 29:088 177 31:022-023 035 050 055 070 32:269 35:199 210 42:132 133 134 135 136 137 140-141 43:001-003 005-006 008-010 012-021 024 028-029 032 44:007 014 030-032 058 070 092-093 46:062 | ||
50-82 + cap 35:212 | ||
α-t or α-τ resonance 25:055 | ||
Anisotropic 25:215 | ||
Anomalous 45:008-013 015 | ||
Argon (Ar) 43:071 114 | ||
Assignment of core structures 25:266-267 | ||
Average values for R for given N 43:120 122-123 | ||
Barium (Ba) 42:082 43:045 118-119 121 | ||
13856Ba82 17:284 | ||
14056Ba84 17:281 | ||
14256Ba86 17:282 | ||
14456Ba88 17:280 | ||
14656Ba90 17:286 | ||
Binding energy 31:024 062-063 066-067 073 32:060-061 | ||
Carbon (C) 43:131 | ||
Cadmium (Cd) 43:056 | ||
Calcium (Ca) 43:071 114 | ||
14258Ca84 17:281 | ||
Centrifugal stretching of nuclei 28:120 | ||
Cerium (Ce) 43:046 050 | ||
14058Ce82 17:284 | ||
14658Ce88 17:280 | ||
14858Ce90 17:286 | ||
15058Ce92 42:013 082 | ||
Chromium (Cr) 43:068 117 | ||
Cobalt (Co) | ||
14458Co86 17:282 | ||
Core structure 32:168 | ||
Assignment 25:248-249 | ||
Cubic nuclei | ||
Magic numbers in 28:084 | ||
Curium (Cm) | ||
24896Cm152 42:010 | ||
Daughter nuclei | ||
Distance between 25:236 | ||
Deformed 19:170-171 32:070 078 079 31:091 093 256 257 | ||
Dimensions 28:160-163 | ||
Dysprosium (Dy) 42:085 43:041 049 | ||
14866Dy82 17:283 | ||
15066Dy84 17:284 | ||
15266Dy86 17:282 | ||
15466Dy88 17:279 | ||
15666Dy90 17:285 | ||
Energy 32:003 | ||
Polyhelic nuclei 25:012 | ||
Erbium (Er) 43:049 | ||
15068Er82 17:283 | ||
15268Er84 17:284 | ||
15468Er86 17:282 | ||
15668Er88 17:279 | ||
15868Er90 17:288 42:073 085 | ||
16068Er92 17:287 292 | ||
16268Er94 17:296 | ||
170Er 42:006 | ||
Even-even nuclei | ||
Negative parity states 25:216 | ||
Excited states 31:028-031 32:004 023 | ||
Gadolinium (Gd) 43:040 | ||
14664Gd82 17:283 | ||
14864Gd84 17:281 | ||
15064Gd86 17:282 | ||
15264Gd88 17:279 | ||
15464Gd90 17:286 | ||
Germanium (Ge) 43:116 130 | ||
Hafnium (Hf) 43:054 055 | ||
Helions 25:152-153 | ||
Helion-triton formula 25:161 | ||
Hyperdeformed 44:214 | ||
Inner core 25:167 | ||
Internucleonic forces 25:052-054 | ||
Iron (Fe) 43:069 117 | ||
J=L-1/2 18:071 | ||
Kinetic energy 31:060 | ||
Krypton (Kr) 43:065 | ||
Layer Structure of 32:127 | ||
Light | ||
Coulomb energy 32:152 | ||
Structure 32:131 | ||
Light nuclei 18:070 085 086 24:136 138 139 25:048-050 | ||
16O 18:123 | ||
Magic numbers in cubic nuclei 28:084 | ||
Magnetic moments 18:074 | ||
Magnesium (Mg) 43:070 115 | ||
2417Mg12 42:013 | ||
Mercury (Hg) 42:077 | ||
Isotopes 19:239-240 | ||
Molybdenum (Mo) 43:060 | ||
10642Mo64 42:013 | ||
Moments for odd-odd nuclei 32:146 | ||
Multiplets 31:275 33:041-042 | ||
Neodymium (Nd) 43:042 046 050 | ||
14260Nd82 17:283 | ||
14060Nd86 17:282 | ||
14460Nd84 17:281 | ||
14860Nd88 17:280 | ||
15062Nd90 17:286 | ||
Structure 25:237-245 | ||
Strontium (Sr) 43:062 | ||
Structure 27:124-137 | ||
Light nuclei 32:131 | ||
Atomic nuclei 26:054 | ||
Dineutron-heloin-oxygon theory 25:010-011 | ||
Stable nuclei 25:237-245 | ||
Sulfur (S) 43:071 114 | ||
Summary 29:089 | ||
Superdeforme 44:018-026 029 040 | ||
Superprolate structures of 36:015 | ||
Tellurium (Te) 42:082 43:047 | ||
13452Te82 17:284 | ||
13652Te84 17:281 | ||
Theory 31:200-201 | ||
Tin (Sn) 42:082 43:044 | ||
13250Sn82 17:284 | ||
Titanium (Ti) 43:117 | ||
Transuranium 24:124-127 132-133 | ||
Tritons 25:152-153 | ||
Two-layer nuclei 18:069 | ||
Tungsten (W) 43:048 054 055 | ||
17074W96 17:293 | ||
Values of E4+/E2+ (electron energy) 35:090 | ||
With n Clusters 43:006 | ||
Xenon (Xe) 42:082-083 43:045 082 | ||
13654Xe82 17:284 | ||
13854Xe84 17:281 | ||
14054Xe86 17:282 | ||
Ytterbium (Yb) 42:085 43:040 050 051 | ||
15270Yb82 17:283 | ||
15670Yb86 17:281 | ||
15870Yb88 17:279 | ||
16070Yb90 17:291 | ||
Z 43:115 | ||
Zinc (Zn) 43:066 116 | ||
Zirconium (Zr) 43:063 | ||
Nucleons | ||
Charge 23:264 | ||
Packing 25:191-192 | ||
Volume 25:206 | ||
Nucleus | ||
Doubly magic 310 126 32:095 |