<?xml version="1.0"?>
<periodic_table>

  <atom>
    <name>Actinium</name>
    <atomic_weight>227</atomic_weight>
    <atomic_number>89</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3470</boiling_point>
    <symbol>Ac</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      10.07
    </density>
    <electron_configuration>[Rn] 6d1 7s2 </electron_configuration>
    <electronegativity>1.1</electronegativity>
    <atomic_radius units="Angstroms">1.88</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      22.5
    </atomic_volume>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.12
    </specific_heat_capacity>
    <ionization_potential>5.17</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      12
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Aluminum</name>
    <atomic_weight>26.98154</atomic_weight>
    <atomic_number>13</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">2740</boiling_point>
    <melting_point units="Kelvin">933.5</melting_point>
    <symbol>Al</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.7
    </density>
    <electron_configuration>[Ne] 3s2 p1 </electron_configuration>
    <covalent_radius units="Angstroms">1.18</covalent_radius>
    <electronegativity>1.61</electronegativity>
    <atomic_radius units="Angstroms">1.43</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      290.8
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      10.7
    </heat_of_fusion>
    <ionization_potential>5.986</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.9
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      237
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Americium</name>
    <atomic_weight>243</atomic_weight>
    <atomic_number>95</atomic_number>
    <oxidation_states>6, 5, 4, 3</oxidation_states>
    <boiling_point units="Kelvin">2880</boiling_point>
    <melting_point units="Kelvin">1449</melting_point>
    <symbol>Am</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      13.7
    </density>
    <electron_configuration>[Rn] 5f7 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <atomic_radius units="Angstroms">1.84</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      20.8
    </atomic_volume>
    <ionization_potential>6</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Antimony</name>
    <atomic_weight>121.757</atomic_weight>
    <atomic_number>51</atomic_number>
    <oxidation_states>+/-3, 5</oxidation_states>
    <boiling_point units="Kelvin">1860</boiling_point>
    <melting_point units="Kelvin">903.91</melting_point>
    <symbol>Sb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.69
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p3 </electron_configuration>
    <covalent_radius units="Angstroms">1.4</covalent_radius>
    <electronegativity>2.05</electronegativity>
    <atomic_radius units="Angstroms">1.59</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      67.97
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.4
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      19.83
    </heat_of_fusion>
    <ionization_potential>8.641</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.207
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      24.3
    </thermal_conductivity>
  </atom>
  
  <atom state="gas">
    <name>Argon</name>
    <atomic_weight>39.948</atomic_weight>
    <atomic_number>18</atomic_number>
    <boiling_point units="Kelvin">87.45</boiling_point>
    <melting_point units="Kelvin">83.95</melting_point>
    <symbol>Ar</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.784
    </density>
    <electron_configuration>[Ne] 3s2 p6 </electron_configuration>
    <covalent_radius units="Angstroms">0.98</covalent_radius>
    <electronegativity>0</electronegativity>
    <atomic_radius units="Angstroms">0.88</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      6.506
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      24.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      1.188
    </heat_of_fusion>
    <ionization_potential>15.759</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.52
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.0177
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Arsenic</name>
    <atomic_weight>74.9216</atomic_weight>
    <atomic_number>33</atomic_number>
    <oxidation_states>+/-3, 5</oxidation_states>
    <boiling_point units="Kelvin">876</boiling_point>
    <melting_point units="Kelvin">1090</melting_point>
    <symbol>As</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5.78
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p3 </electron_configuration>
    <covalent_radius units="Angstroms">1.2</covalent_radius>
    <electronegativity>2.18</electronegativity>
    <atomic_radius units="Angstroms">1.39</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      32.4
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      13.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      27.7
    </heat_of_fusion>
    <ionization_potential>9.81</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.33
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      50
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Astatine</name>
    <atomic_weight>210</atomic_weight>
    <atomic_number>85</atomic_number>
    <oxidation_states>+/-1, 3, 5, 7</oxidation_states>
    <boiling_point units="Kelvin">610</boiling_point>
    <melting_point units="Kelvin">575</melting_point>
    <symbol>At</symbol>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p5 </electron_configuration>
    <covalent_radius units="Angstroms">1.47</covalent_radius>
    <electronegativity>2.2</electronegativity>
    <atomic_radius units="Angstroms">1.45</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      30
    </heat_of_vaporization>
    <heat_of_fusion units="kilojoules/mole">
      12
    </heat_of_fusion>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      1.7
    </thermal_conductivity>
  </atom>

  <atom state="solid">
    <name>Gold</name>
    <atomic_weight>196.9665</atomic_weight>
    <atomic_number>79</atomic_number>
    <oxidation_states>3, 1</oxidation_states>
    <boiling_point units="Kelvin">3130</boiling_point>
    <melting_point units="Kelvin">1337.58</melting_point>
    <symbol>Au</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      19.3
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.34</covalent_radius>
    <electronegativity>2.54</electronegativity>
    <atomic_radius units="Angstroms">1.46</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      324.43
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      12.36
    </heat_of_fusion>
    <ionization_potential>9.225</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.128
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      317
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Boron</name>
    <atomic_weight>10.811</atomic_weight>
    <atomic_number>5</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">4275</boiling_point>
    <melting_point units="Kelvin">2365</melting_point>
    <symbol>B</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.34
    </density>
    <electron_configuration>1s2 2s2 p1 </electron_configuration>
    <covalent_radius units="Angstroms">0.82</covalent_radius>
    <electronegativity>2.04</electronegativity>
    <atomic_radius units="Angstroms">0.98</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      507.8
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      4.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      22.6
    </heat_of_fusion>
    <ionization_potential>8.298</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.026
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      27
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Barium</name>
    <atomic_weight>137.33</atomic_weight>
    <atomic_number>56</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">2078</boiling_point>
    <melting_point units="Kelvin">1002</melting_point>
    <symbol>Ba</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      3.59
    </density>
    <electron_configuration>[Xe] 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.98</covalent_radius>
    <electronegativity>0.89</electronegativity>
    <atomic_radius units="Angstroms">2.22</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      140.2
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      39
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      8.01
    </heat_of_fusion>
    <ionization_potential>5.212</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.204
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      18.4
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Beryllium</name>
    <atomic_weight>9.01218</atomic_weight>
    <atomic_number>4</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">3243</boiling_point>
    <melting_point units="Kelvin">1560</melting_point>
    <symbol>Be</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.85
    </density>
    <electron_configuration>1s2 2s2 </electron_configuration>
    <covalent_radius units="Angstroms">0.9</covalent_radius>
    <electronegativity>1.57</electronegativity>
    <atomic_radius units="Angstroms">1.12</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      297
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11.71
    </heat_of_fusion>
    <ionization_potential>9.322</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.825
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      200
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Bohrium</name>
    <atomic_weight>262</atomic_weight>
    <atomic_number>107</atomic_number>
    <symbol>Bh</symbol>
    <electron_configuration>[Rn] 5f14 6d5 7s2 </electron_configuration>
  </atom>

  <atom state="solid">
    <name>Bismuth</name>
    <atomic_weight>208.9804</atomic_weight>
    <atomic_number>83</atomic_number>
    <oxidation_states>3, 5</oxidation_states>
    <boiling_point units="Kelvin">1837</boiling_point>
    <melting_point units="Kelvin">544.59</melting_point>
    <symbol>Bi</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.75
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p3 </electron_configuration>
    <covalent_radius units="Angstroms">1.46</covalent_radius>
    <electronegativity>2.02</electronegativity>
    <atomic_radius units="Angstroms">1.7</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      179
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      21.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11
    </heat_of_fusion>
    <ionization_potential>7.289</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.122
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      7.87
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Berkelium</name>
    <atomic_weight>247</atomic_weight>
    <atomic_number>97</atomic_number>
    <oxidation_states>4, 3</oxidation_states>
    <symbol>Bk</symbol>
    <electron_configuration>[Rn] 5f9 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.23</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Bromine</name>
    <atomic_weight>79.904</atomic_weight>
    <atomic_number>35</atomic_number>
    <oxidation_states>+/-1, 5</oxidation_states>
    <boiling_point units="Kelvin">331.85</boiling_point>
    <melting_point units="Kelvin">265.95</melting_point>
    <symbol>Br</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      3.12
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p5 </electron_configuration>
    <covalent_radius units="Angstroms">1.14</covalent_radius>
    <electronegativity>2.96</electronegativity>
    <atomic_radius units="Angstroms">1.12</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      14.725
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      23.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      5.286
    </heat_of_fusion>
    <ionization_potential>11.814</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.226
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.122
    </thermal_conductivity>
  </atom>

  <atom state="solid">
    <name>Carbon</name>
    <atomic_weight>12.011</atomic_weight>
    <atomic_number>6</atomic_number>
    <oxidation_states>+/-4, 2</oxidation_states>
    <boiling_point units="Kelvin">5100</boiling_point>
    <melting_point units="Kelvin">3825</melting_point>
    <symbol>C</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.26
    </density>
    <electron_configuration>1s2 2s2 p2 </electron_configuration>
    <covalent_radius units="Angstroms">0.77</covalent_radius>
    <electronegativity>2.55</electronegativity>
    <atomic_radius units="Angstroms">0.91</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      715
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      5.3
    </atomic_volume>
    <ionization_potential>11.26</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.709
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      155
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Calcium</name>
    <atomic_weight>40.078</atomic_weight>
    <atomic_number>20</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1757</boiling_point>
    <melting_point units="Kelvin">1112</melting_point>
    <symbol>Ca</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.55
    </density>
    <electron_configuration>[Ar] 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.74</covalent_radius>
    <electronegativity>1</electronegativity>
    <atomic_radius units="Angstroms">1.97</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      154.67
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      29.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      8.53
    </heat_of_fusion>
    <ionization_potential>6.113</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.647
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      200
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Cadmium</name>
    <atomic_weight>112.41</atomic_weight>
    <atomic_number>48</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1040</boiling_point>
    <melting_point units="Kelvin">594.26</melting_point>
    <symbol>Cd</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.65
    </density>
    <electron_configuration>[Kr] 4d10 5s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.41</covalent_radius>
    <electronegativity>1.69</electronegativity>
    <atomic_radius units="Angstroms">1.71</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      99.87
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      13.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      6.07
    </heat_of_fusion>
    <ionization_potential>8.993</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.233
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      96.8
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Cerium</name>
    <atomic_weight>140.12</atomic_weight>
    <atomic_number>58</atomic_number>
    <oxidation_states>3, 4</oxidation_states>
    <boiling_point units="Kelvin">3715</boiling_point>
    <melting_point units="Kelvin">1071</melting_point>
    <symbol>Ce</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.77
    </density>
    <electron_configuration>[Xe] 4f1 5d1 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.65</covalent_radius>
    <electronegativity>1.12</electronegativity>
    <atomic_radius units="Angstroms">1.81</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      313.8
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      21
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      9.2
    </heat_of_fusion>
    <ionization_potential>5.47</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.19
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      11.4
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Californium</name>
    <atomic_weight>251</atomic_weight>
    <atomic_number>98</atomic_number>
    <oxidation_states>3</oxidation_states>
    <melting_point units="Kelvin">1170</melting_point>
    <symbol>Cf</symbol>
    <electron_configuration>[Rn] 5f10 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.3</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Chlorine</name>
    <atomic_weight>35.4527</atomic_weight>
    <atomic_number>17</atomic_number>
    <oxidation_states>+/-1, 3, 5, 7</oxidation_states>
    <boiling_point units="Kelvin">239.18</boiling_point>
    <melting_point units="Kelvin">172.17</melting_point>
    <symbol>Cl</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      3.214
    </density>
    <electron_configuration>[Ne] 3s2 p5 </electron_configuration>
    <covalent_radius units="Angstroms">0.99</covalent_radius>
    <electronegativity>3.16</electronegativity>
    <atomic_radius units="Angstroms">0.97</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      10.2
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      3.21
    </heat_of_fusion>
    <ionization_potential>12.967</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.48
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.0089
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Curium</name>
    <atomic_weight>247</atomic_weight>
    <atomic_number>96</atomic_number>
    <oxidation_states>3</oxidation_states>
    <melting_point units="Kelvin">1620</melting_point>
    <symbol>Cm</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      13.5
    </density>
    <electron_configuration>[Rn] 5f7 6d1 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <atomic_volume units="cubic centimeters/mole">
      18.3
    </atomic_volume>
    <ionization_potential>6.02</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Cobalt</name>
    <atomic_weight>58.9332</atomic_weight>
    <atomic_number>27</atomic_number>
    <oxidation_states>2, 3</oxidation_states>
    <boiling_point units="Kelvin">3143</boiling_point>
    <melting_point units="Kelvin">1768</melting_point>
    <symbol>Co</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.9
    </density>
    <electron_configuration>[Ar] 3d7 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.16</covalent_radius>
    <electronegativity>1.88</electronegativity>
    <atomic_radius units="Angstroms">1.25</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      373.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      6.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      16.19
    </heat_of_fusion>
    <ionization_potential>7.86</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.421
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      100
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Chromium</name>
    <atomic_weight>51.996</atomic_weight>
    <atomic_number>24</atomic_number>
    <oxidation_states>6, 3, 2</oxidation_states>
    <boiling_point units="Kelvin">2945</boiling_point>
    <melting_point units="Kelvin">2130</melting_point>
    <symbol>Cr</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.19
    </density>
    <electron_configuration>[Ar] 3d5 4s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.18</covalent_radius>
    <electronegativity>1.66</electronegativity>
    <atomic_radius units="Angstroms">1.3</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      339.5
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      7.23
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      20
    </heat_of_fusion>
    <ionization_potential>6.766</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.449
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      93.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Cesium</name>
    <atomic_weight>132.9054</atomic_weight>
    <atomic_number>55</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">944</boiling_point>
    <melting_point units="Kelvin">301.54</melting_point>
    <symbol>Cs</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.87
    </density>
    <electron_configuration>[Xe] 6s1 </electron_configuration>
    <covalent_radius units="Angstroms">2.35</covalent_radius>
    <electronegativity>0.79</electronegativity>
    <atomic_radius units="Angstroms">2.67</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      67.74
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      70
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.092
    </heat_of_fusion>
    <ionization_potential>3.894</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.24
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      35.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Copper</name>
    <atomic_weight>63.546</atomic_weight>
    <atomic_number>29</atomic_number>
    <oxidation_states>2, 1</oxidation_states>
    <boiling_point units="Kelvin">2840</boiling_point>
    <melting_point units="Kelvin">1356.6</melting_point>
    <symbol>Cu</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.96
    </density>
    <electron_configuration>[Ar] 3d10 4s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.17</covalent_radius>
    <electronegativity>1.9</electronegativity>
    <atomic_radius units="Angstroms">1.28</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      300.5
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      7.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      13.14
    </heat_of_fusion>
    <ionization_potential>7.726</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.385
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      401
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Dubnium</name>
    <atomic_weight>262</atomic_weight>
    <atomic_number>105</atomic_number>
    <symbol>Db</symbol>
    <electron_configuration>[Rn] 5f14 6d3 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Dysprosium</name>
    <atomic_weight>162.5</atomic_weight>
    <atomic_number>66</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">2840</boiling_point>
    <melting_point units="Kelvin">1685</melting_point>
    <symbol>Dy</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.55
    </density>
    <electron_configuration>[Xe] 4f10 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.59</covalent_radius>
    <electronegativity>1.22</electronegativity>
    <atomic_radius units="Angstroms">1.8</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      230
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      19
    </atomic_volume>
    <ionization_potential>5.93</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.173
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Erbium</name>
    <atomic_weight>167.26</atomic_weight>
    <atomic_number>68</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3140</boiling_point>
    <melting_point units="Kelvin">1802</melting_point>
    <symbol>Er</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.07
    </density>
    <electron_configuration>[Xe] 4f12 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.57</covalent_radius>
    <electronegativity>1.24</electronegativity>
    <atomic_radius units="Angstroms">1.78</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      292.88
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.4
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      17.15
    </heat_of_fusion>
    <ionization_potential>6.101</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.168
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      14.3
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Einsteinium</name>
    <atomic_weight>252</atomic_weight>
    <atomic_number>99</atomic_number>
    <melting_point units="Kelvin">1130</melting_point>
    <symbol>Es</symbol>
    <electron_configuration>[Rn] 5f11 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.42</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Europium</name>
    <atomic_weight>151.965</atomic_weight>
    <atomic_number>63</atomic_number>
    <oxidation_states>3, 2</oxidation_states>
    <boiling_point units="Kelvin">1800</boiling_point>
    <melting_point units="Kelvin">1095</melting_point>
    <symbol>Eu</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5.24
    </density>
    <electron_configuration>[Xe] 4f7 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.85</covalent_radius>
    <electronegativity>1.2</electronegativity>
    <atomic_radius units="Angstroms">1.99</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      175.73
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      28.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      9.21
    </heat_of_fusion>
    <ionization_potential>5.67</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.182
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      13.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Fluorine</name>
    <atomic_weight>18.9984</atomic_weight>
    <atomic_number>9</atomic_number>
    <oxidation_states>-1</oxidation_states>
    <boiling_point units="Kelvin">85</boiling_point>
    <melting_point units="Kelvin">53.55</melting_point>
    <symbol>F</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.696
    </density>
    <electron_configuration>1s2 2s2 p5 </electron_configuration>
    <covalent_radius units="Angstroms">0.72</covalent_radius>
    <electronegativity>3.98</electronegativity>
    <atomic_radius units="Angstroms">0.57</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      3.2698
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      17.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.26
    </heat_of_fusion>
    <ionization_potential>17.422</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.824
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.0279
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Iron</name>
    <atomic_weight>55.847</atomic_weight>
    <atomic_number>26</atomic_number>
    <oxidation_states>2, 3</oxidation_states>
    <boiling_point units="Kelvin">3023</boiling_point>
    <melting_point units="Kelvin">1808</melting_point>
    <symbol>Fe</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.874
    </density>
    <electron_configuration>[Ar] 3d6 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.17</covalent_radius>
    <electronegativity>1.83</electronegativity>
    <atomic_radius units="Angstroms">1.26</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      349.5
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      7.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      13.8
    </heat_of_fusion>
    <ionization_potential>7.87</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.449
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      80.2
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Fermium</name>
    <atomic_weight>257</atomic_weight>
    <atomic_number>100</atomic_number>
    <melting_point units="Kelvin">1800</melting_point>
    <symbol>Fm</symbol>
    <electron_configuration>[Rn] 5f12 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.5</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Francium</name>
    <atomic_weight>223</atomic_weight>
    <atomic_number>87</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">950</boiling_point>
    <melting_point units="Kelvin">300</melting_point>
    <symbol>Fr</symbol>
    <electron_configuration>[Rn] 7s1 </electron_configuration>
    <electronegativity>0.7</electronegativity>
    <atomic_radius units="Angstroms">2.7</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      64
    </heat_of_vaporization>
    <heat_of_fusion units="kilojoules/mole">
      2.1
    </heat_of_fusion>
    <ionization_potential>0</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      15
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Gallium</name>
    <atomic_weight>69.723</atomic_weight>
    <atomic_number>31</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">2478</boiling_point>
    <melting_point units="Kelvin">302.92</melting_point>
    <symbol>Ga</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5.91
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p1 </electron_configuration>
    <covalent_radius units="Angstroms">1.26</covalent_radius>
    <electronegativity>1.81</electronegativity>
    <atomic_radius units="Angstroms">1.41</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      256.06
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      11.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      5.59
    </heat_of_fusion>
    <ionization_potential>5.999</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.371
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      40.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Gadolinium</name>
    <atomic_weight>157.25</atomic_weight>
    <atomic_number>64</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3545</boiling_point>
    <melting_point units="Kelvin">1585</melting_point>
    <symbol>Gd</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.9
    </density>
    <electron_configuration>[Xe] 4f7 5d1 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.61</covalent_radius>
    <electronegativity>1.2</electronegativity>
    <atomic_radius units="Angstroms">1.8</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      311.71
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      19.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      10.46
    </heat_of_fusion>
    <ionization_potential>6.15</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.236
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Germanium</name>
    <atomic_weight>72.61</atomic_weight>
    <atomic_number>32</atomic_number>
    <oxidation_states>4</oxidation_states>
    <boiling_point units="Kelvin">3107</boiling_point>
    <melting_point units="Kelvin">1211.5</melting_point>
    <symbol>Ge</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5.32
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p2 </electron_configuration>
    <covalent_radius units="Angstroms">1.22</covalent_radius>
    <electronegativity>2.01</electronegativity>
    <atomic_radius units="Angstroms">1.37</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      334.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      13.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      31.8
    </heat_of_fusion>
    <ionization_potential>7.899</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.32
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      59.9
    </thermal_conductivity>
  </atom>

  <atom state="gas">
    <name>Hydrogen</name>
    <atomic_weight>1.00794</atomic_weight>
    <atomic_number>1</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">20.28</boiling_point>
    <melting_point units="Kelvin">13.81</melting_point>
    <symbol>H</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.0899
    </density>
    <electron_configuration>1s1 </electron_configuration>
    <covalent_radius units="Angstroms">0.32</covalent_radius>
    <electronegativity>2.1</electronegativity>
    <atomic_radius units="Angstroms">2.08</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      0.4581
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      14.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.0585
    </heat_of_fusion>
    <ionization_potential>13.598</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      14.304
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.1815
    </thermal_conductivity>
  </atom>

  <atom state="gas">
    <name>Helium</name>
    <atomic_weight>4.0026</atomic_weight>
    <atomic_number>2</atomic_number>
    <boiling_point units="Kelvin">4.216</boiling_point>
    <melting_point units="Kelvin">0.95</melting_point>
    <symbol>He</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.1785
    </density>
    <electron_configuration>1s2 </electron_configuration>
    <covalent_radius units="Angstroms">0.93</covalent_radius>
    <electronegativity>0</electronegativity>
    <heat_of_vaporization units="kilojoules/mole">
      0.084
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      31.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.021
    </heat_of_fusion>
    <ionization_potential>24.587</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      5.193
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.152
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Hafnium</name>
    <atomic_weight>178.49</atomic_weight>
    <atomic_number>72</atomic_number>
    <oxidation_states>4</oxidation_states>
    <boiling_point units="Kelvin">4875</boiling_point>
    <melting_point units="Kelvin">2504</melting_point>
    <symbol>Hf</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      13.31
    </density>
    <electron_configuration>[Xe] 4f14 5d2 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.44</covalent_radius>
    <electronegativity>1.3</electronegativity>
    <atomic_radius units="Angstroms">1.67</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      661.07
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      13.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      21.76
    </heat_of_fusion>
    <ionization_potential>6.65</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.14
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      23
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Mercury</name>
    <atomic_weight>200.59</atomic_weight>
    <atomic_number>80</atomic_number>
    <oxidation_states>2, 1</oxidation_states>
    <boiling_point units="Kelvin">629.88</boiling_point>
    <melting_point units="Kelvin">234.31</melting_point>
    <symbol>Hg</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      13.55
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.49</covalent_radius>
    <electronegativity>2</electronegativity>
    <atomic_radius units="Angstroms">1.6</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      59.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      14.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.292
    </heat_of_fusion>
    <ionization_potential>10.437</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.140
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      8.34
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Holmium</name>
    <atomic_weight>164.9303</atomic_weight>
    <atomic_number>67</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">2968</boiling_point>
    <melting_point units="Kelvin">1747</melting_point>
    <symbol>Ho</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.8
    </density>
    <electron_configuration>[Xe] 4f11 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.58</covalent_radius>
    <electronegativity>1.23</electronegativity>
    <atomic_radius units="Angstroms">1.79</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      251.04
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11.06
    </heat_of_fusion>
    <ionization_potential>6.02</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.165
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      16.2
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Hassium</name>
    <atomic_weight>265</atomic_weight>
    <atomic_number>108</atomic_number>
    <symbol>Hs</symbol>
    <electron_configuration>[Rn] 5f14 6d6 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Iodine</name>
    <atomic_weight>126.9045</atomic_weight>
    <atomic_number>53</atomic_number>
    <oxidation_states>+/-1, 5, 7</oxidation_states>
    <boiling_point units="Kelvin">457.5</boiling_point>
    <melting_point units="Kelvin">386.7</melting_point>
    <symbol>I</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      4.93
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p5 </electron_configuration>
    <covalent_radius units="Angstroms">1.33</covalent_radius>
    <electronegativity>2.66</electronegativity>
    <atomic_radius units="Angstroms">1.32</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      20.9
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      25.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      7.76
    </heat_of_fusion>
    <ionization_potential>10.451</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.145
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.449
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Indium</name>
    <atomic_weight>114.82</atomic_weight>
    <atomic_number>49</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">2350</boiling_point>
    <melting_point units="Kelvin">429.78</melting_point>
    <symbol>In</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.31
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p1 </electron_configuration>
    <covalent_radius units="Angstroms">1.44</covalent_radius>
    <electronegativity>1.78</electronegativity>
    <atomic_radius units="Angstroms">1.66</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      226.35
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      15.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      3.26
    </heat_of_fusion>
    <ionization_potential>5.786</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.233
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      81.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Iridium</name>
    <atomic_weight>192.22</atomic_weight>
    <atomic_number>77</atomic_number>
    <oxidation_states>2, 3, 4, 6</oxidation_states>
    <boiling_point units="Kelvin">4700</boiling_point>
    <melting_point units="Kelvin">2720</melting_point>
    <symbol>Ir</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      22.6
    </density>
    <electron_configuration>[Xe] 4f14 5d7 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.27</covalent_radius>
    <electronegativity>2.2</electronegativity>
    <atomic_radius units="Angstroms">1.36</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      563.58
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.54
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      26.36
    </heat_of_fusion>
    <ionization_potential>9.1</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.13
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      147
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Potassium</name>
    <atomic_weight>39.0983</atomic_weight>
    <atomic_number>19</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">1033</boiling_point>
    <melting_point units="Kelvin">336.8</melting_point>
    <symbol>K</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.86
    </density>
    <electron_configuration>[Ar] 4s1 </electron_configuration>
    <covalent_radius units="Angstroms">2.03</covalent_radius>
    <electronegativity>0.82</electronegativity>
    <atomic_radius units="Angstroms">2.35</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      76.9
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      45.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.33
    </heat_of_fusion>
    <ionization_potential>4.341</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.757
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      102.5
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Krypton</name>
    <atomic_weight>83.8</atomic_weight>
    <atomic_number>36</atomic_number>
    <boiling_point units="Kelvin">120.85</boiling_point>
    <melting_point units="Kelvin">116</melting_point>
    <symbol>Kr</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      3.75
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p6 </electron_configuration>
    <covalent_radius units="Angstroms">1.89</covalent_radius>
    <electronegativity>0</electronegativity>
    <atomic_radius units="Angstroms">1.03</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      9.029
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      32.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      1.638
    </heat_of_fusion>
    <ionization_potential>13.999</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.248
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.00949
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Lanthanum</name>
    <atomic_weight>138.9055</atomic_weight>
    <atomic_number>57</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3737</boiling_point>
    <melting_point units="Kelvin">1191</melting_point>
    <symbol>La</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.15
    </density>
    <electron_configuration>[Xe] 5d1 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.25</covalent_radius>
    <electronegativity>1.1</electronegativity>
    <atomic_radius units="Angstroms">1.38</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      399.57
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      22.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11.3
    </heat_of_fusion>
    <ionization_potential>5.58</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.19
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      13.5
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Lithium</name>
    <atomic_weight>6.941</atomic_weight>
    <atomic_number>3</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">1615</boiling_point>
    <melting_point units="Kelvin">453.7</melting_point>
    <symbol>Li</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.53
    </density>
    <electron_configuration>1s2 2s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.23</covalent_radius>
    <electronegativity>0.98</electronegativity>
    <atomic_radius units="Angstroms">1.55</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      147.1
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      13.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      3
    </heat_of_fusion>
    <ionization_potential>5.392</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      3.582
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      84.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Lawrencium</name>
    <atomic_weight>262</atomic_weight>
    <atomic_number>103</atomic_number>
    <melting_point units="Kelvin">1900</melting_point>
    <symbol>Lr</symbol>
    <electron_configuration>[Rn] 5f14 6d1 7s2 </electron_configuration>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Lutetium</name>
    <atomic_weight>174.967</atomic_weight>
    <atomic_number>71</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3668</boiling_point>
    <melting_point units="Kelvin">1936</melting_point>
    <symbol>Lu</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.84
    </density>
    <electron_configuration>[Xe] 4f14 5d1 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.56</covalent_radius>
    <electronegativity>1.27</electronegativity>
    <atomic_radius units="Angstroms">1.75</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      355
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      17.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      18.6
    </heat_of_fusion>
    <ionization_potential>5.43</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.15
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      16.4
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Mendelevium</name>
    <atomic_weight>258</atomic_weight>
    <atomic_number>101</atomic_number>
    <melting_point units="Kelvin">1100</melting_point>
    <symbol>Md</symbol>
    <electron_configuration>[Rn] 5f13 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.58</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Magnesium</name>
    <atomic_weight>24.305</atomic_weight>
    <atomic_number>12</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1380</boiling_point>
    <melting_point units="Kelvin">922</melting_point>
    <symbol>Mg</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.74
    </density>
    <electron_configuration>[Ne] 3s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.36</covalent_radius>
    <electronegativity>1.31</electronegativity>
    <atomic_radius units="Angstroms">1.6</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      127.6
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      14
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      8.95
    </heat_of_fusion>
    <ionization_potential>7.646</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.02
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      156
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Manganese</name>
    <atomic_weight>54.938</atomic_weight>
    <atomic_number>25</atomic_number>
    <oxidation_states>7, 6, 4, 2, 3</oxidation_states>
    <boiling_point units="Kelvin">2335</boiling_point>
    <melting_point units="Kelvin">1518</melting_point>
    <symbol>Mn</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.44
    </density>
    <electron_configuration>[Ar] 3d5 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.17</covalent_radius>
    <electronegativity>1.55</electronegativity>
    <atomic_radius units="Angstroms">1.35</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      219.74
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      7.39
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      14.64
    </heat_of_fusion>
    <ionization_potential>7.435</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.48
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      7.82
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Molybdenum</name>
    <atomic_weight>95.94</atomic_weight>
    <atomic_number>42</atomic_number>
    <oxidation_states>6, 5, 4, 3, 2</oxidation_states>
    <boiling_point units="Kelvin">4912</boiling_point>
    <melting_point units="Kelvin">2896</melting_point>
    <symbol>Mo</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      10.22
    </density>
    <electron_configuration>[Kr] 4d5 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.3</covalent_radius>
    <electronegativity>2.16</electronegativity>
    <atomic_radius units="Angstroms">1.39</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      590.4
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      9.4
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      36
    </heat_of_fusion>
    <ionization_potential>7.099</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.25
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      138
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Meitnerium</name>
    <atomic_weight>266</atomic_weight>
    <atomic_number>109</atomic_number>
    <symbol>Mt</symbol>
    <electron_configuration>[Rn] 5f14 6d7 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Nitrogen</name>
    <atomic_weight>14.0067</atomic_weight>
    <atomic_number>7</atomic_number>
    <oxidation_states>+/-3, 5, 4, 2</oxidation_states>
    <boiling_point units="Kelvin">77.344</boiling_point>
    <melting_point units="Kelvin">63.15</melting_point>
    <symbol>N</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.251
    </density>
    <electron_configuration>1s2 2s2 p3 </electron_configuration>
    <covalent_radius units="Angstroms">0.75</covalent_radius>
    <electronegativity>3.04</electronegativity>
    <atomic_radius units="Angstroms">0.92</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      2.7928
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      17.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.36
    </heat_of_fusion>
    <ionization_potential>14.534</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.042
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.02598
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Sodium</name>
    <atomic_weight>22.98977</atomic_weight>
    <atomic_number>11</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">1156</boiling_point>
    <melting_point units="Kelvin">371</melting_point>
    <symbol>Na</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.97
    </density>
    <electron_configuration>[Ne] 3s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.54</covalent_radius>
    <electronegativity>0.93</electronegativity>
    <atomic_radius units="Angstroms">1.9</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      98.01
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      23.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.601
    </heat_of_fusion>
    <ionization_potential>5.139</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.23
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      141
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Niobium</name>
    <atomic_weight>92.9064</atomic_weight>
    <atomic_number>41</atomic_number>
    <oxidation_states>5, 3</oxidation_states>
    <boiling_point units="Kelvin">5015</boiling_point>
    <melting_point units="Kelvin">2742</melting_point>
    <symbol>Nb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.57
    </density>
    <electron_configuration>[Kr] 4d4 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.34</covalent_radius>
    <electronegativity>1.6</electronegativity>
    <atomic_radius units="Angstroms">1.46</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      690.1
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      26.9
    </heat_of_fusion>
    <ionization_potential>6.88</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.265
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      53.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Neodymium</name>
    <atomic_weight>144.24</atomic_weight>
    <atomic_number>60</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3347</boiling_point>
    <melting_point units="Kelvin">1294</melting_point>
    <symbol>Nd</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.01
    </density>
    <electron_configuration>[Xe] 4f4 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.64</covalent_radius>
    <electronegativity>1.14</electronegativity>
    <atomic_radius units="Angstroms">1.82</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      283.68
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      20.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      10.88
    </heat_of_fusion>
    <ionization_potential>5.49</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.19
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      16.5
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Neon</name>
    <atomic_weight>20.1797</atomic_weight>
    <atomic_number>10</atomic_number>
    <boiling_point units="Kelvin">27.1</boiling_point>
    <melting_point units="Kelvin">24.55</melting_point>
    <symbol>Ne</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      0.900
    </density>
    <electron_configuration>1s2 2s2 p6 </electron_configuration>
    <covalent_radius units="Angstroms">0.71</covalent_radius>
    <electronegativity>0</electronegativity>
    <atomic_radius units="Angstroms">0.51</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      1.77
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      16.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.34
    </heat_of_fusion>
    <ionization_potential>21.564</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      1.03
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.0493
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Nickel</name>
    <atomic_weight>58.6934</atomic_weight>
    <atomic_number>28</atomic_number>
    <oxidation_states>2, 3</oxidation_states>
    <boiling_point units="Kelvin">3005</boiling_point>
    <melting_point units="Kelvin">1726</melting_point>
    <symbol>Ni</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.9
    </density>
    <electron_configuration>[Ar] 3d8 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.15</covalent_radius>
    <electronegativity>1.91</electronegativity>
    <atomic_radius units="Angstroms">1.24</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      377.5
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      6.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      17.2
    </heat_of_fusion>
    <ionization_potential>7.635</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.444
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      90.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Nobelium</name>
    <atomic_weight>259</atomic_weight>
    <atomic_number>102</atomic_number>
    <melting_point units="Kelvin">1100</melting_point>
    <symbol>No</symbol>
    <electron_configuration>[Rn] 5f14 7s2 </electron_configuration>
    <electronegativity>1.3</electronegativity>
    <ionization_potential>6.65</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      10
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Neptunium</name>
    <atomic_weight>237.0482</atomic_weight>
    <atomic_number>93</atomic_number>
    <oxidation_states>6, 5, 4, 3</oxidation_states>
    <boiling_point units="Kelvin">4175</boiling_point>
    <melting_point units="Kelvin">912</melting_point>
    <symbol>Np</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      20.2
    </density>
    <electron_configuration>[Rn] 5f4 6d1 7s2 </electron_configuration>
    <electronegativity>1.36</electronegativity>
    <atomic_radius units="Angstroms">1.3</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      21.1
    </atomic_volume>
    <ionization_potential>6.19</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      6.3
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Oxygen</name>
    <atomic_weight>15.9994</atomic_weight>
    <atomic_number>8</atomic_number>
    <oxidation_states>-2</oxidation_states>
    <boiling_point units="Kelvin">90.188</boiling_point>
    <melting_point units="Kelvin">54.8</melting_point>
    <symbol>O</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.429
    </density>
    <electron_configuration>1s2 2s2 p4 </electron_configuration>
    <covalent_radius units="Angstroms">0.73</covalent_radius>
    <electronegativity>3.44</electronegativity>
    <atomic_radius units="Angstroms">0.65</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      3.4109
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      14
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.222
    </heat_of_fusion>
    <ionization_potential>13.618</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.92
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.2674
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Osmium</name>
    <atomic_weight>190.2</atomic_weight>
    <atomic_number>76</atomic_number>
    <oxidation_states>2, 3, 4, 6, 8</oxidation_states>
    <boiling_point units="Kelvin">5300</boiling_point>
    <melting_point units="Kelvin">3300</melting_point>
    <symbol>Os</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      22.6
    </density>
    <electron_configuration>[Xe] 4f14 5d6 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.26</covalent_radius>
    <electronegativity>2.2</electronegativity>
    <atomic_radius units="Angstroms">1.35</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      627.6
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.43
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      29.29
    </heat_of_fusion>
    <ionization_potential>8.7</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.13
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      87.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Phosphorus</name>
    <atomic_weight>30.97376</atomic_weight>
    <atomic_number>15</atomic_number>
    <oxidation_states>+/-3, 5, 4</oxidation_states>
    <boiling_point units="Kelvin">553</boiling_point>
    <melting_point units="Kelvin">317.3</melting_point>
    <symbol>P</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.82
    </density>
    <electron_configuration>[Ne] 3s2 p3 </electron_configuration>
    <covalent_radius units="Angstroms">1.06</covalent_radius>
    <electronegativity>2.19</electronegativity>
    <atomic_radius units="Angstroms">1.28</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      12.4
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      17
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      0.63
    </heat_of_fusion>
    <ionization_potential>10.486</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.769
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.235
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Protactinium</name>
    <atomic_weight>231.0359</atomic_weight>
    <atomic_number>91</atomic_number>
    <oxidation_states>5, 4</oxidation_states>
    <boiling_point units="Kelvin">4300</boiling_point>
    <melting_point units="Kelvin">1845</melting_point>
    <symbol>Pa</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      15.4
    </density>
    <electron_configuration>[Rn] 5f2 6d1 7s2 </electron_configuration>
    <electronegativity>1.5</electronegativity>
    <atomic_radius units="Angstroms">1.61</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      15
    </atomic_volume>
    <ionization_potential>5.88</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      47
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Lead</name>
    <atomic_weight>207.2</atomic_weight>
    <atomic_number>82</atomic_number>
    <oxidation_states>4, 2</oxidation_states>
    <boiling_point units="Kelvin">2023</boiling_point>
    <melting_point units="Kelvin">600.65</melting_point>
    <symbol>Pb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      11.35
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p2 </electron_configuration>
    <covalent_radius units="Angstroms">1.47</covalent_radius>
    <electronegativity>2.33</electronegativity>
    <atomic_radius units="Angstroms">1.75</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      177.9
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      4.77
    </heat_of_fusion>
    <ionization_potential>7.416</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.129
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      35.3
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Palladium</name>
    <atomic_weight>106.42</atomic_weight>
    <atomic_number>46</atomic_number>
    <oxidation_states>2, 4</oxidation_states>
    <boiling_point units="Kelvin">3240</boiling_point>
    <melting_point units="Kelvin">1825</melting_point>
    <symbol>Pd</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      12
    </density>
    <electron_configuration>[Kr] 4d10 </electron_configuration>
    <covalent_radius units="Angstroms">1.28</covalent_radius>
    <electronegativity>2.2</electronegativity>
    <atomic_radius units="Angstroms">1.37</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      393.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      16.74
    </heat_of_fusion>
    <ionization_potential>8.34</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.244
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      71.8
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Promethium</name>
    <atomic_weight>145</atomic_weight>
    <atomic_number>61</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3273</boiling_point>
    <melting_point units="Kelvin">1315</melting_point>
    <symbol>Pm</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.22
    </density>
    <electron_configuration>[Xe] 4f5 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.63</covalent_radius>
    <electronegativity>1.13</electronegativity>
    <atomic_volume units="cubic centimeters/mole">
      22.4
    </atomic_volume>
    <ionization_potential>5.55</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      17.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Polonium</name>
    <atomic_weight>209</atomic_weight>
    <atomic_number>84</atomic_number>
    <oxidation_states>4, 2</oxidation_states>
    <melting_point units="Kelvin">527</melting_point>
    <symbol>Po</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.3
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p4 </electron_configuration>
    <covalent_radius units="Angstroms">1.53</covalent_radius>
    <electronegativity>2</electronegativity>
    <atomic_radius units="Angstroms">1.67</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      120
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      22.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      13
    </heat_of_fusion>
    <ionization_potential>8.42</ionization_potential>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      20
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Praseodymium</name>
    <atomic_weight>140.9077</atomic_weight>
    <atomic_number>59</atomic_number>
    <oxidation_states>3, 4</oxidation_states>
    <boiling_point units="Kelvin">3785</boiling_point>
    <melting_point units="Kelvin">1204</melting_point>
    <symbol>Pr</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.77
    </density>
    <electron_configuration>[Xe] 4f3 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.65</covalent_radius>
    <electronegativity>1.13</electronegativity>
    <atomic_radius units="Angstroms">1.82</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      332.63
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      20.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      10.04
    </heat_of_fusion>
    <ionization_potential>5.42</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.193
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      12.5
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Platinum</name>
    <atomic_weight>195.08</atomic_weight>
    <atomic_number>78</atomic_number>
    <oxidation_states>2, 4</oxidation_states>
    <boiling_point units="Kelvin">4100</boiling_point>
    <melting_point units="Kelvin">2042.1</melting_point>
    <symbol>Pt</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      21.45
    </density>
    <electron_configuration>[Xe] 4f14 5d9 6s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.3</covalent_radius>
    <electronegativity>2.28</electronegativity>
    <atomic_radius units="Angstroms">1.39</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      510.45
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      9.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      19.66
    </heat_of_fusion>
    <ionization_potential>9</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.13
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      71.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Plutonium</name>
    <atomic_weight>244</atomic_weight>
    <atomic_number>94</atomic_number>
    <oxidation_states>6, 5, 4, 3</oxidation_states>
    <boiling_point units="Kelvin">3505</boiling_point>
    <melting_point units="Kelvin">913</melting_point>
    <symbol>Pu</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      19.84
    </density>
    <electron_configuration>[Rn] 5f6 7s2 </electron_configuration>
    <electronegativity>1.28</electronegativity>
    <atomic_radius units="Angstroms">1.51</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      12.32
    </atomic_volume>
    <ionization_potential>6.06</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.13
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      6.74
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Radium</name>
    <atomic_weight>226.0254</atomic_weight>
    <atomic_number>88</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1413</boiling_point>
    <melting_point units="Kelvin">973</melting_point>
    <symbol>Ra</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5
    </density>
    <electron_configuration>[Rn] 7s2 </electron_configuration>
    <electronegativity>0.89</electronegativity>
    <atomic_radius units="Angstroms">2.33</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      136.82
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      45.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      8.37
    </heat_of_fusion>
    <ionization_potential>5.279</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.094
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      18.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Rubidium</name>
    <atomic_weight>85.4678</atomic_weight>
    <atomic_number>37</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">961</boiling_point>
    <melting_point units="Kelvin">312.63</melting_point>
    <symbol>Rb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      1.532
    </density>
    <electron_configuration>[Kr] 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">2.16</covalent_radius>
    <electronegativity>0.82</electronegativity>
    <atomic_radius units="Angstroms">2.48</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      69.2
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      55.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.34
    </heat_of_fusion>
    <ionization_potential>4.177</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.363
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      58.2
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Rhenium</name>
    <atomic_weight>186.207</atomic_weight>
    <atomic_number>75</atomic_number>
    <oxidation_states>7, 6, 4, 2, -1</oxidation_states>
    <boiling_point units="Kelvin">5870</boiling_point>
    <melting_point units="Kelvin">3455</melting_point>
    <symbol>Re</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      21
    </density>
    <electron_configuration>[Xe] 4f14 5d5 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.28</covalent_radius>
    <electronegativity>1.9</electronegativity>
    <atomic_radius units="Angstroms">1.37</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      707.1
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.85
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      33.05
    </heat_of_fusion>
    <ionization_potential>7.88</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.137
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      47.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Rutherfordium</name>
    <atomic_weight>261</atomic_weight>
    <atomic_number>104</atomic_number>
    <symbol>Rf</symbol>
    <electron_configuration>[Rn] 5f14 6d2 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Rhodium</name>
    <atomic_weight>102.9055</atomic_weight>
    <atomic_number>45</atomic_number>
    <oxidation_states>2, 3, 4</oxidation_states>
    <boiling_point units="Kelvin">3970</boiling_point>
    <melting_point units="Kelvin">2236</melting_point>
    <symbol>Rh</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      12.41
    </density>
    <electron_configuration>[Kr] 4d8 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.25</covalent_radius>
    <electronegativity>2.28</electronegativity>
    <atomic_radius units="Angstroms">1.34</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      495.39
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      21.76
    </heat_of_fusion>
    <ionization_potential>7.46</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.242
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      150
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Radon</name>
    <atomic_weight>222</atomic_weight>
    <atomic_number>86</atomic_number>
    <boiling_point units="Kelvin">211.4</boiling_point>
    <melting_point units="Kelvin">202</melting_point>
    <symbol>Rn</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.73
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p6 </electron_configuration>
    <electronegativity>0</electronegativity>
    <atomic_radius units="Angstroms">1.34</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      16.4
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      50.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.9
    </heat_of_fusion>
    <ionization_potential>10.748</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.094
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.00364
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Ruthenium</name>
    <atomic_weight>101.07</atomic_weight>
    <atomic_number>44</atomic_number>
    <oxidation_states>2, 3, 4, 6, 8</oxidation_states>
    <boiling_point units="Kelvin">4425</boiling_point>
    <melting_point units="Kelvin">2610</melting_point>
    <symbol>Ru</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      12.37
    </density>
    <electron_configuration>[Kr] 4d7 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.25</covalent_radius>
    <electronegativity>2.2</electronegativity>
    <atomic_radius units="Angstroms">1.34</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      567.77
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      25.52
    </heat_of_fusion>
    <ionization_potential>7.37</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.238
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      117
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Sulfur</name>
    <atomic_weight>32.066</atomic_weight>
    <atomic_number>16</atomic_number>
    <oxidation_states>+/-2, 4, 6</oxidation_states>
    <boiling_point units="Kelvin">717.82</boiling_point>
    <melting_point units="Kelvin">392.2</melting_point>
    <symbol>S</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.07
    </density>
    <electron_configuration>[Ne] 3s2 p4 </electron_configuration>
    <covalent_radius units="Angstroms">1.02</covalent_radius>
    <electronegativity>2.58</electronegativity>
    <atomic_radius units="Angstroms">1.27</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      10
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      15.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      1.73
    </heat_of_fusion>
    <ionization_potential>10.36</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.71
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.269
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Silver</name>
    <atomic_weight>107.868</atomic_weight>
    <atomic_number>47</atomic_number>
    <oxidation_states>1</oxidation_states>
    <boiling_point units="Kelvin">2436</boiling_point>
    <melting_point units="Kelvin">1235.08</melting_point>
    <symbol>Ag</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      10.5
    </density>
    <electron_configuration>[Kr] 4d10 5s1 </electron_configuration>
    <covalent_radius units="Angstroms">1.34</covalent_radius>
    <electronegativity>1.93</electronegativity>
    <atomic_radius units="Angstroms">1.44</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      250.63
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11.3
    </heat_of_fusion>
    <ionization_potential>7.576</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.232
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      429
    </thermal_conductivity>
  </atom>
  
  <atom>
    <name>Scandium</name>
    <atomic_weight>44.9559</atomic_weight>
    <atomic_number>21</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3109</boiling_point>
    <melting_point units="Kelvin">1814</melting_point>
    <symbol>Sc</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.99
    </density>
    <electron_configuration>[Ar] 3d1 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.44</covalent_radius>
    <electronegativity>1.36</electronegativity>
    <atomic_radius units="Angstroms">1.62</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      304.8
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      15
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      16.11
    </heat_of_fusion>
    <ionization_potential>6.54</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.568
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      15.8
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Selenium</name>
    <atomic_weight>78.96</atomic_weight>
    <atomic_number>34</atomic_number>
    <oxidation_states>-2, 4, 6</oxidation_states>
    <boiling_point units="Kelvin">958</boiling_point>
    <melting_point units="Kelvin">494</melting_point>
    <symbol>Se</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      4.79
    </density>
    <electron_configuration>[Ar] 3d10 4s2 p4 </electron_configuration>
    <covalent_radius units="Angstroms">1.16</covalent_radius>
    <electronegativity>2.55</electronegativity>
    <atomic_radius units="Angstroms">1.4</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      26.32
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      16.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      5.54
    </heat_of_fusion>
    <ionization_potential>9.752</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.32
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      2.04
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Seaborgium</name>
    <atomic_weight>263</atomic_weight>
    <atomic_number>106</atomic_number>
    <symbol>Sg</symbol>
    <electron_configuration>[Rn] 5f14 6d4 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Silicon</name>
    <atomic_weight>28.0855</atomic_weight>
    <atomic_number>14</atomic_number>
    <oxidation_states>4</oxidation_states>
    <boiling_point units="Kelvin">2630</boiling_point>
    <melting_point units="Kelvin">1683</melting_point>
    <symbol>Si</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.33
    </density>
    <electron_configuration>[Ne] 3s2 p2 </electron_configuration>
    <covalent_radius units="Angstroms">1.11</covalent_radius>
    <electronegativity>1.9</electronegativity>
    <atomic_radius units="Angstroms">1.32</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      359
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      12.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      50.2
    </heat_of_fusion>
    <ionization_potential>8.151</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.70
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      148
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Samarium</name>
    <atomic_weight>150.36</atomic_weight>
    <atomic_number>62</atomic_number>
    <oxidation_states>3, 2</oxidation_states>
    <boiling_point units="Kelvin">2067</boiling_point>
    <melting_point units="Kelvin">1347</melting_point>
    <symbol>Sm</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.52
    </density>
    <electron_configuration>[Xe] 4f6 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.62</covalent_radius>
    <electronegativity>1.17</electronegativity>
    <atomic_radius units="Angstroms">1.81</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      191.63
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      19.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      11.09
    </heat_of_fusion>
    <ionization_potential>5.63</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.197
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      13.3
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Strontium</name>
    <atomic_weight>87.62</atomic_weight>
    <atomic_number>38</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1655</boiling_point>
    <melting_point units="Kelvin">1042</melting_point>
    <symbol>Sr</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      2.54
    </density>
    <electron_configuration>[Kr] 5s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.91</covalent_radius>
    <electronegativity>0.95</electronegativity>
    <atomic_radius units="Angstroms">2.15</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      136.9
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      33.7
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      8.2
    </heat_of_fusion>
    <ionization_potential>5.695</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.3
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      35.3
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Tantalum</name>
    <atomic_weight>180.9479</atomic_weight>
    <atomic_number>73</atomic_number>
    <oxidation_states>5</oxidation_states>
    <boiling_point units="Kelvin">5730</boiling_point>
    <melting_point units="Kelvin">3293</melting_point>
    <symbol>Ta</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      16.65
    </density>
    <electron_configuration>[Xe] 4f14 5d3 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.34</covalent_radius>
    <electronegativity>1.5</electronegativity>
    <atomic_radius units="Angstroms">1.49</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      737
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      36
    </heat_of_fusion>
    <ionization_potential>7.89</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.14
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      57.5
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Terbium</name>
    <atomic_weight>158.9253</atomic_weight>
    <atomic_number>65</atomic_number>
    <oxidation_states>3, 4</oxidation_states>
    <boiling_point units="Kelvin">3500</boiling_point>
    <melting_point units="Kelvin">1629</melting_point>
    <symbol>Tb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      8.23
    </density>
    <electron_configuration>[Xe] 4f9 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.59</covalent_radius>
    <electronegativity>1.1</electronegativity>
    <atomic_radius units="Angstroms">1.8</atomic_radius>
    <atomic_volume units="cubic centimeters/mole">
      19.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      15.48
    </heat_of_fusion>
    <ionization_potential>5.86</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.18
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      11.1
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Technetium</name>
    <atomic_weight>98</atomic_weight>
    <atomic_number>43</atomic_number>
    <oxidation_states>7</oxidation_states>
    <boiling_point units="Kelvin">4538</boiling_point>
    <melting_point units="Kelvin">2477</melting_point>
    <symbol>Tc</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      11.5
    </density>
    <electron_configuration>[Kr] 4d5 5s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.27</covalent_radius>
    <electronegativity>1.9</electronegativity>
    <atomic_radius units="Angstroms">1.36</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      502
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      23
    </heat_of_fusion>
    <ionization_potential>7.28</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.24
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      50.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Tellurium</name>
    <atomic_weight>127.6</atomic_weight>
    <atomic_number>52</atomic_number>
    <oxidation_states>-2, 4, 6</oxidation_states>
    <boiling_point units="Kelvin">1261</boiling_point>
    <melting_point units="Kelvin">722.72</melting_point>
    <symbol>Te</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.24
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p4 </electron_configuration>
    <covalent_radius units="Angstroms">1.36</covalent_radius>
    <electronegativity>2.1</electronegativity>
    <atomic_radius units="Angstroms">1.42</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      50.63
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      20.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      17.49
    </heat_of_fusion>
    <ionization_potential>9.009</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.202
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      2.35
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Thorium</name>
    <atomic_weight>232.0381</atomic_weight>
    <atomic_number>90</atomic_number>
    <oxidation_states>4</oxidation_states>
    <boiling_point units="Kelvin">5060</boiling_point>
    <melting_point units="Kelvin">2028</melting_point>
    <symbol>Th</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      11.72
    </density>
    <electron_configuration>[Rn] 6d2 7s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.65</covalent_radius>
    <electronegativity>1.3</electronegativity>
    <atomic_radius units="Angstroms">1.8</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      543.92
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      19.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      15.65
    </heat_of_fusion>
    <ionization_potential>6.08</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.113
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      54
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Tin</name>
    <atomic_weight>118.71</atomic_weight>
    <atomic_number>50</atomic_number>
    <oxidation_states>4, 2</oxidation_states>
    <boiling_point units="Kelvin">2876</boiling_point>
    <melting_point units="Kelvin">505.12</melting_point>
    <symbol>Sn</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.31
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p2 </electron_configuration>
    <covalent_radius units="Angstroms">1.41</covalent_radius>
    <electronegativity>1.96</electronegativity>
    <atomic_radius units="Angstroms">1.62</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      290.37
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      16.3
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      7.2
    </heat_of_fusion>
    <ionization_potential>7.344</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.228
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      66.6
    </thermal_conductivity>
  </atom>
  
  <atom>
    <name>Titanium</name>
    <atomic_weight>47.88</atomic_weight>
    <atomic_number>22</atomic_number>
    <oxidation_states>4, 3</oxidation_states>
    <boiling_point units="Kelvin">3560</boiling_point>
    <melting_point units="Kelvin">1945</melting_point>
    <symbol>Ti</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      4.54
    </density>
    <electron_configuration>[Ar] 3d2 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.32</covalent_radius>
    <electronegativity>1.54</electronegativity>
    <atomic_radius units="Angstroms">1.45</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      425.2
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      10.6
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      18.6
    </heat_of_fusion>
    <ionization_potential>6.82</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.523
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      21.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Thallium</name>
    <atomic_weight>204.383</atomic_weight>
    <atomic_number>81</atomic_number>
    <oxidation_states>3, 1</oxidation_states>
    <boiling_point units="Kelvin">1746</boiling_point>
    <melting_point units="Kelvin">577</melting_point>
    <symbol>Tl</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      11.85
    </density>
    <electron_configuration>[Xe] 4f14 5d10 6s2 p1 </electron_configuration>
    <covalent_radius units="Angstroms">1.48</covalent_radius>
    <electronegativity>2.04</electronegativity>
    <atomic_radius units="Angstroms">1.71</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      162.09
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      17.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      4.27
    </heat_of_fusion>
    <ionization_potential>6.108</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.129
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      46.1
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Thulium</name>
    <atomic_weight>168.9342</atomic_weight>
    <atomic_number>69</atomic_number>
    <oxidation_states>3, 2</oxidation_states>
    <boiling_point units="Kelvin">2223</boiling_point>
    <melting_point units="Kelvin">1818</melting_point>
    <symbol>Tm</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      9.32
    </density>
    <electron_configuration>[Xe] 4f13 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.56</covalent_radius>
    <electronegativity>1.25</electronegativity>
    <atomic_radius units="Angstroms">1.77</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      191
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      18.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      16.8
    </heat_of_fusion>
    <ionization_potential>6.184</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.16
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      16.8
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Uranium</name>
    <atomic_weight>238.029</atomic_weight>
    <atomic_number>92</atomic_number>
    <oxidation_states>6, 5, 4, 3</oxidation_states>
    <boiling_point units="Kelvin">4407</boiling_point>
    <melting_point units="Kelvin">1408</melting_point>
    <symbol>U</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      18.95
    </density>
    <electron_configuration>[Rn] 5f3 6d1 7s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.42</covalent_radius>
    <electronegativity>1.38</electronegativity>
    <atomic_radius units="Angstroms">1.38</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      422.58
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      12.5
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      15.48
    </heat_of_fusion>
    <ionization_potential>6.05</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.12
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      27.6
    </thermal_conductivity>
  </atom>

  <atom>
    <name>ununbium</name>
    <atomic_weight>277</atomic_weight>
    <atomic_number>112</atomic_number>
    <symbol>Uub</symbol>
    <electron_configuration>[Rn] 5f14 6d10 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>ununnilium</name>
    <atomic_weight>269</atomic_weight>
    <atomic_number>110</atomic_number>
    <symbol>Uun</symbol>
    <electron_configuration>[Rn] 5f14 6d8 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>unununium</name>
    <atomic_weight>272</atomic_weight>
    <atomic_number>111</atomic_number>
    <symbol>Uuu</symbol>
    <electron_configuration>[Rn] 5f14 6d9 7s2 </electron_configuration>
  </atom>

  <atom>
    <name>Vanadium</name>
    <atomic_weight>50.9415</atomic_weight>
    <atomic_number>23</atomic_number>
    <oxidation_states>5, 4, 3, 2</oxidation_states>
    <boiling_point units="Kelvin">3650</boiling_point>
    <melting_point units="Kelvin">2163</melting_point>
    <symbol>V</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.11
    </density>
    <electron_configuration>[Ar] 3d3 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.22</covalent_radius>
    <electronegativity>1.63</electronegativity>
    <atomic_radius units="Angstroms">1.34</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      446.7
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      8.35
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      20.8
    </heat_of_fusion>
    <ionization_potential>6.74</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.489
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      30.7
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Tungsten</name>
    <atomic_weight>183.85</atomic_weight>
    <atomic_number>74</atomic_number>
    <oxidation_states>6, 5, 4, 3, 2</oxidation_states>
    <boiling_point units="Kelvin">5825</boiling_point>
    <melting_point units="Kelvin">3695</melting_point>
    <symbol>W</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      19.3
    </density>
    <electron_configuration>[Xe] 4f14 5d4 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.3</covalent_radius>
    <electronegativity>2.36</electronegativity>
    <atomic_radius units="Angstroms">1.41</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      422.58
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      9.53
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      35.4
    </heat_of_fusion>
    <ionization_potential>7.98</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.13
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      174
    </thermal_conductivity>
  </atom>

  <atom state="gas">
    <name>Xenon</name>
    <atomic_weight>131.29</atomic_weight>
    <atomic_number>54</atomic_number>
    <boiling_point units="Kelvin">165.1</boiling_point>
    <melting_point units="Kelvin">161.39</melting_point>
    <symbol>Xe</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      5.9
    </density>
    <electron_configuration>[Kr] 4d10 5s2 p6 </electron_configuration>
    <covalent_radius units="Angstroms">1.31</covalent_radius>
    <electronegativity>2.6</electronegativity>
    <atomic_radius units="Angstroms">1.24</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      12.64
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      42.9
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      2.3
    </heat_of_fusion>
    <ionization_potential>12.13</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.158
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      0.00569
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Yttrium</name>
    <atomic_weight>88.9059</atomic_weight>
    <atomic_number>39</atomic_number>
    <oxidation_states>3</oxidation_states>
    <boiling_point units="Kelvin">3611</boiling_point>
    <melting_point units="Kelvin">1795</melting_point>
    <symbol>Y</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      4.47
    </density>
    <electron_configuration>[Kr] 4d1 5s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.62</covalent_radius>
    <electronegativity>1.22</electronegativity>
    <atomic_radius units="Angstroms">1.78</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      363.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      19.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      17.5
    </heat_of_fusion>
    <ionization_potential>6.38</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.3
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      17.2
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Ytterbium</name>
    <atomic_weight>173.04</atomic_weight>
    <atomic_number>70</atomic_number>
    <oxidation_states>3, 2</oxidation_states>
    <boiling_point units="Kelvin">1469</boiling_point>
        <melting_point units="Kelvin">1092</melting_point>
    <symbol>Yb</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.97
    </density>
    <electron_configuration>[Xe] 4f14 6s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.7</covalent_radius>
    <electronegativity>1.1</electronegativity>
    <atomic_radius units="Angstroms">1.94</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      128
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      24.8
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      7.7
    </heat_of_fusion>
    <ionization_potential>6.254</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.155
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      34.9
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Zinc</name>
    <atomic_weight>65.39</atomic_weight>
    <atomic_number>30</atomic_number>
    <oxidation_states>2</oxidation_states>
    <boiling_point units="Kelvin">1180</boiling_point>
    <melting_point units="Kelvin">692.73</melting_point>
    <symbol>Zn</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      7.13
    </density>
    <electron_configuration>[Ar] 3d10 4s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.25</covalent_radius>
    <electronegativity>1.65</electronegativity>
    <atomic_radius units="Angstroms">1.38</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      115.3
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      9.2
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      7.38
    </heat_of_fusion>
    <ionization_potential>9.394</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.388
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      116
    </thermal_conductivity>
  </atom>

  <atom>
    <name>Zirconium</name>
    <atomic_weight>91.224</atomic_weight>
    <atomic_number>40</atomic_number>
    <oxidation_states>4</oxidation_states>
    <boiling_point units="Kelvin">4682</boiling_point>
    <melting_point units="Kelvin">2128</melting_point>
    <symbol>Zr</symbol>
    <density units="grams/cubic centimeter"><!-- At 300K -->
      6.51
    </density>
    <electron_configuration>[Kr] 4d2 5s2 </electron_configuration>
    <covalent_radius units="Angstroms">1.45</covalent_radius>
    <electronegativity>1.33</electronegativity>
    <atomic_radius units="Angstroms">1.6</atomic_radius>
    <heat_of_vaporization units="kilojoules/mole">
      590.5
    </heat_of_vaporization>
    <atomic_volume units="cubic centimeters/mole">
      14.1
    </atomic_volume>
    <heat_of_fusion units="kilojoules/mole">
      21
    </heat_of_fusion>
    <ionization_potential>6.84</ionization_potential>
    <specific_heat_capacity units="Joules/gram/degree Kelvin">
      0.278
    </specific_heat_capacity>
    <thermal_conductivity units="Watts/meter/degree Kelvin">
    <!-- At 300K -->
      22.7
    </thermal_conductivity>
  </atom>
  
</periodic_table>

