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  1. Lithium (11359 bytes)
    2: {| border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    24: | [[Density]], [[Mohs hardness scale|Hardness]]
    41: | [[van der Waals radius]]
    50: | [[Oxidation state]]s ([[Oxide]])

Page text matches

  1. List of elements by symbol (14812 bytes)
    58: <tr><td>Md</td><td>[[mendelevium]]</td><td>101</td><td></td></tr>
    61: <tr><td>Mo</td><td>[[molybdenum]]</td><td>42</td><td></td></tr>
    127: ...time to an isotope of [[radon]] identified in the decay chain of [[actinium]].</td></tr>
    134: <tr><td>Dp</td><td>[[decipium]]</td><td>62</td><td>Rare earth metal that ...
    135: ...[ekaboron]]</td><td>21</td><td>Name given by [[Mendeleev]] to an as of then undiscovered element. When...
  2. Actinium (7046 bytes)
    2: {| border="1" cellpadding="2" cellspacing="0" align="right...
    5: {| align="center" border="0"
    20: | [[Chemical series]] || [[Actinide]]s
    25: | [[Density]], [[Mohs hardness scale|Hardness]]
    39: | [[van der Waals radius]] || n/a pm
  3. Desert (21206 bytes)
    1: ...humb|right|Valley of the Kings, Egypt. Image provided by [http://classroomclipart.com Classroom Clip A...
    2: ...mb|right|Man and Camel, Desert, Egypt. Image provided by [http://classroomclipart.com Classroom Clip A...
    4: ... of the world's deserts, http://pubs.usgs.gov/gip/deserts/what/world.html)
    6: ...nd-driven) processes are major factors in shaping desert landscapes.
    8: ...ed by erosion. Because deserts are dry, they are ideal places for human artifacts and fossils to be pr...
  4. Hybrid vehicle (47544 bytes)
    3: ... Wheel]] Bus, a hybrid bus with an in wheel motor design. |300px]]
    6: ...ference between a motor and a generator is one of design optimization only. ''See also [[motor-genera...
    8: ...In the [[import scene]], hybrid was often used to describe an [[engine swap]], such as the common Hond...
    12: ...l | accessdate=May 15 | accessyear=2000}} never made it into production as the program was replaced by...
    14: ...[[nuclear power]], which can operate underwater indefinitely, though a number of nations continue to r...
  5. Hot spring (7271 bytes)
    3: ...e]] (which is usually around 55~57&deg;F or 13~14&deg;C in the eastern [[United States]]).
    7: ...the geothermal [[gradient]]. If water percolates deeply enough into the crust, it will be heated as i...
    9: ...have been seriously burned and even killed by accidentally or intentionally entering these springs.
    11: ... of the United States|U.S. President]] [[Franklin Delano Roosevelt|Franklin D. Roosevelt]], who built ...
    15: ... springs have, they are often popular [[tourist]] destinations, and locations for [[rehabilitation]] [...
  6. Beryllium (15119 bytes)
    1: {| border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    14: ! colspan="2" bgcolor="#FFDEAD" | General
    25: | [[Density]], [[Mohs hardness scale|Hardness]]
    31: ! colspan="2" bgcolor="#FFDEAD" | Atomic properties
  7. Helium (36603 bytes)
    2: {| width="250" border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    26: | [[Density]]
    35: | 0.95 [[Kelvin|K]] (-272.2 &deg;[[Celsius|C]])
    38: | 4.22 [[Kelvin|K]] (-268.93 &deg;[[Celsius|C]])
  8. Hydrogen (20221 bytes)
    3: <table border="1" cellpadding="2" cellspacing="0" align="right...
    5: <table align="center" border="0">
    22: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
    34: <td>[[van der Waals radius]] </td><td>...
    40: <td>[[Oxidation state]]s ([[Oxide]]) </td><td>1 ([[amphoteric]])</t...
  9. Lithium (11359 bytes)
    2: {| border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    24: | [[Density]], [[Mohs hardness scale|Hardness]]
    41: | [[van der Waals radius]]
    50: | [[Oxidation state]]s ([[Oxide]])
  10. Aluminium (26079 bytes)
    1: {{Elementbox_header | number=13 | symbol=Al | name=aluminium | left=...
    10: {{Elementbox_density_gpcm3nrt | 2.70 }}
    11: {{Elementbox_densityliq_gpcm3mp | 2.375 }}
    20: ...{Elementbox_oxistates | 3<br />([[amphoteric]] oxide) }}
    41: ...] | dm=[[Positron emission|&beta;<sup>+</sup>]] | de=1.17 | pn=26 | ps=[[magnesium|Mg]] }}
  11. Neodymium (12345 bytes)
    2: <table border="1" cellpadding="2" cellspacing="0" align="right...
    4: <table align="center" border="0">
    16: ...] </td><td>[[Lanthanide]]s</td></tr>
    20: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
    32: <td>[[van der Waals radius]] </td><td>...
  12. Neptunium (9972 bytes)
    2: <table border="1" cellpadding="2" cellspacing="0" align="right...
    4: <table align="center" border="0">
    17: ...s]] </td><td>[[Actinide]]s</td></tr>
    21: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
    33: <td>[[van der Waals radius]] </td><td>...
  13. Plutonium (24623 bytes)
    2: {| border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    20: | [[Actinide]]s
    25: | [[Density]], [[Mohs hardness scale|Hardness]]
    43: | [[van der Waals radius]]
  14. Potassium (12496 bytes)
    2: <table border="1" cellpadding="2" cellspacing="0" align="right...
    4: <table align="center" border="0">
    21: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
    33: <td>[[van der Waals radius]] </td><td>...
    39: <td>[[Oxidation state]]s ([[Oxide]]) </td><td>1 (strong [[Base (che...
  15. Scandium (10820 bytes)
    2: <table border="1" cellpadding="2" cellspacing="0" align="right...
    4: <table align="center" border="0">
    20: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td><td...
    32: <td>[[van der Waals radius]] </td><td>no data</td></tr>
    38: <td>[[Oxidation state]]s ([[Oxide]]) </td><td>3 (weak [[Base (chemistry)|base]])</t...
  16. Sodium (8714 bytes)
    1: {{Elementbox_header | number=11 | symbol=Na | name=sodium | left=- |...
    10: {{Elementbox_density_gpcm3nrt | 0.968 }}
    11: {{Elementbox_densityliq_gpcm3mp | 0.927 }}
    20: ... | 1<br />(strongly [[base (chemistry)|basic]] oxide) }}
    26: {{Elementbox_vanderwaalsrad_pm | [[1 E-10 m|227]] }}
  17. Yttrium (9384 bytes)
    2: {| border="1" cellpadding="2" cellspacing="0" align="right...
    4: {| align="center" border="0"
    23: | [[Density]], [[Mohs hardness scale|Hardness]]
    40: | [[van der Waals radius]]
    49: | [[Oxidation state]]s ([[Oxide]])
  18. List of elements by name (7283 bytes)
    3: ...thumb|150px|right|Chemistry Clipart .Clipart provided by [http://classroomclipart.com Classroom Clip A...
    104: <tr><td>[[mendelevium]]</td><td>Md</td><td>101</td></tr>
    106: <tr><td>[[molybdenum]]</td><td>Mo</td><td>42</td></tr>
  19. Neutron (7687 bytes)
    1: <table border="1" cellspacing="0" align="right" cellpadding="2...
    29: ...|thumb|150px|left|Chemistry Clipart .Clipart provided by
    32: ...ta decay]]) occurs in some nuclei. Particles inside the nucleus are typically resonances between neut...
    34: ...hat they are uncharged. This property of neutrons delayed their discovery, makes them very penetrating...
    36: ...mes into play when the neutron comes very close indeed to an atomic nucleus. Consequently a free neutr...
  20. Timeline of chemical element discovery (10490 bytes)
    1: ...thumb|150px|right|Chemistry Clipart .Clipart provided by
    22: *[[1450]] - [[Antimony]] first described by [[Tholden]]
    34: *[[1753]] - [[Bismuth]] discovered by [[Claude Geoffroy Junine]]
    42: *[[1776]] - [[Hydrogen]] isolated and described by [[Henry Cavendish]], named by [[Antoine...
    43: *[[1778]] - [[Molybdenum]] was discovered [[Carl Wilhelm Scheele]]

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