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- Arsenic (12497 bytes)
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25: | [[Density]], [[Mohs hardness scale|Hardness]]
39: | [[van der Waals radius]] || 185 pm
47: | [[Oxidation state]]s ([[Oxide]]) || '''+-3''',5 (mildly [[acid]]ic) - Cadmium (10755 bytes)
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25: | [[Density]], [[Mohs hardness scale|Hardness]]
42: | [[van der Waals radius]]
51: | [[Oxidation state]]s ([[Oxide]]) - Shadow mask (2096 bytes)
1: ... ensuring that [[electron]]s from the tube's cathode gun reach the appropriately-colored portion of th...
5: ...allows displays made with this technology to provide a clearer, more accurate picture. It also reduce...
7: ...al display]] (LCD) monitors and other flat-screen designs now challenges both aperture grille and shad... - Cobalt (13481 bytes)
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5: ...="center">[[iron]] – '''cobalt''' – [[nickel]]</td>
20: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
32: <td>[[van der Waals radius]] </td><td>... - Copper (13595 bytes)
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6: | colspan="2" align="center" | [[nickel]] – '''copper''' – [[zinc]]
25: | [[Density]], [[Mohs hardness scale|Hardness]]
42: | [[van der Waals radius]] - Darmstadtium (3185 bytes)
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29: ...tom]]s. It is a [[synthetic element]] and quickly decays; its [[isotopes]] of mass 267 to 273 have hal...
30: ...|thumb|150px|left|Chemistry Clipart .Clipart provided by [http://classroomclipart.com Classroom Clip A...
33: ... (nickel atoms are the ones accelerated and bombarded into the lead). - Dysprosium (8843 bytes)
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19: | [[Lanthanide]]s
24: | [[Density]], [[Mohs hardness scale|Hardness]]
41: | [[van der Waals radius]] - Gold (24329 bytes)
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26: | [[Density]], [[Mohs hardness scale|Hardness]]
43: | [[van der Waals radius]]
53: | [[Oxidation state]]s ([[Oxide]]) - Iridium (10102 bytes)
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26: | [[Density]], [[Mohs hardness scale|Hardness]]
43: | [[van der Waals radius]]
52: | [[Oxidation state]]s ([[Oxide]]) - Iron (23778 bytes)
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24: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>
38: <td>[[van der Waals radius]] </td><td>...
44: <td>[[Oxidation state]]s ([[Oxide]]) </td><td>2,'''3''',4,6 (amphot... - Nickel (13955 bytes)
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5: |colspan="2" align="center"|[[cobalt]] – '''nickel''' – [[copper]]
16: |nickel, Ni, 28
24: |[[Density]], [[Mohs hardness scale|Hardness]] - Niobium (10560 bytes)
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5: ...[zirconium]] – '''niobium''' – [[molybdenum]]
25: | [[Density]], [[Mohs hardness scale|Hardness]]
42: | [[van der Waals radius]] - Osmium (11139 bytes)
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23: <td>[[Density]], [[Mohs hardness scale|Hardness]] </td>...
35: <td>[[van der Waals radius]] </td><td>...
41: <td>[[Oxidation state]]s ([[Oxide]]) </td><td>4, 6, 8 (mildly [[aci... - Palladium (9737 bytes)
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7: | rowspan="3" valign="center" | [[Nickel|Ni]]<br>
25: | [[Density]], [[Mohs hardness scale|Hardness]]
42: | [[van der Waals radius]] - Platinum (10600 bytes)
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22: |[[Density]], [[Mohs hardness scale|Hardness]] || 21450...
34: |[[van der Waals radius]] || 175 pm
40: |[[Oxidation state]]s ([[Oxide]]) || 2, '''4''' (mildly [[Base (chemistry)|basic... - Rhodium (8753 bytes)
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25: | [[Density]], [[Mohs hardness scale|Hardness]]
42: | [[van der Waals radius]]
51: | [[Oxidation state]]s ([[Oxide]]) - Roentgenium (3150 bytes)
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30: ...|thumb|150px|left|Chemistry Clipart .Clipart provided by [http://classroomclipart.com Classroom Clip A...
33: ...64 in a [[linear accelerator]]. (Nickel was bombarded onto the bismuth target.)
35: ...tgen]]; before this date, the element was known under the temporary [[IUPAC]] [[systematic element nam... - Silver (15157 bytes)
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24: | [[Density]], [[Mohs hardness scale|Hardness]]
41: | [[van der Waals radius]]
50: | [[Oxidation state]] ([[Oxide]]) - Zinc (12445 bytes)
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26: | [[Density]], [[Mohs hardness scale|Hardness]]
43: | [[van der Waals radius]]
52: | [[Oxidation state]]s ([[Oxide]]) - 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>
114: <tr><td>[[nickel]]</td><td>Ni</td><td>28</td></tr>
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