Difference between revisions of "Meitnerium"

From Conservapedia
Jump to navigation Jump to search
(New page: {{Element | name=Meitnerium | symbol=Mt | anumber=109 | amass=266 amu | state=Presumed to be a Solid | class=Transactinides | cstructure=Unknown | color=Unknown | date=1982 | discname=Pete...)
 
(→‎top: clean up & uniformity)
 
(2 intermediate revisions by 2 users not shown)
Line 1: Line 1:
 
{{Element | name=Meitnerium | symbol=Mt | anumber=109 | amass=266 amu | state=Presumed to be a Solid | class=Transactinides | cstructure=Unknown | color=Unknown | date=1982 | discname=Peter Armbruster and Gottfried Munzenber | origname=Named after Lise Meitner, a Swedish physicist who first split the nucleus of uranium, thus creating what her team dubbed "fission". | uses=None. | obtained=Synthetically produced by bombarding a <sup>209</sup>[[Bismuth|Bi]] with <sup>58</sup>[[Iron|Fe]] nuclei. Only a few atoms have ever been produced. }}
 
{{Element | name=Meitnerium | symbol=Mt | anumber=109 | amass=266 amu | state=Presumed to be a Solid | class=Transactinides | cstructure=Unknown | color=Unknown | date=1982 | discname=Peter Armbruster and Gottfried Munzenber | origname=Named after Lise Meitner, a Swedish physicist who first split the nucleus of uranium, thus creating what her team dubbed "fission". | uses=None. | obtained=Synthetically produced by bombarding a <sup>209</sup>[[Bismuth|Bi]] with <sup>58</sup>[[Iron|Fe]] nuclei. Only a few atoms have ever been produced. }}
 
==References==
 
<small><references/></small>
 
  
 
[[Category:Elements]]
 
[[Category:Elements]]
 +
{{Periodic table}}

Latest revision as of 15:54, July 13, 2016

Meitnerium
Properties
Atomic symbol Mt
Atomic number 109
Classification Transactinides
Atomic mass 266 amu
Other Information
Date of discovery 1982
Name of discoverer Peter Armbruster and Gottfried Munzenber
Name origin Named after Lise Meitner, a Swedish physicist who first split the nucleus of uranium, thus creating what her team dubbed "fission".
Uses None.
Obtained from Synthetically produced by bombarding a 209Bi with 58Fe nuclei. Only a few atoms have ever been produced.