Difference between revisions of "Plum Pudding Model"

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[[File:Plum pudding atom.jpg|thumbnail|Model consists of a positively charged "pudding" containing negatively charged "plums" (electrons) randomly distributed throughout the atom.]]
The '''Plum Pudding''' model of the atom was an early [[atom|atomic]] theory proposed in 1904 by JJ Thomson, also called '''Thomson's Model'''.<ref>https://www.boundless.com/physics/textbooks/boundless-physics-textbook/atomic-physics-29/the-early-atom-185/the-thomson-model-685-6307/ Boundless Textbooks</ref>  It described the atom as being like a plum pudding, a viscous spheroid containing solid [[electron|electrons]] inside it.  It was disproven 5 years later by the [[Geiger-Marsden experiment]].
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The '''Plum Pudding''' model of the atom was an early [[atom]]ic theory proposed in 1904 by JJ Thomson, also called '''Thomson's Model'''.<ref>https://www.boundless.com/physics/textbooks/boundless-physics-textbook/atomic-physics-29/the-early-atom-185/the-thomson-model-685-6307/ Boundless Textbooks</ref>  It described the atom as being like a plum pudding, a viscous spheroid containing solid [[electron]]s inside it.  It was disproven 5 years later by the [[Geiger-Marsden experiment]].
  
 
==References==
 
==References==

Latest revision as of 00:00, August 12, 2017

Model consists of a positively charged "pudding" containing negatively charged "plums" (electrons) randomly distributed throughout the atom.

The Plum Pudding model of the atom was an early atomic theory proposed in 1904 by JJ Thomson, also called Thomson's Model.[1] It described the atom as being like a plum pudding, a viscous spheroid containing solid electrons inside it. It was disproven 5 years later by the Geiger-Marsden experiment.

References