Energy graphs and the Bohr model: Difference between revisions

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==Examples==
==Examples==
===Simple===
[[File:hydrogenenergylevels.jpg]]


Be sure to show all steps in your solution and include diagrams whenever possible
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This Bohr model picture  helps you visualize the orbit radii of the different excited states of the hydrogen aton described in the bohr model. 


===Simple===
===Middling===
===Middling===
===Difficult===
===Difficult===

Revision as of 22:14, 5 December 2015


by Caitlin Taylor


[[File:[Example.jpg]]]==The Main Idea==

Energy graphs and the Bohr model.

This page gives a more in-depth explanation of how to use energy graphs to comprehend the Bohr model. It explains how to illustrate excited states and photon emissions or absorptions.

A Mathematical Model

Electronic Energy levels of a Hydrogen Atom

E = K + Uelectric

1) [math]\displaystyle{ E = {\frac{mv^2}{2}} - {\frac{{\frac{1}{2}}*{\frac{1}{4π ε0}}*{\frac{me^2}{h*}}}{N^2}} }[/math]

2) [math]\displaystyle{ E = {\frac{13.6 eV}{N^2}} }[/math] where N = 1,2,3

A Computational Model

How do we visualize or predict using this topic. Consider embedding some vpython code here Teach hands-on with GlowScript

Examples

Simple


This Bohr model picture helps you visualize the orbit radii of the different excited states of the hydrogen aton described in the bohr model.

Middling

Difficult

Connectedness

  1. How is this topic connected to something that you are interested in?
  2. How is it connected to your major?
  3. Is there an interesting industrial application?

History

Put this idea in historical context. Give the reader the Who, What, When, Where, and Why.

See also

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Further reading

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External links

[1]


References

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