One-Dimensional Box: Analyzing Butadiene's UV/VIS Spectrum

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Mechdude
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Homework Statement



consider butadiene [itex]H_2 C = CH-CH=cH_2[/itex] and assume for simplicity that [itex]\pi[/itex] electrons move on a straight line (one -dimensional box) whose length l can be estimated as equal to two [itex]C=C[/itex] bond lengths (2*1.35 angstrom) , plus one [itex]C-C[/itex] lengths. Butadiene has four [itex]\pi[/itex] that fill the [itex]n=1[/itex] & [itex]n=2[/itex]. the transition observed in a UV/VIS spectrum thus corresponds to the exitationof ane electron from the [itex]n = 3[/itex] state. Experimentally one finds that this corresponds to the absorption of light with a wavelengths of 217 nm. Compute and compare the lenghts of the 0ne-D box suggested by the sum of the bond length and by the energy of the transition.

Homework Equations



not sure

The Attempt at a Solution



not sure
 
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Well what are the energy levels of a 1D well with length L?
 
[tex]E = \frac {n^2 h^2}{8 m l^2}[/tex]
is that what I am to use?
If it is may be energy is calculated from [itex]E = hv[/itex]
and the information given then equate that to the energy difference calculated between n=3 and n= 2 ,
if I am headed in the correct direction
 
Yes. You will want to find the L that gives that energy difference, and you will want to use the L given to you to find what energy difference that gets.
 
nickjer said:
Yes. You will want to find the L that gives that energy difference, and you will want to use the L given to you to find what energy difference that gets.

thanks, nickjer.
regards.