Part 1: Using the information provided below, derive an expression to show that the energy of an electronic transition measured from UV-VIS spectroscopy is a function of the wavelength of the light absorbed using the equations below.  ν λ = c ΔE = hν where E is the energy for the transition, ν is the frequency of light, λ is the wavelength, c and h are the speed of light and Plank's constant respectively (both constants). Part 2: From the derived equation, as the absorption maximum (λmax) for a molecule increases to a longer wavelength (for example from 300 to 700 nm), how does this affect the energy for the electronic transition?

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter5: Electron Configurations And The Periodic Table
Section: Chapter Questions
Problem 114QRT
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Part 1:

Using the information provided below, derive an expression to show that the energy of an electronic transition measured from UV-VIS spectroscopy is a function of the wavelength of the light absorbed using the equations below. 

ν λ = c
ΔE = hν

where E is the energy for the transition, ν is the frequency of light, λ is the wavelength, c and h are the speed of light and Plank's constant respectively (both constants).

Part 2:
From the derived equation, as the absorption maximum (λmax) for a molecule increases to a longer wavelength (for example from 300 to 700 nm), how does this affect the energy for the electronic transition?

 

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