The compound tetracene is familiar to us from the laboratory exercises. Using the McConnell equation, a = Qp, with Q = 2.25 mT, and the electron density diagram below, predict the EPR spectrum of (tetracene). Keep in mind that the electron densities shown obey the relationship u > v >> w. Show the hyperfine constant a for each splitting.

Principles of Instrumental Analysis
7th Edition
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Chapter19: Nuclear Magnetic Resonance Spectroscopy
Section: Chapter Questions
Problem 19.3QAP
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The compound tetracene is familiar to us from the laboratory exercises.
Using the McConnell equation, a = Qp, with Q = 2.25 mT, and the electron density
diagram below, predict the EPR spectrum of (tetracene). Keep in mind that the
electron densities shown obey the relationship u >> v >> w. Show the hyperfine
constant a for each splitting.
u
Transcribed Image Text:The compound tetracene is familiar to us from the laboratory exercises. Using the McConnell equation, a = Qp, with Q = 2.25 mT, and the electron density diagram below, predict the EPR spectrum of (tetracene). Keep in mind that the electron densities shown obey the relationship u >> v >> w. Show the hyperfine constant a for each splitting. u
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