Temperature value: Difference between revisions

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The B-factor is given<ref name="rcampbell" /> by
The B-factor is given<ref name="rcampbell" /> by
<center><span style="font-size:150%">B<sub>i</sub> = 8&pi;<sup>2</sup>U<sub>i</sub><sup>2</sup></span></center>
<center><span style="font-size:150%">B<sub>i</sub> = 8&pi;<sup>2</sup>U<sub>i</sub><sup>2</sup></span></center>
where U<sub>i</sub><sup>2</sup> is the mean square displacement of atom i. As U increases, the B-factor increases and the contribution of the atom to the scattering is decreased. If atoms are incorrectly positioned in the model, their B-factors will tend to be higher than correctly positioned atoms nearby<ref name="rcampbell" />.
where U<sub>i</sub><sup>2</sup> is the mean square displacement of atom i. As U increases, the B-factor increases and the contribution of the atom to the scattering is decreased. If atoms are incorrectly positioned in the model, their B-factors will tend to be higher than correctly positioned atoms nearby<ref name="rcampbell" />. For a B-factor of 15 &Aring;<sup>2</sup>, displacement of an atom from its equilibrium position is approximately 0.44 Å, and approximately 0.87 Å for a B-factor of 60 &Aring;<sup>2</sup><ref name="rcampbell" />.


==Disorder==
==Disorder==