Difference between revisions of "Absorbed Dose Information"

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<math>D \equiv  \lim_{_{_{ \! \!\! \! \! \! \! &Delta; m \rightarrow 0}}}{\frac{&Delta; \bar &epsilon;}{&Delta; m}}</math>
 
<math>D \equiv  \lim_{_{_{ \! \!\! \! \! \! \! &Delta; m \rightarrow 0}}}{\frac{&Delta; \bar &epsilon;}{&Delta; m}}</math>
  
Here <math>\bar &epsilon;</math> is the expected energy imparted to the medium averaged over all stochastic fluctuations
+
Here <math>\bar &epsilon;</math> is the expected energy imparted to the medium averaged over all stochastic fluctuations (random processes)
  
  

Revision as of 19:21, 11 April 2018

[math]D \equiv \lim_{_{_{ \! \!\! \! \! \! \! Δ m \rightarrow 0}}}{\frac{Δ \bar ε}{Δ m}}[/math]

Here [math]\bar ε[/math] is the expected energy imparted to the medium averaged over all stochastic fluctuations (random processes)



- Shultis, Faw, Fundamentals of Nuclear Science and Engineering, 3rd Edition, pg 274.


Thesis