Adapting a function for amplitude reduction based on distance.
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I was wondering how the amplitude of the function (a consequent signal) is affected based on the based distance. For instance, given an electrode, how is the amplitude of a function (the source) affected?
Thus, how would I adapt the following Gaussian function to account for distance:
I would very much appreciate any assistance.
functions
$endgroup$
add a comment |
$begingroup$
I was wondering how the amplitude of the function (a consequent signal) is affected based on the based distance. For instance, given an electrode, how is the amplitude of a function (the source) affected?
Thus, how would I adapt the following Gaussian function to account for distance:
I would very much appreciate any assistance.
functions
$endgroup$
add a comment |
$begingroup$
I was wondering how the amplitude of the function (a consequent signal) is affected based on the based distance. For instance, given an electrode, how is the amplitude of a function (the source) affected?
Thus, how would I adapt the following Gaussian function to account for distance:
I would very much appreciate any assistance.
functions
$endgroup$
I was wondering how the amplitude of the function (a consequent signal) is affected based on the based distance. For instance, given an electrode, how is the amplitude of a function (the source) affected?
Thus, how would I adapt the following Gaussian function to account for distance:
I would very much appreciate any assistance.
functions
functions
edited Jan 6 at 10:33
N. F. Taussig
44k93355
44k93355
asked Jan 6 at 2:37
DanDan
11
11
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