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38 bytes added ,  18:58, 3 July 2007
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The amplifier's response to varying the power voltage (<math>V_c</math>) from 0 to 10V is shown in the image below.
 
The amplifier's response to varying the power voltage (<math>V_c</math>) from 0 to 10V is shown in the image below.
   −
[[Image:Amplifier Response to Power (2007-07-03).png]]
+
[[Image:Amplifier Response to Power (2007-07-03).png|thumb|left|caption]]
    
Note that the vertical axis can be read as either the output voltage (<math>V_{out}</math>) in mV or as the transimpedance gain in <math>\Omega</math>.
 
Note that the vertical axis can be read as either the output voltage (<math>V_{out}</math>) in mV or as the transimpedance gain in <math>\Omega</math>.
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The amplifier's response to varying the frequency (<math>f</math>) is shown in the image below.
 
The amplifier's response to varying the frequency (<math>f</math>) is shown in the image below.
   −
[[Image:Amplifier Response to Frequency (2007-07-03).png]]
+
[[Image:Amplifier Response to Frequency (2007-07-03).png|thumb|left|caption]]
    
Note that the vertical axis can be read as either the output voltage (<math>V_{out}</math>) in mV or as the transimpedance gain in <math>\Omega</math>.
 
Note that the vertical axis can be read as either the output voltage (<math>V_{out}</math>) in mV or as the transimpedance gain in <math>\Omega</math>.
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