Difference between revisions of "Lab 5 RS"
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| Line 44: | Line 44: | ||
| − | So the experimentally measured resonance frequency is | + | So the experimentally measured resonance frequency is: |
<math>f = 27.7\ \mbox{kHz}</math> | <math>f = 27.7\ \mbox{kHz}</math> | ||
| − | And the predicted value of resonance frequency is | + | And the predicted value of resonance frequency is: |
<math>f = 27.4\ \mbox{kHz}</math> | <math>f = 27.4\ \mbox{kHz}</math> | ||
Revision as of 22:28, 3 February 2011
- LC Resonance circuits
The LC circuit
Design a parallel LC resonant circuit with a resonant frequency between 50-200 kHz. use = 10 - 100 , R = 1k
I choose the following values for and :
So the resonance frequency is
And
Construct the LC circuit using a non-polar capacitor
Measure the Gain as a function of frequency. (25 pnts)
Compare the measured and theoretical values of the resonance frequency () (10 pnts)
Let's plot the data from table above:
And let's zoom the graph above at resonance frequency:
So the experimentally measured resonance frequency is:
And the predicted value of resonance frequency is:
The error is:
The error is small so I was lucky
Questions
1.Is there a value of in which at resonance. What is the value?(5 pnts)
