The series circuit in the figure is similar to arrangements that are sometimes used in radio tuning circuits. This circuit is connected to the terminals of an ac source with a constant rms terminal voltage of 1.0 V and a variable frequency. Find the resonance frequency if we will change the value of L to 0.45 mH and C to 137.91 pF. Express your answer to the nearest integer. For the final answer, express the unit in symbols. For example: 5 Kelvin should be expressed as 5 K DO NOT answer in exponential form.
The series circuit in the figure is similar to arrangements that are sometimes used in radio tuning circuits. This circuit is connected to the terminals of an ac source with a constant rms terminal voltage of 1.0 V and a variable frequency. Find the resonance frequency if we will change the value of L to 0.45 mH and C to 137.91 pF. Express your answer to the nearest integer. For the final answer, express the unit in symbols. For example: 5 Kelvin should be expressed as 5 K DO NOT answer in exponential form.
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The series circuit in the figure is similar to arrangements that are sometimes used in radio tuning circuits. This circuit is connected to the terminals of an ac source with a constant rms terminal voltage of 1.0 V and a variable frequency. Find the resonance frequency if we will change the value of L to 0.45 mH and C to 137.91 pF.
- Express your answer to the nearest integer.
- For the final answer, express the unit in symbols. For example:
- 5 Kelvin should be expressed as 5 K
- DO NOT answer in exponential form.
![2.0
mA
1.0
V
R = 500 L = 0.40 mH
W
0000
b
1.0
V
4.0
V
0
V
C = 100 pF
4.0
V
d](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F055bbf7a-ebdc-469b-bef5-71fa29f285bb%2Fb3c7698e-d836-4b02-9375-4daf7b437c6a%2Fc713rd_processed.png&w=3840&q=75)
Transcribed Image Text:2.0
mA
1.0
V
R = 500 L = 0.40 mH
W
0000
b
1.0
V
4.0
V
0
V
C = 100 pF
4.0
V
d
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