I Review | Cons What is the angular frequency of the circuit when R = 0? Express your answer in radians per second. An L-R-C circuit has an inductance of 0.420 H, a capacitance of 2.75x10-5 F, and a resistance of R as shown in (Figure 1). • View Available Hint(s) ? 345.03 rad/s Submit Previous Answers Figure < 1 of 1> X Incorrect; Try Again; 5 attempts remaining Part B What value must R have to give a decrease in angular frequency of 14.0 % compared to the value calculated in Part A? Express your answer in ohms. • View Available Hint(s) ? C
I Review | Cons What is the angular frequency of the circuit when R = 0? Express your answer in radians per second. An L-R-C circuit has an inductance of 0.420 H, a capacitance of 2.75x10-5 F, and a resistance of R as shown in (Figure 1). • View Available Hint(s) ? 345.03 rad/s Submit Previous Answers Figure < 1 of 1> X Incorrect; Try Again; 5 attempts remaining Part B What value must R have to give a decrease in angular frequency of 14.0 % compared to the value calculated in Part A? Express your answer in ohms. • View Available Hint(s) ? C
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What is the angular frequency of the circuit when R = 0?
Express your answer in radians per second.
An L-R-C circuit has an inductance of 0.420 H, a
capacitance of 2.75×10-5 F , and a resistance of R as
shown in (Figure 1).
• View Available Hint(s)
?
345.03
rad/s
Submit
Previous Answers
Figure
1 of 1
X Incorrect; Try Again; 5 attempts remaining
Part B
What value must R have to give a decrease in angular frequency of 14.0 % compared to the value calculated in Part A?
Express your answer in ohms.
• View Available Hint(s)
?
C
Ω
P Pearson"
Transcribed Image Text:I Review | Constant:
What is the angular frequency of the circuit when R = 0?
Express your answer in radians per second.
An L-R-C circuit has an inductance of 0.420 H, a
capacitance of 2.75×10-5 F , and a resistance of R as
shown in (Figure 1).
• View Available Hint(s)
?
345.03
rad/s
Submit
Previous Answers
Figure
1 of 1
X Incorrect; Try Again; 5 attempts remaining
Part B
What value must R have to give a decrease in angular frequency of 14.0 % compared to the value calculated in Part A?
Express your answer in ohms.
• View Available Hint(s)
?
C
Ω
P Pearson
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