Inductive Circuits
Fill in all the missing values. Refer to the following formulas:
Inductance (H) | Frequency (Hz) | Inductive Reactance (
|
1.2 | 60 | |
0.085 | 213.628 | |
1000 | 4712.389 | |
0.65 | 600 | |
3.6 | 678.584 | |
25 | 411.459 | |
0.5 | 60 | |
0.85 | 6408.849 | |
20 | 201.062 | |
0.45 | 400 | |
4.8 | 2412.743 | |
1000 | 40.841 |
The missing values in the table.
Answer to Problem 1PP
Inductance (H) | Frequency(Hz) | Inductive Reactance(Ω) |
1.2 | 60 | 452.39 |
0.085 | 400 | 213.628 |
0.75 | 1000 | 4712.389 |
0.65 | 600 | 2450.44 |
3.6 | 30 | 678.584 |
2.61 | 25 | 411.459 |
0.5 | 60 | 188.50 |
0.85 | 1200 | 6408.849 |
1.6 | 20 | 201.062 |
0.45 | 400 | 1130 |
4.8 | 80 | 2412.743 |
6.44m | 1000 | 40.841 |
Explanation of Solution
We are given the following formulae,
Want to see more full solutions like this?
Chapter 16 Solutions
EBK MINDTAP FOR HERMAN'S DELMAR'S STAND
- Apply Routh stability criteria to compute the range of values of K such that the following close loop unity negative feedback control syst m is stable. The open-loop transfer function of th system is given by: G(s)H(s) 90(1+0.5s) (1+s) 1+2s)(1+Ks) *arrow_forwardNO AI. Thank Youarrow_forwardDon't use ai to answer I will report you answerarrow_forward
- Please solve in detailarrow_forwardHere the Req is 8 my prof solved it and got R3 is parallel to R4 in series with R2 and this combination is parallel to R1. i don't understand how he got these relationships. initially i did the opposite i took (R1//R4 + R2 ) + R3 but got the wrong answer why is it wrong? can you explain to me if there's a trick i can do to understand these questions better and know the configurations of the resistors in a better manner?arrow_forwardHere the Req is 8 my prof solved it and got R3 is parallel to R4 in series with R2 and this combination is parallel to R1. i don't understand how he got these relationships. initially i did the opposite i took (R1//R4 + R2 ) + R3 but got the wrong answer why is it wrong? can you explain to me if there's a trick i can do to understand these questions better and know the configurations of the resistors in a better manner?arrow_forward
- The ROC of Laplace transform of x(t) = -e²u(t) + e02tu(t) + e.tu(t) is a) 0.1 0.2arrow_forwardFind the inverse Laplace transform of F(s) = s+1 (s-1)(s-2)(s-3) for each ROC: i) Re[s] =>3 ii) Re[s] =σ<1 iii) 1 < Re[s] =σ< 2.arrow_forwardFind Laplace transform of x(t) = −e¯btu(−t) + e¯atu(t) (), and Rocarrow_forward
- Delmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage Learning