I Review I Constants Consider the circuit shown in (Figure 1). Suppose that vg = 170 cos 10, 000t V, wheret is in seconds. Value Units P= Submit Part C Determine the maximum average power delivered to the load if ZL consists of two components from the tables below whose values yield a maximum average power closest to the value calculated in Part B. Resistors (5% tolerance) [ 2] 10 k 1.0 k 1.2 k 100 k 120 k 150 k 10 100 1.0 M 120 12 k 15 150 1.5 k 15 k 1.5 M 180 1.8 k 18 k 180 k 22 220 2.2 k 22 k 220 k 2.2 M 270 k 330 k 270 2.7 k 27 k 3.3 k 3.9 k 33 330 33 k 3.3 M 390 39 k 390 k 470 k 560 k 47 470 4.9 k 47 k 4.7 M 560 5.6 k 56 k 68 680 6.8 k 68 k 680 k 6.8 M Inductors Value Current Rating 10 uH 100 µH 3 A 0.91 A 1 mH 10 mH 0.15 A 0.04 A Figure 1 of 1 Express your answer to three significant figures and include the appropriate units. • View Available Hint(s) 4 mH 2.5 uF Templetes Symbols undo redo Teset keyboard shortcuts help P= Value Units 40 1 Submit

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Please help me with parts a, b, and c

I Review I Constants
Consider the circuit shown in (Figure 1). Suppose that
v, = 170 cos 10, 000t V, where t is in seconds.
P =
Value
Units
Submit
Part C
Determine the maximum average power delivered to the load if ZL consists of two components from the tables below whose values yield a maximum average power
closest to the value calculated in Part B.
Resistors (5% tolerance) [ S ]
10
100
1.0 k
10 k
100 k
1.0 M
120
1.2 k
12 k
120 k
15
150
1.5 k
15 k
150 k
1.5 M
180 k
220 k
180
1.8 k
18 k
22
220
2.2 k
22 k
2.2 M
270
2.7 k
27 k
270 k
33
330
3.3 k
33 k
330 k
3.3 M
390
3.9 k
39 k
390 k
47
470
4.9 k
47 k
| 470 k
| 4.7 M
560
5.6 k
56 k
560 k
68
680
6.8 k
68 k
680 k
6.8 M
Inductors
Value
Current Rating
10 μΗ
ЗА
100 µH
| 0.91 A
1 mH
0.15 A
Figure
1 of 1
10 mH
0.04 A
Express your answer to three significant figures and include the appropriate units.
• View Available Hint(s)
4 mH
2.5 µF
Templates Symbols undo redo feset keyboard shortcuts help
P =
Value
Units
Vg
40 Ω
Submit
Transcribed Image Text:I Review I Constants Consider the circuit shown in (Figure 1). Suppose that v, = 170 cos 10, 000t V, where t is in seconds. P = Value Units Submit Part C Determine the maximum average power delivered to the load if ZL consists of two components from the tables below whose values yield a maximum average power closest to the value calculated in Part B. Resistors (5% tolerance) [ S ] 10 100 1.0 k 10 k 100 k 1.0 M 120 1.2 k 12 k 120 k 15 150 1.5 k 15 k 150 k 1.5 M 180 k 220 k 180 1.8 k 18 k 22 220 2.2 k 22 k 2.2 M 270 2.7 k 27 k 270 k 33 330 3.3 k 33 k 330 k 3.3 M 390 3.9 k 39 k 390 k 47 470 4.9 k 47 k | 470 k | 4.7 M 560 5.6 k 56 k 560 k 68 680 6.8 k 68 k 680 k 6.8 M Inductors Value Current Rating 10 μΗ ЗА 100 µH | 0.91 A 1 mH 0.15 A Figure 1 of 1 10 mH 0.04 A Express your answer to three significant figures and include the appropriate units. • View Available Hint(s) 4 mH 2.5 µF Templates Symbols undo redo feset keyboard shortcuts help P = Value Units Vg 40 Ω Submit
I Review I Constants
Consider the circuit shown in (Figure 1). Suppose that
v, = 170 cos 10, 000t V, where t is in seconds.
Part A
Determine the load impedance for the circuit that will result in maximum average power being transferred to the load.
Express your answer in ohms to three significant figures. Enter your answer in rectangular form.
• View Available Hint(s)
Temptates Symbols Slope/Displacement Veétor undo reglo reset keyboard shortcuts help
ZL =
Ω
Submit
Part B
Determine the maximum average power delivered to the load from Part A.
Express your answer to three significant figures and include the appropriate units.
• View Available Hint(s)
Templates Symbols undo redo reset keyboard shortcuts help
P =
Value
Units
Submit
Figure
1 of 1
Part C
Determine the maximum average power delivered to the load if ZL consists of two components from the tables below whose values yield a maximum average power
closest to the value calculated in Part B.
4 mH
2.5 μF
Resistors (5% tolerance) [ 2]
10
100
1.0 k
10 k
100 k
1.0 M
Vg
40 Ω
120
1.2 k
12 k
120 k
15
150
1.5 k
15 k
150 k
1.5 M
180
1.8 k
18 k
180 k
22
220
2.2 k
22 k
220 k
2.2 M
270
2.7 k
27 k
270 k
Transcribed Image Text:I Review I Constants Consider the circuit shown in (Figure 1). Suppose that v, = 170 cos 10, 000t V, where t is in seconds. Part A Determine the load impedance for the circuit that will result in maximum average power being transferred to the load. Express your answer in ohms to three significant figures. Enter your answer in rectangular form. • View Available Hint(s) Temptates Symbols Slope/Displacement Veétor undo reglo reset keyboard shortcuts help ZL = Ω Submit Part B Determine the maximum average power delivered to the load from Part A. Express your answer to three significant figures and include the appropriate units. • View Available Hint(s) Templates Symbols undo redo reset keyboard shortcuts help P = Value Units Submit Figure 1 of 1 Part C Determine the maximum average power delivered to the load if ZL consists of two components from the tables below whose values yield a maximum average power closest to the value calculated in Part B. 4 mH 2.5 μF Resistors (5% tolerance) [ 2] 10 100 1.0 k 10 k 100 k 1.0 M Vg 40 Ω 120 1.2 k 12 k 120 k 15 150 1.5 k 15 k 150 k 1.5 M 180 1.8 k 18 k 180 k 22 220 2.2 k 22 k 220 k 2.2 M 270 2.7 k 27 k 270 k
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