According to the solution for Practice Test 5.1, what is the power, P, in the circuit?

Correct answer: 400 W

Explanation

This question tests the recall of a specific power calculation result from the practice test solutions in Appendix D.

Other questions

Question 1

In a specific circuit analysis scenario, what is the power delivered by the voltage source according to the practice test answers?

Question 2

According to the answers for Practice Test 1.3, what is the power absorbed by source I2?

Question 3

Based on the solution provided for Practice Test 1.4, what is the value of the resistor R2?

Question 4

For the circuit problem in Practice Test 1.6, what is the value of the voltage v4?

Question 5

What is the value of the current 'is' according to the solution for Practice Test 2.2?

Question 6

In the analysis for Practice Test 2.5, what is the determined value for the Thevenin resistance, Rt?

Question 7

What is the equivalent resistance between terminals a and b as determined in the solution for Practice Test 2.7?

Question 8

For the circuit in Practice Test 3.1, what is the final stored energy wc(infinity)?

Question 9

According to the solution for Practice Test 3.3, what is the value of the capacitance C?

Question 10

What is the equivalent inductance, Leq, as determined in Practice Test 3.5?

Question 11

What is the calculated value of tx in the solution for Practice Test 4.1?

Question 12

In the transient analysis for Practice Test 4.2, what is the initial current i1(0+)?

Question 13

For the second-order circuit in Practice Test 4.4, what is the particular solution for the capacitor voltage, vcp(t)?

Question 15

What is the amplitude of the voltage v(t) in the solution for Practice Test 5.2?

Question 16

For the AC circuit described in Practice Test 5.3, what is the frequency, f?

Question 17

In the phasor analysis for Practice Test 5.4, what is the magnitude of the capacitor voltage, VC?

Question 18

For the power calculation in Practice Test 5.6, what is the apparent power?

Question 19

According to the solution for Practice Test 6.3, what is the slope of the low-frequency asymptote in the Bode plot?

Question 20

What is the quality factor, Q, for the filter analyzed in Practice Test 6.4?

Question 21

For the filter analysis in Practice Test 6.5, what is the center frequency, f0?

Question 22

According to the solution for Practice Test 6.7, what type of filter is identified in part 'c'?

Question 23

In the number system conversion for Practice Test 7.2, what is the hexadecimal equivalent identified in part 'c'?

Question 24

What is the decimal equivalent of the two's complement number given in part 'b' of Practice Test 7.4?

Question 25

According to the solution for the state machine in Practice Test 7.7, after how many shifts does the state of the register return to its initial state?

Question 26

In Practice Test 8.2, what addressing mode is identified in part 'b'?

Question 27

After the commands in Practice Test 8.3 have been executed, what are the contents of register X?

Question 28

Which of the following is listed as a type of systematic (bias) error in the solution for Practice Test 8.5?

Question 29

In the diode circuit analysis of Practice Test 9.1, what is the value of the diode current 'ip' in part 'a'?

Question 30

For the diode circuit in Practice Test 9.2, what is the voltage vx when the diode is on?

Question 31

What is the resistance of the small-signal equivalent circuit for the diode in Practice Test 9.7?

Question 32

For the amplifier analyzed in Practice Test 10.1, what is the open-circuit voltage gain, Avoc?

Question 33

According to the solution for Practice Test 10.4, what is the value of the short-circuit transconductance, Gmsc?

Question 34

What is the efficiency, eta, of the amplifier in Practice Test 10.5?

Question 35

From the load-line analysis in Practice Test 11.2, what is the quiescent drain-source voltage, VDSQ?

Question 36

What is the value of the source resistance, Rs, in the solution for Practice Test 11.3?

Question 37

For the Q-point analysis in Practice Test 11.4, what is the value of the quiescent drain current, IDQ?

Question 38

In the BJT analysis for Practice Test 12.3, what is the value of beta?

Question 39

For the BJT circuit in part 'a' of Practice Test 12.4, what is the collector-emitter voltage, VCE?

Question 40

What is the input impedance, Zin, of the circuit in Practice Test 12.6?

Question 41

For the op-amp circuit in Practice Test 13.2, what is the closed-loop voltage gain, Avl?

Question 42

What is the closed-loop bandwidth, fBCL, for the circuit in part 'a' of Practice Test 13.3?

Question 43

In the analysis of op-amp limitations in Practice Test 13.4, what is the output voltage limit, Vom, in part 'd'?

Question 44

According to the solution for Practice Test 14.1, what is the magnitude of the force in part 'a'?

Question 45

What is the amplitude of the voltage 'v' in the solution for Practice Test 14.2?

Question 46

In the magnetic circuit analysis for Practice Test 14.4, what is the air gap flux density, Bgap?

Question 47

For the transformer in part 'b' of Practice Test 14.6, what is the secondary RMS current, I2rms?

Question 48

What is the developed torque, Tdev, of the DC motor in Practice Test 15.10?

Question 49

According to the solution for Practice Test 16.3, what is the output power, Pout, of the induction motor?

Question 50

What is the slip frequency, fslip, for the induction motor in Practice Test 16.4?