A particular sine wave has the equation v = 12 sin 0. The rms voltage for...
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A particular sine wave has the equation v = 12 sin 0. The rms voltage for this wave is shon formula, sub. V. cale. Refer to the oscilloscope trace in Figure 1. If the VOLTS/DIV control is set to 2 V/div, the peak-to-peak reading is Explaine 4x3 OVH Figure 1 Refer to the oscilloscope trace in Figure 2. If the VOLTS/DIV control is set to 5 V/div, the rms reading is Explain OVH a. be smaller b. move off screen c. show a flat line d. not change Refer to the oscilloscope trace in Figure 3. If the signal is coupled to the scope using DC coupling, and you change to AC coupling, the waveform will Explain Figure 2 OV Figure 3 The instantaneous voltage at 17° for a 169 V, sinusoidal voltage is Formula, sub. & calc. The unit for capacitive reactance is a. Siemens b. the ohm c. the watt d. the joule A square wave is made up of the fundamental frequency and a. both the odd and even harmonics b. all even harmonics c. all odd harmonics d. no harmonics If a capacitor with 25 V across its plates stores 1.175 µC of charge, the capacitance is show formula, sub. & cale. If a 22 µF and 100 µF capacitor are connected in parallel across a 15 V source, the total capacitance is and the 22 µF capacitor drops Explain, show formula A 10 μF capacitor is in series with a 2.2 k2 resistor, a switch, and a 10 V source. After the switch is closed, the capacitor will be fully charged in approximately The show formule and explain your answer The type of filter represented by the circuit in Figure 4 is R www 6.2 k 5.0 V a. low-pass b. high-pass c. band-pass d. band-reject Figure 4 5.0 V Refer to the circuit in Figure 6. At the cutoff frequency, the output voltage is: R www 6.2 k C 0.047μF Figure 6 0.047 F 7 Explain Explain. Show formule & cale. Refer to the circuit in Figure 8. If the frequency is 1.0 kHz, the total impedance is V. 5.0 V mms R www 6.2 kn +V 10 V 01 Figure 8 330 Ω in polar form Refer to the circuit in Figure 9. What value of L will produce a time constant of 15 μs? S R Figure 9 show formula, 1.346. & cale. C 0.047μF show formule, sub. & calc. A particular sine wave has the equation v = 12 sin 0. The rms voltage for this wave is shon formula, sub. V. cale. Refer to the oscilloscope trace in Figure 1. If the VOLTS/DIV control is set to 2 V/div, the peak-to-peak reading is Explaine 4x3 OVH Figure 1 Refer to the oscilloscope trace in Figure 2. If the VOLTS/DIV control is set to 5 V/div, the rms reading is Explain OVH a. be smaller b. move off screen c. show a flat line d. not change Refer to the oscilloscope trace in Figure 3. If the signal is coupled to the scope using DC coupling, and you change to AC coupling, the waveform will Explain Figure 2 OV Figure 3 The instantaneous voltage at 17° for a 169 V, sinusoidal voltage is Formula, sub. & calc. The unit for capacitive reactance is a. Siemens b. the ohm c. the watt d. the joule A square wave is made up of the fundamental frequency and a. both the odd and even harmonics b. all even harmonics c. all odd harmonics d. no harmonics If a capacitor with 25 V across its plates stores 1.175 µC of charge, the capacitance is show formula, sub. & cale. If a 22 µF and 100 µF capacitor are connected in parallel across a 15 V source, the total capacitance is and the 22 µF capacitor drops Explain, show formula A 10 μF capacitor is in series with a 2.2 k2 resistor, a switch, and a 10 V source. After the switch is closed, the capacitor will be fully charged in approximately The show formule and explain your answer The type of filter represented by the circuit in Figure 4 is R www 6.2 k 5.0 V a. low-pass b. high-pass c. band-pass d. band-reject Figure 4 5.0 V Refer to the circuit in Figure 6. At the cutoff frequency, the output voltage is: R www 6.2 k C 0.047μF Figure 6 0.047 F 7 Explain Explain. Show formule & cale. Refer to the circuit in Figure 8. If the frequency is 1.0 kHz, the total impedance is V. 5.0 V mms R www 6.2 kn +V 10 V 01 Figure 8 330 Ω in polar form Refer to the circuit in Figure 9. What value of L will produce a time constant of 15 μs? S R Figure 9 show formula, 1.346. & cale. C 0.047μF show formule, sub. & calc.
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Related Book For
Fundamentals of Electric Circuits
ISBN: 9780073301150
3rd edition
Authors: Matthew Sadiku, Charles Alexander
Posted Date:
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