1. It is required to draw a sine wave signal of amplitude 12 volts P.P and frequency of 2 KHz on oscilloscope having voltage scale of 2 volts/cm and time base scale of 0.125 m sec / cm. Draw it on your lab paper.
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- The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 0.2 ms/cm, and the 'volts/cm' switch is set to 40 V/cm. Determine the (i) amplitude of waveform Q, (ii) peak to peak value of waveform P, (ii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees. Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle. (i) Amplitude of waveform Q = (ii) Peak to peak value of waveform P = (iii) Frequency of waveform P = (iv) Phase angle difference between P and Q in Degrees =The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 0.2 ms/cm, and the 'volts/cm' switch is set to 30 V/cm. Determine the (1) amplitude of waveform Q, (i) peak to peak value of waveform P, (ii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees. Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle. (i) Amplitude of waveform Q = (ii) Peak to peak value of waveform P = (iii) Frequency of waveform P = (iv) Phase angle difference between P and Q in Degrees =The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 0.5 ms/cm, and the 'volts/cm' switch is set to 0.2 V/cm. Determine the (i) amplitude of waveform Q, (ii) peak to peak value of waveform P, (iii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees. Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle. (i) Amplitude of waveform Q = (ii) Peak to peak value of waveform P = (iii) Frequency of waveform P =
- The wavelorm displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 50 ms/cm, and the 'volts/cm' switch is set to 40 V/cm. Determine the (1) amplitude of waveform Q, (ii) peak to peak value of waveform P, (111) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees. 主 Upload your Answers steps in the "Final Answer Submission" Link provided in the Moodle (i) Amplitude of waveform Q = (ii) Peak to peak value of waveform P (iii) Frequency of waveform P =The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 0.2 ms/cm, and the 'volts/cm' switch is set to 50 V/cm. Determine the (i) amplitude of waveform Q, (ii) peak to peak value of waveform P, (iii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees.The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 20 ms/cm, and the 'volts/cm' switch is set to 30 V/cm. Determine the (i) amplitude of waveform Q, (ii) peak to peak value of waveform P, (iii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees and (v) R.m.s value of waveform Q.
- PROBLEM: The diode (blue line) should be at -10V not -8V SOFTWARE USED: LTspice XVII---Figure 1 is my work, and figure 2 is the correct sample. Please tell me what I did wrong. Thank you :))---Below is the .asc filehttps://www.mediafire.com/file/zxauoh86zi79nfu/EXPERIMENT_01.asc/fileThe waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 20 ms/cm, and the 'volts/cm' switch is set to 30 V/cm. Determine the (i) amplitude of waveform Q, (ii) peak to peak value of waveform P, (iii) frequency of waveform P and (iv) phase angle difference between P and Q in Degrees and (v) R.m.s value of waveform Q. Note: Please do not handwritingWhen a sinusoidal voltage at 60 Hz is applied to the input of a half-wave rectifier, the output frequency is: (a) 120Hz (b) 30Hz (c) 60Hz (d) 0Hz
- A sinusoidal waveform displayed on an oscilloscope is shown in Figure 2. The 'time/cm' switch is on 10 ms and the 'volts/cm' switch is on 5V/cm. Determine for the waveform: a) The frequency of both waveforms b) The peak-to-peak value of waveform Q c) The amplitude of waveform P d) The r.m.s. value of waveform Q e) The phase difference of waveform Q relative to waveform PQUESTION 11 The voltage signal coming out of the capacitor is with small ripples compare to the voltage signal out of the diode. O True O FalseThe waveform displayed on an oscilloscope is as shown in Figure 3. The 'time/cm' switch is set to 2 ms/cm, and the 'volts/cm' switch is set to 0.5 V/cm. Determine: (i) amplitude of waveform Q (ii) peak to peak value of waveform P P (iii) frequency of waveform P (iv) angular frequency of waveform Q and (v) phase angle difference between P and Q in Degrees. 主 24°C Type here to search