Explain how an waveform. oscilloscope may be use to display a current
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- 27) For the Double beam oscilloscope shown in Figure. Determine (i) the magnitude of pulse for waveform A and B, (ii) Time period of waveform A and B and (iii) Frequency of waveform A. The time/cm switch for waveform A is on 35 μs/cm, time/cm switch for waveform B is on 85μs/cm, the volts/cm switch for waveform A is on 35 V/cm and the volts/cm switch for waveform B is on 25 V/cm.3. 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 Figure 2The main purpose of an oscilloscope is to graph an electrical signal as it varies over time. Most scopes produce a two-dimensional graph with time on the x-axis and voltage on the y-axis. The voltage waveform on the screen looks as shown in the figure below. Here, the vertical resolution of the oscilloscope is set up to be 2 mV/division and the horizontal resolution is 2 ms/division. Time 1. Determine the peak-to-peak amplitude of the wave. Voltage
- The 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 searchA 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 PA 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: d) The r.m.s. value of waveform Q e) The phase difference of waveform Q relative to waveform P
- 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.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. Note: Please do not handwritingDraw the electrical model of a piezoelectric crystal. (ii) Over what portion of the reactance curve do we desire oscillations to take place when the crystal is used as part of a sinusoidal oscillator? Explain.
- The waveform displayed on an oscilloscope is as shown in Figure The 'time/cm' switch is set to 1 ms/cm, and the 'volts/cm' switch is set to 1 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. P 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 =-) Below are two voltage patterns measured from an oscilloscope. The voltage stage of the CHI probe is 5 V / div, the CH2 probe voltage stage is 10 V / div and the time axis is 2ms / div. According to this information, a) What are the peak to peak and rms voltage values of the voltages in CHI and CH2? b) What is the frequency of the voltages in Hz? c) How many degrees is the phase difference between the two voltages, which voltage is leading?15 The waveform display on the oscilloscope is shown in the figure: the scales of oscilloscope are (4 ms/div in horizontal which represent the time and 4 V/div in vertical which represents the Volt). Referring to the figure The Frequency of the wave is: t of volt uestion Ti -3 -2 -1 2 time Select one: a. 60 Hz b. 250 Hz C. 50 Hz d. 125 Hz ype here to search CD 近