(h) Reverse the positions of R and L and measure VL (p.p) (to ensure that the oscillator (or generator) and the oscilloscope have a common ground). 10 kHz E=8V (p-p) L 000 10 mH R measured R 1 ΚΩ + Channel 2 Channel 1 Vert.: 1 V/div. Vert.: 1 V/div. Hor.: 20 μs/div. Hor.: 20 us/div.
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- Identify which measurement this oscilloscope time difference reading is useful for. Oscilloscope-XSC1 Time 250.000 us 1.261 ms Channel_A 169.064 V 168.513 V -550. 584 mV Channel_B 89. 282 V 95.005 V 5.722 V Reverse T2-T1 1.011 ms Save Ext. trigger Timebase Scale: 200 us/Div : Scale: 100 V/Div X pos. (Div): 0 Channel A Channel B Scale: 100 V/Div Y pos. (Div): 0 Trigger Edge: F Level: 0 A B Ext Y pos. (Div): 0 V Y/T Add B/A A/B AC DC AC DC Single Normal O period O none of the above O phase shiftFrom the following oscilloscope trace, provide the following parameters: (a) Period (b) Frequency (c) Peak-to-peak voltage (d) Peak voltage (e) RMS voltageThe waveform on the screen of horizontal division an oscilloscope is 4 squares high from bottom to top, as in the Figure below. sensitivity is Volts/Div, what is the peak- to-peak bottom) of the input signal, and what is the amplitude of vertical division If the 2.5 horizontal divisions set to 0.2 voltage (top-to- 4 vertical divisions the oscillation?
- An RC series circuit is connected to a 120-V, 60-Hz power source. The resistor is 25 and has a voltage drop of 65 volts. What is the capacitance of the capacitor?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.Please answer the questions on the figure!
- Upload a time waveform that plots two waves. Both waves will represent one cycle of a tone that is two octaves below 1 6 kHz with a peak amplitude of 1. The two waves should be 180 degrees out-of-phase.3. A double beam oscilloscope displays 2 sine waveforms A and B. The time/cm switch is on 100us/cm and the volt/cm switch on 2V/cm. The width of each complete cycle is 6 cm for both the waveforms. The height of waveforms A and B are 3 cm and 3.5cm respectively. Determine their a) frequency, b) phase difference, and c) peak and r.m.s value of voltages. The difference between the two waveforms is 0.6 cm.A three phase full wave rectifier is shown below. The input phase voltage peak is Vm=311.128 V. The load is purely resistive of value 52. The DC and RMS output voltages are respectively equal to: Secondary 太D太D,太D, 太D。太De太D, b. Select one: O a. 180V, 240.2V O b. 514.6V, 515.04V O c. 180V, 197.2V O d. 220V, 249.2V
- 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 searchQ5) The schematic circuit in PLECS for a single-phase rectifier is shown below, Q5) The schematic circuit in PLECS for a single-phase rectifier is shown below, Thyristor Crout Probe Pulse Generator VC, pulses Probe Scope Thy Orso v Joad O R: 1 The output voltage across R is depicted in 0.5 0.0- b) 0.2 0.0 d)If V=2V, input voltage Vi is a sine wave with 5V peak and R=1kohm. Plot the output waveform. Assume Practical approximation BIH R No