A double beam oscilloscope displays 2 sine waveforms A and B. The time/cm switch is on 100 us/cm and the volt/cm switch is on 5 V/em. The width of each complete cycle is 10 cm for both the waveforms. The peak height of waveforms A and B are 3 cm and 3.5 cm respectively. The distance between consecutive crossover ( ta Jof waveforms A and B is 0.4 cm. Determine: (1) Frequency for waveform A (ii) Peak to peak voltage for waveform B (iii) R.M.S voltage for waveform A (iv) Phase difference

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A double beam oscilloscope displays 2 sine waveforms A and B. The time/cm switch is on 100 µs/em
вз
and the volt/cm switch is on 5 V/cm. The width of each complete cycle is 10 cm for both the
waveforms. The peak height of waveforms A and B are 3 cm and 3.5 cm respectively. The distance
between consecutive crossover ( ta )of waveforms A and B is 0.4 cm.
Determine:
(i) Frequency for waveform A
(ii) Peak to peak voltage for waveform B
(iii) R.M.S voltage for waveform A
(iv) Phase difference
Transcribed Image Text:A double beam oscilloscope displays 2 sine waveforms A and B. The time/cm switch is on 100 µs/em вз and the volt/cm switch is on 5 V/cm. The width of each complete cycle is 10 cm for both the waveforms. The peak height of waveforms A and B are 3 cm and 3.5 cm respectively. The distance between consecutive crossover ( ta )of waveforms A and B is 0.4 cm. Determine: (i) Frequency for waveform A (ii) Peak to peak voltage for waveform B (iii) R.M.S voltage for waveform A (iv) Phase difference
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