Q5:A::How much voltage is required across wo delflection plates separated by 1 cm to deflect an electron beam 1.5cm if the length of the deflection plates is 2 cm änd the accelerating potential is 2000 V?[ take L 30 cm ]. Then find the vertical denection of the electron at the moment of departure of the vertical deflection plat. B: For the sweep generator shown, if the transistor is triggered every 5msec. by the impulses shown. Calculate.the.current through the capacitor and find the peak to peak voltage of the capacitor then sketch the voltage waveform across the capacitor. Assume zero discharge time.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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Q5:A::How much voltage is required across two deflection plates separated by 1 cm to
deflect an electron beam 1.5cm if the length of the deflection plates is 2 cm änd the
accelerating potential is 2000 V?[ take L= 30 cm ]. Then find the vertical denlection of the
electron at the moment of departure of the
vertical deflection plat.
B: For the sweep generator shown, if the transistor is triggered every 5msec. by the
impulses shown. Calculate the current through the capacitor and find the peak to peak
voltage of the capacitor then sketch the voitage waveform across the capacitor. Assume
zero discharge time.
Transcribed Image Text:Q5:A::How much voltage is required across two deflection plates separated by 1 cm to deflect an electron beam 1.5cm if the length of the deflection plates is 2 cm änd the accelerating potential is 2000 V?[ take L= 30 cm ]. Then find the vertical denlection of the electron at the moment of departure of the vertical deflection plat. B: For the sweep generator shown, if the transistor is triggered every 5msec. by the impulses shown. Calculate the current through the capacitor and find the peak to peak voltage of the capacitor then sketch the voitage waveform across the capacitor. Assume zero discharge time.
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