270 FIG. 2.11 (e) Switch to the AC mode and sketch the waveform on Fig. 2.11. DC FAC f as part 5(e). It, (f) Now switch to the DC mode and sketch the waveform on the same scope pattern (g) What was the effect of switching from the AC to the DC mode? The wave form began to shift up ward a bit, but, the connection throught origin remain the Same Did the shape of the sinusoidal pattern change at all? No, the shape of sinusoidal patter remains the same. How does the vertical shift compare to the dc level of the battery? (h) Switch to the GND mode and describe what happened to the waveform. In general, what is the effect of switching to the GND position, no matter where the leads of the scope are connected? When switching to the GNO mode, the wave riarm becomes the line arcoss the zero line that pass through the screen, The reason is be cave it always bring the wave from to zero, as it does not effect by both the battery & the frequency.

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I need help understand on the question of how does the vertical shift compareto the dc level of battery.

270
FIG. 2.11
(e) Switch to the AC mode and sketch the waveform on Fig. 2.11.
DC
FAC
f
as part 5(e).
It,
(f) Now switch to the DC mode and sketch the waveform on the same scope pattern
(g) What was the effect of switching from the AC to the DC mode?
The wave form began to shift up ward a bit,
but, the connection throught origin remain the
Same
Did the shape of the sinusoidal pattern change at all?
No, the shape of sinusoidal patter remains the same.
How does the vertical shift compare to the dc level of the battery?
(h) Switch to the GND mode and describe what happened to the waveform. In
general, what is the effect of switching to the GND position, no matter where the leads of the
scope are connected?
When switching to the GNO mode, the wave riarm
becomes the line arcoss the zero line that pass through
the screen, The reason is be cave it always bring
the wave from to zero, as it does not effect by
both the battery & the frequency.
Transcribed Image Text:270 FIG. 2.11 (e) Switch to the AC mode and sketch the waveform on Fig. 2.11. DC FAC f as part 5(e). It, (f) Now switch to the DC mode and sketch the waveform on the same scope pattern (g) What was the effect of switching from the AC to the DC mode? The wave form began to shift up ward a bit, but, the connection throught origin remain the Same Did the shape of the sinusoidal pattern change at all? No, the shape of sinusoidal patter remains the same. How does the vertical shift compare to the dc level of the battery? (h) Switch to the GND mode and describe what happened to the waveform. In general, what is the effect of switching to the GND position, no matter where the leads of the scope are connected? When switching to the GNO mode, the wave riarm becomes the line arcoss the zero line that pass through the screen, The reason is be cave it always bring the wave from to zero, as it does not effect by both the battery & the frequency.
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