√==G Circuit 1 00 Circuit 2 In the circuits shown in the diagrams above, an uncharged capacitor is connected in series with two batteries and either one lightbulb (circuit 1) or two lightbulbs identical to the first bulb (circuit 2). In circuit 1, the lightbulb stays lit for 25 seconds. The following questions refer to these circuits. You should draw diagrams representing the fields and charges in each circuit at the times mentioned, in order to answer the questions.
Three-Phase Transformers
Three-segment transformers are a type of transformer used to transform voltages of electrical systems into three ranges. Two type transformers are shell-type transformer and core type transformer. In brief, it could be described because of the exquisite kinds of configurations.
Transformer
Ever since electricity has been created, people have started using it in its entirety. We see many types of Transformers in the neighborhoods. Some are smaller in size and some are very large. They are used according to their requirements. Many of us have seen the electrical transformer but they do not know what work they are engaged in.
Please explain also.
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In the circuits shown in the diagrams above, an uncharged capacitor is connected in series with two batteries and either one
lightbulb (circuit 1) or two lightbulbs identical to the first bulb (circuit 2). In circuit 1, the lightbulb stays lit for 25 seconds. The
following questions refer to these circuits. You should draw diagrams representing the fields and charges in each circuit at the times
mentioned, in order to answer the questions.
Part 2
Circuit 2
* Your answer is incorrect.
00
Two seconds after connecting both circuits, which of the following are true? Check all that apply:
There is negative charge on the right plate of the capacitor in circuit 1.
At the location of the x in circuit 2 the fringe field of the capacitor point to the right.
There is more charge on the plates of capacitor 1 than there is on the plates of capacitor 2.
There is negative charge on the left plate of the capacitor in circuit 2.
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At the location of the x in circuit 1 the fringe field of the capacitor points to the left.
✔ At the location of the x in circuit 2 the net electric field points to the right.
Attempts: 6 of 10 used
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