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In an ideal transformer, what is the relationship between the number of turns in the primary coil (N1) and the number of turns in the secondary coil (N2)?a.N1 < N2b.N1 > N2c.No relationshipd.N1 = N2

Question

In an ideal transformer, what is the relationship between the number of turns in the primary coil (N1) and the number of turns in the secondary coil (N2)?a.N1 < N2b.N1 > N2c.No relationshipd.N1 = N2

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Solution

The relationship between the number of turns in the primary coil (N1) and the number of turns in the secondary coil (N2) in an ideal transformer can be any of the options given depending on the type of transformer.

a. N1 < N2: This is the case for a step-up transformer, where the voltage is increased from the primary to the secondary coil.

b. N1 > N2: This is the case for a step-down transformer, where the voltage is decreased from the primary to the secondary coil.

c. No relationship: This is not typically the case for an ideal transformer. The number of turns in the coils directly affects the voltage and current.

d. N1 = N2: This is the case for an isolation transformer, where the voltage remains the same from the primary to the secondary coil.

So, the relationship between N1 and N2 depends on whether the transformer is a step-up, step-down, or isolation transformer.

This problem has been solved

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