QUESTION IMAGE
Question
which of the following changes will result in a stronger electromagnet? a. using a higher voltage b. using a longer wire c. using a shorter nail d. using fewer coils of wire
Brief Explanations
- Option A: Higher voltage increases current (\(I=\frac{V}{R}\), assuming resistance \(R\) is constant). The strength of an electromagnet is related to the current (\(B = \mu_0nI\), where \(n\) is the number of turns per unit length and \(I\) is current). More current means stronger magnetic field.
- Option B: A longer wire (if it's just a longer wire without more coils) may increase resistance (\(R=
ho\frac{l}{A}\), where \(
ho\) is resistivity, \(l\) is length, \(A\) is cross - sectional area). If voltage is constant, current \(I=\frac{V}{R}\) will decrease. A decrease in current weakens the electromagnet.
- Option C: The length of the nail (core) within reasonable limits (as long as it's a ferromagnetic core) does not directly make the electromagnet stronger. The key factors are current and number of coils.
- Option D: Fewer coils (\(n\) in \(B=\mu_0nI\)) will result in a weaker magnetic field for the electromagnet.
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A. Using a higher voltage