QuestionJune 2, 2025

The magnitude of self induced voltage within a winding is directly proportional to the current flow,the winding. and the frequency at which magnetic fields cut through the winding. True False

The magnitude of self induced voltage within a winding is directly proportional to the current flow,the winding. and the frequency at which magnetic fields cut through the winding. True False
The magnitude of self induced voltage within a winding is directly proportional to the current flow,the winding.
and the frequency at which magnetic fields cut through the winding.
True
False

Solution
4.5(222 votes)

Answer

True Explanation 1. Identify the relationship The self-induced voltage (also known as back EMF) in a winding is given by **Faraday's Law of Induction**, which states that the induced voltage is proportional to the rate of change of magnetic flux. This can be influenced by current, winding characteristics, and frequency. 2. Analyze the factors The magnitude of self-induced voltage depends on the number of turns in the winding, the rate of change of current (which relates to frequency), and the inductance, which is affected by the winding itself.

Explanation

1. Identify the relationship<br /> The self-induced voltage (also known as back EMF) in a winding is given by **Faraday's Law of Induction**, which states that the induced voltage is proportional to the rate of change of magnetic flux. This can be influenced by current, winding characteristics, and frequency.<br /><br />2. Analyze the factors<br /> The magnitude of self-induced voltage depends on the number of turns in the winding, the rate of change of current (which relates to frequency), and the inductance, which is affected by the winding itself.
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