very long wire is bent in a circle with a current of 3 Amps in the wire is shown in the figure .What is the value of the B field in micro Tesla unit, due to the configuration of circular wire at point P

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Chapter1: Units, Trigonometry. And Vectors
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A very long wire is bent in a circle with a current of 3 Amps in the wire is shown in the figure .What is the value of the B field in micro Tesla unit, due to the configuration of circular wire at point P?
The image depicts a physics diagram representing a current-carrying system. The diagram is composed of two main elements:

1. **Straight Wire:**
   - A horizontal straight wire is shown at the top of the diagram. It carries an electric current labeled as \( I = 200 \, \text{Amps} \), with the current direction indicated by an arrow pointing to the right.

2. **Circular Loop:**
   - Below the straight wire, there is a circular loop of wire. The loop is oriented in a plane perpendicular to the straight wire.
   - The radius of the loop is labeled as \( R = 4.14 \, \text{cm} \).
   - The direction of the current in the loop is indicated by arrows, showing a counterclockwise flow when viewed from the side.

3. **Point P:**
   - A point labeled \( P \) is marked at the center of the circular loop.

The diagram is likely used to demonstrate the interaction between magnetic fields generated by currents in different parts of the system, illustrating concepts such as the Biot-Savart law or Ampere's law in electricity and magnetism.
Transcribed Image Text:The image depicts a physics diagram representing a current-carrying system. The diagram is composed of two main elements: 1. **Straight Wire:** - A horizontal straight wire is shown at the top of the diagram. It carries an electric current labeled as \( I = 200 \, \text{Amps} \), with the current direction indicated by an arrow pointing to the right. 2. **Circular Loop:** - Below the straight wire, there is a circular loop of wire. The loop is oriented in a plane perpendicular to the straight wire. - The radius of the loop is labeled as \( R = 4.14 \, \text{cm} \). - The direction of the current in the loop is indicated by arrows, showing a counterclockwise flow when viewed from the side. 3. **Point P:** - A point labeled \( P \) is marked at the center of the circular loop. The diagram is likely used to demonstrate the interaction between magnetic fields generated by currents in different parts of the system, illustrating concepts such as the Biot-Savart law or Ampere's law in electricity and magnetism.
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