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The magnetic flux linked with the coil (in Weber) is given by the equation:
φ = 5t2 + 3t + 16 The induced EMF in the coil at time, t = 4 will be:
  • a)
    - 27 V
  • b)
    - 43 V
  • c)
    - 108 V
  • d)
    210 V
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
The magnetic flux linked with the coil (in Weber) is given by the equa...
φ = 5t2 + 3t + 16
 |e| = dφ/dt
= d/dt(5t2 + 3t + 16)
= 10t + 3
|e|t=4 = 10(4) + 3 = 43 V
e = - 43 Volts
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Most Upvoted Answer
The magnetic flux linked with the coil (in Weber) is given by the equa...
The magnetic flux linked with the coil (in Weber) is given by the equation:

Φ = B * A * cos(θ)

Where:
- Φ is the magnetic flux linked with the coil, measured in Weber (Wb).
- B is the magnetic field strength, measured in Tesla (T).
- A is the cross-sectional area of the coil, measured in square meters (m^2).
- θ is the angle between the magnetic field lines and the normal to the coil's surface.

This equation represents the relationship between the magnetic field strength, the cross-sectional area of the coil, and the angle at which the magnetic field lines intersect the coil. The magnetic flux is a measure of the total magnetic field passing through the coil.
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