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The inductance of a closely packed coil ...

The inductance of a closely packed coil of 400 turns is 8.0 mH. Calculate the magnetic flux through the coil when the current is 5.0 mA.

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To solve the problem, we need to calculate the magnetic flux (Φ) through the coil using the given inductance (L) and current (I). The relationship between inductance, current, and magnetic flux is given by the formula: \[ \Phi = L \cdot I \] ### Step-by-Step Solution: ...
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RESNICK AND HALLIDAY-ELECTROMAGNETIC INDUCTION-PROBLEMS
  1. A certain elastic conducting material is stretched into a circular loo...

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  2. The inductor arrangement of Fig. 30-53, with L(1) = 50.0 mH, L(2) = 80...

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  5. A loop antenna of area 2.00 cm^(2) and resistance 5.21 μOmega. is perp...

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  6. Figure 30-55 shows two circular regions R(1) and R(2) with radii r(1) ...

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  7. In Fig. 30-56, a circular loop of wire 10 cm in diameter (seen edge-on...

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  8. The inductance of a closely packed coil of 400 turns is 8.0 mH. Calcul...

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  9. One hundred turns of (insulated) copper wire are wrapped around a wood...

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  10. A wire is bent into three circular segment of radius r = 10 cm as sho...

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  11. In Fig. 30-58, R = 15 Omega, L = 15 H , the ideal ba ttery has E = 10 ...

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  12. In Fig. 30-59, a long rectangular conducting loop, of width L , resist...

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  13. In Fig. 30-60, the magnetic flux through the loop increases according ...

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  14. Figure 30-61 shows a uniform magnetic field vecB confined to a cylindr...

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  15. A square loop 10 cm to a side is placed on a wooden table in a uniform...

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  16. The magnetic flux through each of give faces of a neutral playing dice...

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  17. Initially there is no magnetic flux through a certain conducting loop....

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  18. At the Earth's equator, B is horizontal and to the north, with a magni...

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  20. A cubical region of space with side lengths 0.05 m contains a uniform ...

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