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The needle of a dip circle shows an appa...

The needle of a dip circle shows an apparent dip of `45^@` in a particular position and `53^@` when the circle is rotated through `90^@`. Find the true dip.

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If `delta_(1) and delta_(2)` be the apparent dips shown by the dip circle in the 2 perperdicular positions the true dip `delta` is diven by
`cot^(2) delta = cot^(2) delta_(1) + cot^(2)delta_(2)`
`rArr cot^(2) delta = cot^(2)45^(@) + cot^(2)53^(@)`
`cot^(2)delta = 1.56`
`cot^(2)delta = 1.56`
`delta = 38.6^(@) = 39^(@)
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HC VERMA-PERMANENT MAGNETS-Exercises
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  2. A bar magnet has a length of 8cm. The magnetic field at a point at a d...

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  3. A magnetic dipole of magnetic moment 1.44 A m^2 is placed horizontally...

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  4. A magnetic dipole of magnetic moment 0.72 Am^2 is planced horizontally...

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  5. A magnetic dipole of magnetic moment 0.72(sqrt(2) Am^2) is placed hori...

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  6. The magnetic moment of the assumed dipole at the earth's centre is 8.0...

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  7. If the earth's magnetic field has a magnitude 3.4 xx 10^(-5) T at the ...

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  8. The magnetic field due to the earth has a horizontal component of 26 m...

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  9. A magnetic needle is free to rotate in a vertical plance which makes a...

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  10. The needle of a dip circle shows an apparent dip of 45^@ in a particul...

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  11. A tangent galvanometer shown a deflection of 45^@ when 10 mA of curren...

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  12. A moving coil galvanometer has a 50-turn coil of size 2cm xx 2cm. It i...

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  13. A short magnet produces a deflection of 37^@ in a deflection magnetome...

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  14. The magnetometer of the previous problem is used with the same magent ...

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  15. A deflection magnetometer is placed with its arms in north-south direc...

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  16. A bar magnet takes pi/10 second to complete one oscillation in an osci...

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