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For the arrangement shown in Fig. determ...

For the arrangement shown in Fig. determine the magnetic field at centre O.

Text Solution

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Let current flowing through coil 1 be `i_1` and through coil 2 be `i_2`.

Radius of each coil=R. Hence, magnetic field at O due to coil
1 is
`vecB_1=(mu_0i_1)/(2R) hati`
and magnetic field at O due to coil 2 is
`vecB_2=(mu_0i_2)/(2R) hatj`
Therefore, net megnetic field `vecB=vecB_1+vecB_2`
` implies vecB=(mu_0i_1)/(2R) hati+(mu_0i_2)/(2R) hatj`
` implies |vecB|=(mu_0)/(2R) sqrt(i_1^2+i_2^2)`
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CENGAGE PHYSICS ENGLISH-SOURCES OF MAGNETIC FIELD-Concept Exercise 2.1
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  2. A circular loop of radius R carries current I2 in a clockwise directio...

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  3. For the arrangement shown in Fig. determine the magnetic field at cent...

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  4. Four long, parallel conductors carry equal currents of 5.0. The direct...

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  5. A long vertical wire carrying a current of 10A in the upward direction...

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  6. Figure shows a long wire bent at the middle to form a right angle. Sho...

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  7. In Fig. two long parallel wires (seen end-on) that are a distance R ap...

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  8. Figure shows a square loop of edge a made of a uniform wire. A current...

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  9. Let two long parallel wires, a distance d apart, carry equal currents ...

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  10. A long, circular pipe, with an outside radius R, carries a (uniformly ...

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  11. Shown in Fig. is an end-on view of three long, straight, parallel cond...

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  12. In Fig, find the magnetic field at point P.

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  13. Current I flows through a long conducting wire bent at right angle as ...

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  14. A wire is bent into the shape shown in fig and the magnetic field is m...

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  15. Charge is sprayed onto a large non-conducting belt above the left-hand...

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  16. An infinitely long, noc-conducting cylidner of radius R lies along the...

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  17. In Fig, find the magnetic field at point P. The loop is lying in x-y p...

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  18. Two long, straight wires, one above the other, are separated by a dist...

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  19. A long straight wire along the Z-axis carries a current I in the negat...

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  20. Calculate the magnitude of the magnetic field at point P as shown in F...

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