31. Two long parallel wires are at a distance $$2d$$ apart. They carry steady equal currents flowing out of the plane of the paper as shown. The variation of the magnetic field $$B$$ along the line $$XX'$$  is given by

A Magnetic Effect of Current mcq option image
B Magnetic Effect of Current mcq option image
C Magnetic Effect of Current mcq option image
D Magnetic Effect of Current mcq option image
Answer :   Magnetic Effect of Current mcq option image
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32. A uniform magnetic field acts right angles to the direction of motion of electrons. As a result, the electron moves in a circular path of radius $$2\,cm.$$  If the speed of electrons is doubled, then the radius of the circular path will be

A $$2.0\,cm$$
B $$0.5\,cm$$
C $$4.0\,cm$$
D $$1.0\,cm$$
Answer :   $$4.0\,cm$$
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33. A wire carrying current $$I$$ has the shape as shown in adjoining figure. Linear parts of the wire are very long and parallel to $$X$$-axis while semicircular portion of radius $$R$$ is lying in $$Y-Z$$  plane. Magnetic field at point $$O$$ is :
Magnetic Effect of Current mcq question image

A $$\overrightarrow B = - \frac{{{\mu _0}}}{{4\pi }}\frac{I}{R}\left( {\mu \hat i \times 2\hat k} \right)$$
B $$\overrightarrow B = - \frac{{{\mu _0}}}{{4\pi }}\frac{I}{R}\left( {\pi \hat i + 2\hat k} \right)$$
C $$\overrightarrow B = \frac{{{\mu _0}}}{{4\pi }}\frac{I}{R}\left( {\pi \hat i - 2\hat k} \right)$$
D $$\overrightarrow B = \frac{{{\mu _0}}}{{4\pi }}\frac{I}{R}\left( {\pi \hat i + 2\hat k} \right)$$
Answer :   $$\overrightarrow B = - \frac{{{\mu _0}}}{{4\pi }}\frac{I}{R}\left( {\pi \hat i + 2\hat k} \right)$$
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34. A long straight wire of radius $$a$$ carries a steady current $$i.$$ The current is uniformly distributed across its cross section. The ratio of the magnetic field at $$\frac{a}{2}$$ and $$2a$$ is

A $$\frac{1}{2}$$
B $$\frac{1}{4}$$
C 4
D 1
Answer :   1
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35. A particle of mass $$m$$ and charge $$q$$ enters a region of magnetic field (as shown) with speed $$v.$$ There is a region in which the magnetic field is absent, as shown. The particle after entering the region collides elastically with a rigid wall. Time after which the velocity of particle becomes antiparallel to its initial velocity is
Magnetic Effect of Current mcq question image

A $$\frac{m}{{2qB}}\left( {\pi + 4} \right)$$
B $$\frac{m}{{qB}}\left( {\pi + 2} \right)$$
C $$\frac{m}{{4qB}}\left( {\pi + 2} \right)$$
D $$\frac{m}{{4qB}}\left( {2\pi + 3} \right)$$
Answer :   $$\frac{m}{{2qB}}\left( {\pi + 4} \right)$$
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36. A galvanometer of resistance $$5\,ohms$$  gives a full scale deflection for a potential difference of $$10\,mV.$$  To convert the galvanometer into a voltmeter giving a full scale deflection for a potential difference of $$1\,V,$$  the size of the resistance that must be attached to the voltmeter is

A $$0.495\,ohm$$
B $$49.5\,ohm$$
C $$495\,ohm$$
D $$4950\,ohm$$
Answer :   $$495\,ohm$$
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37. A current carrying coil is subjected to a uniform magnetic field. The coil will orient so that its plane becomes

A inclined at $${45^ \circ }$$ to the magnetic field
B inclined at any arbitrary angle to the magnetic field
C parallel to the magnetic field
D perpendicular to magnetic field
Answer :   parallel to the magnetic field
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38. A conducting ring of mass $$2\,kg$$  and radius $$0.5\,m$$  is placed ring on a smooth horizontal plane. The ring carries a current of $$i = 4\,A.$$   A horizontal magnetic field $$B = 10\,T$$   is switched on at time $$t = 0$$  as shown in fig. The initial angular acceleration of the ring will be
Magnetic Effect of Current mcq question image

A $$40\,\pi \,rad\,{s^{ - 2}}$$
B $$20\,\pi \,rad\,{s^{ - 2}}$$
C $$5\,\pi \,rad\,{s^{ - 2}}$$
D $$15\,\pi \,rad\,{s^{ - 2}}$$
Answer :   $$40\,\pi \,rad\,{s^{ - 2}}$$
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39. Two equal electric currents are flowing perpendicular to each other as shown in the figure. $$AB$$  and $$CD$$  are perpendicular to each other and symmetrically placed w.r.t the currents, where do we expect the resultant magnetic field to be zero?
Magnetic Effect of Current mcq question image

A On $$AB$$
B On $$CD$$
C On both $$AB$$  and $$CD$$
D On both $$OD$$  and $$BO$$
Answer :   On $$AB$$
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40. A conducting loop is placed in a magnetic field of strength $$B$$ perpendicular to its plane. Radius of the loop is $$r,$$ current in the loop is $$i$$ and linear mass density of the wire of loop is $$m.$$ Speed of any transverse wave in the loop will be

A $$\sqrt {\frac{{Bir}}{m}} $$
B $$\sqrt {\frac{{Bir}}{{2m}}} $$
C $$\sqrt {\frac{{2Bir}}{{m}}} $$
D $$2\sqrt {\frac{{Bir}}{m}} $$
Answer :   $$\sqrt {\frac{{Bir}}{m}} $$
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