An infinitely long conductor PQR is bent to form a right angle as shown. A current I flows through PQR. The magnetic field due to this current at the point M is H1. Now another infinitely long straight conductor QS is connected at Q so that the current is I/2 in QR as well as in QS, The current in PQ remaining unchanged. The magnetic field at M is now H2The ratio H1/H2 is given by

1. 12                                                

2.  1

3.  23

4.  2

Subtopic:  Magnetic Field due to various cases |
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A very long straight wire carries a current I. At the instant when a charge +Qat point P has velocity v , as shown, the force on the charge is:

1. Opposite to OX                            
2. Along OX
3. Opposite to OY                             
4. Along OY

Subtopic:  Lorentz Force |
 74%
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An electric field of 1500 V / m and a magnetic field of 0.40 weber / meter2 act on a moving electron. The minimum uniform speed along a straight line the electron could have is

1. 1.6×1015m/s                         

2. 6×10-16m/s

3. 3.75×103m/s                         

4. 3.75×102m/s

Subtopic:  Lorentz Force |
 82%
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A coil having N turns is wound tightly in the form of a spiral with inner and outer radii a and b respectively. When a current I passes through the coil, the magnetic field at the centre is:

1. μ0NIb                                  2. 2μ0NIa

3. μ0NI2(b-a)lnba                         4. μ0IN2(b-a)lnba

Subtopic:  Magnetic Field due to various cases |
 80%
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An electron, moving in a uniform magnetic field of induction of intensity B, has its radius directly proportional to :

1. Its charge                       

2. Magnetic field

3. Speed                               

4. None of these

Subtopic:  Lorentz Force |
 83%
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What is a representation of the magnetic field caused by a straight conductor with a uniform cross-section and a steady current of radius \(a\)?
1.   2.
3. 4.
Subtopic:  Ampere Circuital Law |
 73%
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A non-planar loop of conducting wire carrying a current I is placed as shown in the figure. Each of the straight sections of the loop is of length 2a. The magnetic field due to this loop at the point P (a,0,a) points in the direction

1.  12-j^+k^                                   

2. 13(i^+j^+k^)

3.  13(-j^+k^+i^)                             

4.  12(i^+k^)                        

Subtopic:  Magnetic Field due to various cases |
 57%
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A particle of charge \(q\) and mass \(m\) is moving along the \(x\text-\)axis with a velocity of \(v\) and enters a region of electric field \(E\) and magnetic field \(\mathrm B\) as shown in the figure below. For which figure is the net force on the charge zero?

1. 2.
3. 4.
Subtopic:  Lorentz Force |
 61%
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A current-carrying wire is placed in a uniform magnetic field in the shape of the curve \(y= \alpha \sin \left({\pi x \over L}\right),~0 \le x \le2L.\) 
What will be the force acting on the wire?
                   

1. \(iBL \over \pi\) 2. \(iBL \pi\)
3. \(2iBL \) 4. zero
Subtopic:  Lorentz Force |
 69%
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 A long straight wire along the z-axis carries a current I in the negative z-direction. The magnetic field vector B at a point having coordinates (x, y) in the z = 0 plane is :

1. μ0I(yi^-xj^)2π(x2+y2)                 

2. μ0I(xi^+yj^)2π(x2+y2)

3. μ0I(xj^-yi^)2π(x2+y2)                 

4. μ0I(xi^-yj^)2π(x2+y2)

Subtopic:  Magnetic Field due to various cases |
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