हिंदी

A Wire Ab is Carrying a Steady Current of 12 a and is Lying on the Table. Another Wire Cd Carrying 5 a is Held Directly Above Ab at a Height of 1 Mm.

Advertisements
Advertisements

प्रश्न

A wire AB is carrying a steady current of 12 A and is lying on the table. Another wire CD carrying 5 A is held directly above AB at a height of 1 mm. Find the mass per unit length of the wire CD so that it remains suspended at its position when left free. Give the direction of the current flowing in CD with respect to that in AB. [Take the value of g = 10 ms−2]

Advertisements

उत्तर

Force per unit length between the current carrying wires is given as: `F = (μ_0)/(4pi) (2I_1I_2)/r`

Let m be the mass per unit length of wire CD.

As the force balances the weight of the wire.

`therefore F = (μ_0)/(4pi) (2I_1I_2)/r = mg`

Here,m is mass per unit lenght.

`=> 10^-7 xx (2 xx 12 xx 5 )/(1xx 10^-3) = m xx 10`

`=>m= 10^-7 xx (2 xx 12 xx 5 )/(1xx 10^-3) xx 1/10 = 1.2 xx 10^-3  kg m^-1`

 

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
2012-2013 (March) All India Set 1

वीडियो ट्यूटोरियलVIEW ALL [1]

संबंधित प्रश्न

Obtain an expression for the energy stored in a solenoid of self-inductance ‘L’ when the current through it grows from zero to ‘I’.


Derive an expression for the mutual inductance of two long co-axial solenoids of same length wound one over the other,


Define the term self-inductance of a solenoid.


Obtain the expression for mutual inductance of a pair of long coaxial solenoids each of length l and radii r1 and r2 (r2 >> r1). Total number of turns in the two solenoids are N1 and N2, respectively.


Define self-inductance of a coil.


A wire AB is carrying a steady current of 10 A and is lying on the table. Another wire CD carrying 6 A is held directly above AB at a height of 2 mm. Find the mass per unit length of the wire CD so that it remains suspended at its position when left free. Give the direction of the current flowing in CD with respect to that in AB. [Take the value of g = 10 ms−2]


The magnetic field B inside a long solenoid, carrying a current of 5.00 A, is 3.14 × 10−2 T. Find the number of turns per unit length of the solenoid. 


A long solenoid is fabricated by closely winding a wire of radius 0.5 mm over a cylindrical nonmagnetic frame so that the successive turns nearly touch each other. What would be the magnetic field B at the centre of the solenoid if it carries a current of 5 A? 


A tightly-wound solenoid of radius a and length l has n turns per unit length. It carries an electric current i. Consider a length dx of the solenoid at a distance x from one end. This contains n dx turns and may be approximated as a circular current i n dx. (a) Write the magnetic field at the centre of the solenoid due to this circular current. Integrate this expression under proper limits to find the magnetic field at the centre of the solenoid. (b) verify that if l >> a, the field tends to B = µ0ni and if a >> l, the field tends to `B =(mu_0nil)/(2a)` . Interpret these results.


A long solenoid carrying a current produces a magnetic field B along its axis. If the current is doubled and the number of turns per cm is halved, the new value of magnetic field will be equal to ______.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×