मराठी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान इयत्ता ११

So, 2tsinθ = I.(Dl × B) = I.2aθ B (Using Length of Any Arc, L =Rθ) ∵ θ is Very Small, Sinθ = θ 2tθ = I.2aθB ∴ T = Iab - Physics

Advertisements
Advertisements

प्रश्न

The figure shows a circular wire loop of radius a and carrying a current i, which is placed in a perpendicular magnetic field B. (a) Consider a small part dl of the wire. Find the force on this part of the wire exerted by the magnetic field. (b) Find the force of compression in the wire.

बेरीज

उत्तर

Given:-

Radius of the circular wire loop = a

Electric current flowing through the loop = i

Perpendicular magnetic field = B

(a) The force exerted by the magnetic field on a small element dl of the wire,
Fdl = i. (dl × B) = idlB

Using Fleming's left-hand rule, we can say that the direction of magnetic force is towards the centre for any small element of length dl of the wire (dl and B are perpendicular to each other).


(b) Suppose some part of wire loop subtends a small angle 2θ at the centre of a circular loop

So,

2Tsinθ = i.(dl × B)

= i.2aθ B (Using length of any arc, l =rθ)

∵ θ is very small, sinθ = θ

2Tθ = i.2aθB

∴ T = iaB

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 12: Magnetic Field - Exercises [पृष्ठ २३२]

APPEARS IN

एचसी वर्मा Concepts of Physics Vol. 2 [English] Class 11 and 12
पाठ 12 Magnetic Field
Exercises | Q 25 | पृष्ठ २३२

संबंधित प्रश्‍न

Draw a neat and labelled diagram of suspended coil type moving coil galvanometer.


A circular loop of area 1 cm2, carrying a current of 10 A, is placed in a magnetic field of 0.1 T perpendicular to the plane of the loop. The torque on the loop due to the magnetic field is


A circular loop of radius a, carrying a current i, is placed in a two-dimensional magnetic field. The centre of the loop coincides with the centre of the field (figure). The strength of the magnetic field at the periphery of the loop is B. Find the magnetic force on the wire.


Suppose that the radius of cross-section of the wire used in the previous problem is r. Find the increase in the radius of the loop if the magnetic field is switched off. Young's modulus of the material of the wire is Y.


A rectangular loop of sides 20 cm and 10 cm carries a current of 5.0 A. A uniform magnetic field of magnitude  0.20 T exists parallel to the longer side of the loop. (a) What is the force acting on the loop? (b) What is the torque acting on the loop?


A current-carrying circular coil of 100 turns and radius 5.0 cm produces a magnetic field of 6.0 × 10−5 T at its centre. Find the value of the current.


A moving coil galvanometer has been fitted with a rectangular coil having 50 turns and dimensions 5 cm × 3 cm. The radial magnetic field in which the coil is suspended is of 0.05 Wb/m2. The torsional constant of the spring is 1.5 × 10−9 Nm/degree. Obtain the current required to be passed through the galvanometer so as to produce a deflection of 30°.


Derive an expression for the net torque on a rectangular current carrying loop placed in a uniform magnetic field with its rotational axis perpendicular to the field.


A rectangular coil of length 0.12 m and width 0.1 m having 100 turns of wire is suspended vertically in a uniform magnetic field of strength 0.4 Wb/m2. The coil carries a current of 2.5 A. If the plane of the coil is inclined at an angle of 30° with the direction of the field, the torque required to keep the coil in stable equilibrium will be ____________.


A 100 turn rectangular coil measuring 0.02 m x 0.06 m of an ammeter is in a magnetic field of induction 0.4 tesla. The torsional constant of the suspension fibre is 5 x 10-7 newton x metre/degree. The maximum reading of the ammeter corresponds to a deflection of the coil through 30°. If the magnetic field is radial, then the maximum current that can be measured with this ammeter is ____________.


The sensitivity of a milliammeter of range 0 to 50 mA is x `"div"/"mA"`. If it is converted into an ammeter of range 500 mA by using a suitable shunt then the sensitivity will be ________.


If number of turns in moving coil galvanometer becomes half, then the deflection for the same current will become ____________.


The sensitivity of moving coil galvanometer is inversely proportional to ____________.


Which one of the following statements is 'NOT' TRUE? Sensitivity of a moving coil galvanometer can be increased by ____________.


Two cylinders A and B of the same material have same length, their radii being in the ratio 1 : 2 respectively. The two are joined end to end as shown in the figure. One end of cylinder A is rigidly clamped while free end of cylinder B is twisted through an angle θ. The angle of twist of cylinder A is ______.


A uniform conducting wire of length 12a and resistance R is wound up as a current-carrying coil in the shape of (i) an equilateral triangle of side a; (ii) a square of sides a and, (iii) a regular hexagon of sides a. The coil is connected to a voltage source V0. Find the magnetic moment of the coils in each case.


A thin flexible wire of length L is connected to two adjacent fixed points and carries a current I in the clockwise direction, as shown in the figure. When the system is put in a uniform magnetic field of strength B going into the plane of the paper, the wire takes the shape of a circle. The tension in the wire is ______.


Write the formula for torque acting on rotating current carrying coil in terms of magnetic dipole moment, in vector form.


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×