Skip to content
Question of 55

Q.Describe the construction of suspended coil galvanometer, draw labelled diagram of it. Prove that current flowing in the coil of galvanometer is directly proportional to the deflection generated in the coil. OR What is Helmholtz coils? Prove that the value of a uniform magnetic field obtained in the Helmholtz coil is 1.432 times the magnetic field generated by each coil at its centre. Draw necessary graph also.

Rajasthan RbseRajasthan Board Senior Secondary Examination 2020Subjective· 4mImportance★★★★★
0% · 0/55 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →
Figure — The answered alternative (suspended/moving-coil galvanometer) explicitly asks for a labelled diagram; the cata
Figure — The answered alternative (suspended/moving-coil galvanometer) explicitly asks for a labelled diagram; the cata

The galvanometer's radial magnetic field design makes the deflecting torque simply proportional to current, and this is balanced against a restoring torque proportional to the twist angle — so current turns out directly proportional to deflection.

Construction of a suspended-coil (moving-coil) galvanometer:

It consists of a rectangular coil of many turns of thin insulated copper wire, wound on a light non-magnetic (aluminium) frame. This coil is suspended by a thin phosphor-bronze strip/fibre between the cylindrical pole pieces (N and S) of a strong permanent horseshoe magnet. A soft-iron cylindrical core is placed inside the coil (fixed, coil rotates around it) to concentrate and shape the field. The pole pieces are curved (cylindrical) and the soft-iron core makes the magnetic field radial — i.e. always parallel to the plane of the coil regardless of its orientation. A small mirror is attached to the suspension fibre to reflect a beam of light onto a scale, allowing precise measurement of small deflections (lamp-and-scale arrangement). The lower end of the coil is connected to a light spring (hairspring) which also serves as a current lead and provides a restoring torque.

Proof that current ∝ deflection:

When a current II flows through the coil of NN turns and area AA, placed in the radial field of magnitude BB, each turn experiences a torque, and because the field is always in the plane of the coil (radial), the deflecting torque is:

τdeflecting=NIAB\tau_{deflecting}=NIAB

…

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.