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Q.(a) What is the working principle of a moving coil galvanometer?

(1)
(b) How will you convert a galvanometer into an ammeter?
(1)
(c) An ammeter is always connected in series with a circuit. Why? (1)
Kerala DhseKerala DHSE Plus Two Board 2025Subjective· 3mImportance★★★★★
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A galvanometer works by the torque a magnetic field exerts on a current-carrying coil; it becomes an ammeter with a low parallel shunt, and ammeters are wired in series so the same current to be measured flows through their (deliberately tiny) resistance.

  1. Working principle: A moving-coil galvanometer works on the principle that a current-carrying coil, placed in a (radial) magnetic field, experiences a torque τ=NIAB\tau = NIAB (N = turns, I = current, A = coil area, B = field). This deflecting torque is balanced by the restoring torque of a spring, kθk\theta, so the steady-state deflection θ∝I\theta \propto I — the deflection is a direct measure of the current.
  2. Converting to an ammeter: A galvanometer alone has an appreciable resistance and can carry only a small full-scale current IgI_g. To convert it into an ammeter that can measure larger currents, a small resistance called a shunt (S) is connected in parallel with the galvanometer. Most of the current bypasses through the low-resistance shunt, and only a small, fixed fraction IgI_g passes through the galvanometer, extending its range. …

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