Skip to content
Question of 55

Q.(क/a) [3 marks] What is Biot-Savart's Law? Write its vector form and compare it with Coulomb's law. (ख/b) [1 mark] Define 'One ampere' on the basis of the force acting between two parallel current carrying conductors.

(OR)
(क/a) [2 marks] How is a bar magnet equivalent to a current carrying solenoid? Explain. (ख/b) [2 marks] A short bar magnet placed with its axis at 30° with a uniform external magnetic field of 0.25 T experiences a torque of magnitude equal to 4.5×10−2 J4.5\times10^{-2}\ \text{J}. What is the magnitude of the magnetic moment of the magnet?
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 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 →

Biot–Savart law gives the field of a current element (vector, inverse-square, non-central); it parallels Coulomb's law for charge but differs in being for a vector source and giving a perpendicular field direction.

(क/a) Biot-Savart Law [3 marks]: It gives the magnetic field dB⃗d\vec B produced at a point by a small current element I dl⃗I\,d\vec l:

dB⃗=μ04πI dl⃗×r^r2d\vec B = \dfrac{\mu_0}{4\pi}\dfrac{I\,d\vec l\times\hat r}{r^2}

where rr is the distance from the current element to the point, and r^\hat r is the unit vector from the element to the point. In magnitude, dB=μ04πI dlsin⁡θr2dB = \dfrac{\mu_0}{4\pi}\dfrac{I\,dl\sin\theta}{r^2}, where θ\theta is the angle between dl⃗d\vec l and r^\hat r.

Comparison with Coulomb's Law (dE⃗=14πε0dqr2r^d\vec E = \dfrac{1}{4\pi\varepsilon_0}\dfrac{dq}{r^2}\hat r):

  • Both are inverse-square laws in rr.
  • Both fields are long-range and obey the principle of superposition.
  • The source in Coulomb's law is a scalar (charge element dqdq); the source in Biot–Savart's law is a vector (current element I dl⃗I\,d\vec l).
  • The electrostatic field is central — it points along the line joining the source and the field point. The magnetic field from a current element is non-central — because of the cross product dl⃗×r^d\vec l \times \hat r, it is perpendicular to the plane containing dl⃗d\vec l and r^\hat r.

(ख/b) Definition of One Ampere [1 mark]: One ampere is defined as that constant current which, if maintained in each of two straight, parallel conductors of infinite length and negligible cross-section, placed 1 metre apart in vacuum, would produce between them a force of 2×10−72\times10^{-7} newton per metre of their length.

OR

…

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.