Moving Charges and Magnetism
State Biot-Savart law in vector form.
State Ampere's circuital law.
What is the radius of the circular path of a charged particle in a perpendicular magnetic field?
What is the basic principle of a moving coil galvanometer?
How can a galvanometer be converted into an ammeter?
What is the force per unit length between two long parallel straight conductors carrying currents in the same direction?
What is the magnetic field inside a long current-carrying solenoid?
Derive the expression for the force per unit length between two long parallel current-carrying conductors and hence define one Ampere.
Explain the working principle of a moving coil galvanometer. How is a galvanometer converted into an ammeter?
State Biot-Savart Law. Derive an expression for the magnetic field at the center of a circular current-carrying coil of radius $r$ having $N$ turns.
Explain the principle, construction, working, and conversion of a Moving Coil Galvanometer into an Ammeter with necessary mathematical derivations.
State Biot-Savart law. Using this law, derive an expression for the magnetic field at a point situated at a distance $x$ from the center along the axis of a circular current-carrying coil of radius $R$ and having $N$ turns.
State Ampere's Circuital Law. Using this law, derive an expression for the magnetic field at a distance $r$ from a long, straight, current-carrying conductor.
State Biot-Savart Law. Derive an expression for the magnetic field at a point on the axis of a circular current-carrying loop. A circular coil of radius 10 cm, having 50 turns, carries a current of 2 A. Calculate the magnetic field at the center of the coil.