- Tardigrade
- Question
- Physics
- A metal bar AB can slide on two parallel thick metallic rails separated by a distance I. A resistance R and an inductance L are connected to the rails as shown in the figure. A long straight wire, carrying a constant current 70 is placed in the plane of the rails as shown. The bar AB is held at rest at a distance xQ from the long wire. At t = 0, it made to slide on the rails away from the wire. Answer the following questions. (a) Find a relation among i,(di/dt) and (dφ/dt) where i is the current in the circuit and φ is the flux of the magnetic field due to the long wire through the circuit. (b) It is observed that at time t = T, the metal bar AB is at a distance of 2x0 from the long wire and the resistance R carries a current Obtain an expression for the net charge that has flown through resistance R from t = 0 to t = T. (c) The bar is suddenly stopped at time T. The current through resistance R is found to be t1,/4 at time 2T. Find the value of L/R in terms of the other given quantities.
Q.
A metal bar AB can slide on two parallel thick metallic rails separated by a distance I. A resistance R and an inductance L are connected to the rails as shown in the figure. A long
straight wire, carrying a constant
current 70 is placed in the plane of
the rails as shown. The bar AB is
held at rest at a distance xQ from the long wire. At t = 0, it made
to slide on the rails away from the wire. Answer the following
questions.
(a) Find a relation among i, and where i is the current
in the circuit and is the flux of the magnetic field due to
the long wire through the circuit.
(b) It is observed that at time , the metal bar AB is at a
distance of 2x from the long wire and the resistance
carries a current Obtain an expression for the net
charge that has flown through resistance from to
t = T.
(c) The bar is suddenly stopped at time . The current
through resistance R is found to be ,/4 at time 2T.
Find the value of L/R in terms of the other given quantities.

Solution: