ElectroMagnetic InductionHard
Question
Match List-I with List-II.
| List-I (Relation) | List-II (Law) | ||
|---|---|---|---|
| A. | $$\text{∮}\ \overrightarrow{E} \cdot \overrightarrow{d} = - \frac{d}{dt}\text{∮}\ \overrightarrow{B} \cdot \overrightarrow{d}a$$ | I. | Ampere's circuital law. |
| B. | $\text{∮}\ $ B. $\overrightarrow{d} = \mu_{0}\left( 1 + \epsilon_{0}\frac{d\phi_{E}}{dt} \right)$ | II. | Faraday's laws of electromagnetic induction. |
| (C) | $$\text{∮}\ \overrightarrow{E}.\overrightarrow{d}a = \frac{1}{\epsilon_{0}}\int\rho dv$$ | III. | Ampere-Maxwell law |
| (D) | $$\text{∮}\ \overrightarrow{B} \cdot \overrightarrow{d}\overrightarrow{l} = \mu_{0}I$$ | IV. | Gauss's law of electrostatics |
Choose the correct answer from the options given below:
Options
A.A-II, B-III, C-I, D-IV
B.A-II, B-III, C-IV, D-I
C.A-I, B-IV, C-III, D-II
D.A-IV, B-I, C-II, D-III
More ElectroMagnetic Induction Questions
In a D.C. motor the back emf will be maximum at the :-...If a diamagnetic material is placed in a magnetic field, the flux density inside the material compared to that outside w...In the LR circuit shown, what is the variation of the current I as a function of time ? The switch is closed at time t =...In the given circuit find the ratio of i1 to i2. Where i1 is the initial (at t = 0) current, and i2 is steady state (at ...The frequency of oscillation of current in the inductor is :...