| A. | Inside a conductor, the electrostatic field is zero. |
| B. | The electric field at the surface of a charged conductor does not depend on its surface charge density. |
| C. | The interior of a charged conductor can have no excess charge in the static situation. |
| D. | At the surface of a charged conductor, the electrostatic field must be normal to the surface at every point. |
| E. | The electrostatic potential is zero everywhere inside a charged conductor. |
| List I (Electromagnetic wave) |
List II (Production) |
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| A. | Microwave | I. | Electrons in atoms emit light when they move from a higher energy level to a lower energy level |
| B. | Visible light | II. | Radioactive decay of nucleus |
| C. | Gamma rays | III | Vibration of atoms and molecules |
| D. | Infra-red rays | IV. | Klystron valve or magnetron valve |

| List I | List II | ||
| A. | Young's Modulus | I. | \(\dfrac{\Delta d}{\Delta L} \left( \dfrac{L}{d} \right)~\) |
| B. | Compressibility | II. | \(\dfrac{FL}{A(\Delta L)}~\) |
| C. | Bulk Modulus | III. | \(-\dfrac{1}{\Delta P} \left( \dfrac{\Delta V}{V} \right)~\) |
| D. | Poisson's Ratio | IV. | \(-P \left( \dfrac{V}{\Delta V} \right)~\) |
| 1. | DNA possesses a single strand helix structure and contains uracil as one of the four bases. |
| 2. | DNA possesses a double strand helix structure and contains thymine as one of the four bases. |
| 3. | RNA possesses a double strand helix structure and contains uracil as one of the four bases. |
| 4. | RNA possesses a single strand helix structure and contains thymine as one of the four bases. |
| List-I (Quantum Numbers) 'n' 'l' |
List-II (Orbital) |
||
| A. | 2 1 | I. | 3d |
| B. | 4 0 | II. | 2p |
| C. | 5 3 | III. | 4s |
| D. | 3 2 | IV. | 5f |
| 1. | covalent form to covalent form |
| 2. | ionic form to ionic form |
| 3. | covalent form to ionic form |
| 4. | ionic form to covalent form |

