The fluid is in streamlined flow through a horizontal pipe with a variable cross-sectional area. Which of the following statements is correct?
| 1. | The velocity is maximum at the narrowest part of the pipe, and pressure is maximum at the widest part of the pipe. |
| 2. | Both the velocity and pressure are maximum at the narrowest part of the pipe. |
| 3. | Both the velocity and pressure are maximum at the widest part of the pipe. |
| 4. | The velocity is minimum at the narrowest part of the pipe, and the pressure is minimum at the widest part of the pipe. |
| 1. | wavelength is doubled and frequency becomes half |
| 2. | wavelength is halved and frequency remains unchanged |
| 3. | wavelength and frequency both remain unchanged |
| 4. | wavelength is doubled and frequency unchanged |
| 1. | \(U(x)<E\) | 2. | \(U(x)=0\) |
| 3. | \(U(x)\leq E\) | 4. | \(U(x)> E\) |

| 1. | \(\dfrac{3.08}{\sqrt{T}} ~\mathring{A}\) | 2. | \(\dfrac{0.308}{\sqrt{T}} ~\mathring{A}\) |
| 3. | \(\dfrac{0.0308}{\sqrt{T}} ~\mathring{A}\) | 4. | \(\dfrac{30.8}{\sqrt{T}} ~\mathring{A}\) |
| 1. | \(\dfrac{T_1-T_2}{2} \) | 2. | \(T_1 T_2 \) |
| 3. | \(\sqrt{T_1 T_2} \) | 4. | \(\dfrac{T_1+T_2}{2}\) |
| 1. | circle |
| 2. | hyperbola |
| 3. | ellipse |
| 4. | a straight line passing through the origin |