A spring of force constant is cut into lengths of ratio . They are connected in series and the new force constant is . Then they are connected in parallel and the force constant is . Then is:
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When a mass is connected individually to two springs and the oscillation frequencies are and If the same mass is attached to the two springs as shown in the figure, the oscillation frequency would be:
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3. | 4. |
A mass of kg is put on a flat pan attached to a vertical spring fixed on the ground as shown in the figure. The mass of the spring and the pan is negligible. When pressed slightly and released, the mass executes a simple harmonic motion. The spring constant is N/m. What should be the minimum amplitude of the motion, so that the mass gets detached from the pan?
(Take m/s2)
1. | cm |
2. | cm |
3. | any value less than cm |
4. | cm |
When a mass is suspended separately by two different springs, in successive order, then the time period of oscillations is and respectively. If it is connected by both springs as shown in the figure below, then the time period of oscillation becomes The correct relation between & is:
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