Oscillations

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Across
  1. 3. Principle stating total energy remains constant in ideal SHM.
  2. 5. Frequency of the external force applied in forced oscillations.
  3. 6. A factor representing resistance to oscillations.
  4. 8. Motion that moves back and forth about a fixed point.
  5. 10. Oscillations driven by an external periodic force.
  6. 11. Maximum displacement from the equilibrium position.
  7. 13. Maximum speed attained during SHM.
  8. 17. Motion that repeats itself at regular intervals.
  9. 18. Motion where damping is small, and oscillations persist.
  10. 20. The natural oscillation frequency of a system without external force.
  11. 22. Oscillations in systems where energy transfer occurs between components.
  12. 24. Sum of kinetic and potential energy in SHM.
  13. 25. Frequency at which maximum amplitude occurs in resonance.
  14. 26. Motion in a circular path with constant speed and periodicity.
  15. 27. A measure of how underdamped an oscillator is.
  16. 28. Energy associated with the motion of an oscillating body.
  17. 29. Motion where damping is large, preventing oscillations.
  18. 30. Oscillatory motion where restoring force is proportional to displacement.
Down
  1. 1. Maximum acceleration experienced in SHM.
  2. 2. Force responsible for bringing the system back to equilibrium.
  3. 4. Oscillations occurring due to twisting forces.
  4. 7. Time taken for one complete cycle of motion.
  5. 9. Damping condition where the system returns to equilibrium fastest.
  6. 12. Energy stored in the system due to displacement.
  7. 14. Law stating force is proportional to displacement in springs.
  8. 15. Rate of change of phase in oscillatory motion (rad/s).
  9. 16. Oscillations with decreasing amplitude due to energy loss.
  10. 19. Number of oscillations per second (Hz).
  11. 21. Initial angle in the phase equation of SHM.
  12. 23. A constant defining the stiffness of a spring.