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Introducing new quantities of simple harmonic oscillation through the position-time and velocity-time graphs

Introducing the mathematical formulas for position and velocity. Comparing the motion of the pendulum to the motion of an object on a spring

Showing through experiment that the period of a pendulum is not dependent on mass

Demonstrating how period is effected by the pendulum length. Learning and verifying the mathematical formula too.

Determining free-fall acceleration by measuring the periods of pendulums

Damping of the pendulum is caused by air-drag. Air-drag depends on the shape, size and square of velocity of a moving object.

Compare the amount by which the amplitude changes at the beginning and at the end of the motion.

Investigating the motion of the cyclist using its position-time and velocity-time graphs

Showing the relationship of the uniform circular motion with simple harmonic motion

Investigating the parameters describing the motion of an object suspended on a spring

Investigating the position-time, velocity-time and acceleration-time graphs and their relationships.

Investigating the relationship between the period of oscilation and mass with experiment

Writing a mathematical formula for dependence of period of oscillation on mass

Investigating the relationship between the period of oscillation and amplitude with experiment