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When attaching the mass to the spring in the oscillation experiment, what does increasing the mass aim to investigate?

a) Gravitational potential energy
b) Spring constant
c) Oscillation frequency
d) Restoring force

1 Answer

4 votes

Final answer:

Increasing the mass in an oscillation experiment aims to investigate the spring constant. Attaching additional mass to a spring in an oscillation experiment is done to investigate the effect on the oscillation frequency, confirming the inverse square root relationship between mass and frequency. The correct answer is C.

Step-by-step explanation:

When attaching a mass to a spring in an oscillation experiment, increasing the mass aims to investigate the spring constant. The spring constant determines how stiff or soft the spring is and affects the frequency of oscillation. By changing the mass, we can observe how the spring responds and calculate the spring constant.

Attaching additional mass to a spring in an oscillation experiment is done to investigate the effect on the oscillation frequency, confirming the inverse square root relationship between mass and frequency.

When attaching additional mass to a spring in an oscillation experiment, increasing the mass is done to investigate the oscillation frequency of the system. According to Hooke's Law and simple harmonic motion principles, the frequency of oscillation is determined by the spring constant and the mass attached to the spring. By increasing the mass, one can analyze how the frequency changes; this is exemplified by the formula for the period of oscillation T=2π√(m/k), where m is mass and k is the spring constant.

By attaching different masses to the spring, one can determine that the frequency is inversely proportional to the square root of the mass. Such an experiment confirms that the frequency does not depend on the amplitude of oscillation but is proportional to the square root of the spring constant and inversely proportional to the square root of the mass attached to the spring.

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