How does the size of the ball on the plunger affect the amplitude of the waves?

How does the size of the ball on the plunger affect the amplitude of the waves?

How does the size of the ball on the plunger affect the amplitude of the waves? As the size of the ball on the plunger increases, the amplitude of the waves increases. As the speed of the plunger increases, the frequency of the waves increases.

What effect if any does increasing the size of the plunger have on the wavelength of the waves?

3. What affect, if any does increasing the speed of the plunger have on the WAVELENGTH of the waves? As the speed of the plunger increases so does the frequency of the waves. 4.

What does amplitude do to a wave?

The amplitude is a measure of the strength or intensity of the wave. For example, when looking at a sound wave, the amplitude will measure the loudness of the sound. The energy of the wave also varies in direct proportion to the amplitude of the wave.

How does amplitude change with distance from the disturbance?

The energy carried in a wave depends on the wave’s amplitude and its velocity. Again, as they spread the energy carried is also spread, so as the distance from the source is increased, the amplitude is decreased, but this time as the square of the distance.

Does frequency affect amplitude?

The higher the amplitude, the higher the energy. To summarise, waves carry energy. The amount of energy they carry is related to their frequency and their amplitude. The higher the frequency, the more energy, and the higher the amplitude, the more energy.

How does speed affect the frequency How does it affect the wavelength?

For a given type of wave in a given medium a larger frequency means a smaller wavelength. A specific type of wave in a specific medium has a constant speed. If the medium does not change then v is a constant and wavelength and frequency are inversely proportional.

What is meant by amplitude in physics?

amplitude, in physics, the maximum displacement or distance moved by a point on a vibrating body or wave measured from its equilibrium position. It is equal to one-half the length of the vibration path.