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The intensity will increase if the energy increase. The intensity is proportional to the square of the amplitude of a wave.

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How does mass affect the amplitude of a wave?

The mass of a medium does not affect the amplitude of a wave. The amplitude of a wave is determined by the energy of the wave and the displacement of the particles in the medium.


A wave in the ocean has amplitude of 3m. winds pick up suddenly increasing the wave's amplitude to 6m. how does this change in amplitude affect the wave's frequency and the amount of energy it transpo?

The increase in amplitude does not affect the wave's frequency, which is determined by the wave source. However, the energy transported by the wave is proportional to the square of the amplitude, so increasing the amplitude from 3m to 6m quadruples the energy transported by the wave.


Does increase in amplitude effect energy?

Yes, increasing the amplitude of a wave does affect its energy. Energy is directly proportional to the square of the amplitude of a wave. This means that doubling the amplitude of a wave will increase its energy by a factor of four.


What controls the amplitude of a wave?

wellllll energy of the wave controls the amplitude of a wave


What is the amplitude of a longitudinal wave and how does it affect the wave's characteristics?

The amplitude of a longitudinal wave is the maximum displacement of particles from their rest position. It affects the wave's characteristics by determining the wave's intensity and energy. A larger amplitude corresponds to a more intense wave with greater energy, while a smaller amplitude results in a weaker wave.


Does the amplitude of a wave proportionally affect its energy?

No, the amplitude of a wave does not affect its energy directly. The energy of a wave is primarily determined by its frequency. However, larger amplitudes can indicate more energy in a wave, particularly in cases like sound waves where higher amplitudes correspond to louder sounds.


How is a wave's amplitude related to energy?

The amplitude of a wave is directly proportional to the energy it carries. A higher amplitude wave carries more energy compared to a wave with a lower amplitude. This means that the larger the wave's amplitude, the more energy it can transfer.


How much energy does a low amplitude have?

A low amplitude wave carries less energy compared to a high amplitude wave. The energy of a wave is proportional to the square of its amplitude. Therefore, a wave with a low amplitude will have lower energy.


What is the relationship between the energy of a wave and its amplitude?

The energy of a wave is directly proportional to its amplitude. This means that as the amplitude of a wave increases, so does its energy. Conversely, if the amplitude decreases, the energy of the wave will also decrease.


A wave in the ocean has amplitude of 3 m Winds pick up suddenly increasing the wave's amplitude to 6m How does this change in amplitude affect the wave's frequency and the amount of energy it tra?

The change in amplitude does not affect the frequency of the wave, which is determined by factors like wind speed and water depth. However, the increase in amplitude means the wave is carrying more energy, proportional to the square of the amplitude change. This means the wave is now carrying four times the amount of energy it was before.


What are the differences in wave ampliture?

Wave amplitude refers to the maximum displacement of a particle from its rest position within a wave. The differences in wave amplitude can affect the energy carried by the wave - higher amplitude waves carry more energy than lower amplitude waves. Additionally, wave amplitude can also impact the perceived intensity or loudness of a wave in the case of sound waves.


What affect does frequency have on the amplitude of a wave?

The frequency of a wave does not directly affect its amplitude. Amplitude is determined by the energy of the wave, while frequency is the number of complete cycles of the wave that occur in one second. So, a change in frequency would not cause a change in the wave's amplitude.