The amplitude of a wave can become smaller when it encounters resistance or damping in its medium, causing energy loss and a decrease in the wave's intensity. Additionally, interference with other waves, absorption by the medium, or distance from the source can also cause the amplitude to decrease.
A wave with smaller amplitude will have fewer particles experiencing maximum displacement compared to a wave with larger amplitude. This means that the smaller amplitude wave will have less energy and a lower intensity than the wave with larger amplitude.
No, the amplitude of a wave does not decrease as the wave becomes smaller. The amplitude of a wave is determined by the energy of the wave and is not directly related to the size of the wave.
The amplitude of a wave is directly related to the amount of disturbance in the water. A wave with a larger amplitude represents a larger disturbance in the water, while a wave with a smaller amplitude represents a smaller disturbance.
The amplitude of a wave is directly related to the amount of disturbance in the water. A larger disturbance will result in a wave with a greater amplitude, while a smaller disturbance will result in a wave with a smaller amplitude. This relationship helps determine the energy and intensity of the wave.
The amplitude of the wave determines how much energy it is carrying. A wave with a greater amplitude carries more energy than a wave with a smaller amplitude.
A wave with smaller amplitude will have fewer particles experiencing maximum displacement compared to a wave with larger amplitude. This means that the smaller amplitude wave will have less energy and a lower intensity than the wave with larger amplitude.
No, the amplitude of a wave does not decrease as the wave becomes smaller. The amplitude of a wave is determined by the energy of the wave and is not directly related to the size of the wave.
The amplitude of a wave is directly related to the amount of disturbance in the water. A wave with a larger amplitude represents a larger disturbance in the water, while a wave with a smaller amplitude represents a smaller disturbance.
The amplitude of a wave is directly related to the amount of disturbance in the water. A larger disturbance will result in a wave with a greater amplitude, while a smaller disturbance will result in a wave with a smaller amplitude. This relationship helps determine the energy and intensity of the wave.
The amplitude of the wave determines how much energy it is carrying. A wave with a greater amplitude carries more energy than a wave with a smaller amplitude.
Yes, the energy of a mechanical wave is directly proportional to the square of its amplitude. This means that a wave with a larger amplitude will carry more energy than a wave with a smaller amplitude.
If a wave has less energy, the amplitude of the wave becomes smaller. Amplitude is a measure of the maximum displacement of particles in a medium from their resting position. Less energy means the particles are not able to move as far from their resting position, resulting in a smaller amplitude.
Amplitude is the maximum displacement of a wave. The amplitude determine the loudness of the sound
The amplitude of a wave produces the intensity of the wave. With a light wave, it is the intensity of the light, with a sound wave, it is how loud the sound is
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.
Amplitude. As the amplitude of the sound wave increases, the sound becomes louder.
As amplitude increases, the particles in a longitudinal wave become denser.