the sound gets louder
As a seismic wave grows larger, the energy it carries remains constant. The amplitude (height) of the wave increases, but the total energy the wave carries does not change. The energy is redistributed within the wave to accommodate the larger amplitude.
The amplitude of a sound corresponds to its loudness so an increase in amplitude will correspond to a louder sound.
When the frequency of a wave increases, the wavelength decreases, assuming the speed of the wave remains constant. This is because the speed of a wave is the product of its frequency and wavelength. Therefore, with a higher frequency, the energy of the wave also increases, leading to more pronounced effects in phenomena such as sound and electromagnetic waves.
Wavelength.
The amplitude (The height of the wave) of the wave increases as the sound gets louder.
If the amplitude of a wave is increased, the energy that the wave carries also increases. Amplitude is directly proportional to energy in a wave, so as the amplitude grows, the energy of the wave increases.
The energy of a sound wave is directly proportional to its amplitude. This means that as the amplitude of a sound wave increases, so does its energy.
It becomes louder. The amplitude of the sound wave increases
When the amplitude of a sound wave increases, the volume or loudness of the sound also increases. This is because amplitude is directly related to the amount of energy in a sound wave, and a higher amplitude means more energy is being transferred, resulting in a louder sound.
As a seismic wave grows larger, the energy it carries remains constant. The amplitude (height) of the wave increases, but the total energy the wave carries does not change. The energy is redistributed within the wave to accommodate the larger amplitude.
The frequency of the wave increases as the number of vibrations producing the wave increases. Frequency is the number of vibrations per second, and as it increases, so does the pitch of the sound or the energy of the light wave.
As frequency increases the energy of a wave also increases.
The amplitude of a wave increases as the wave's energy increases. Amplitude refers to the maximum displacement of a wave from its equilibrium position. A higher energy wave will have a greater amplitude compared to a lower energy wave.
The energy transported by a sound wave is directly proportional to the square of the amplitude of the wave. This means that as the amplitude increases, the energy transported by the sound wave increases exponentially.
If the energy of a wave increases, the amplitude of the wave also increases. This is because amplitude is directly proportional to energy - as energy increases, more energy is imparted to the wave causing it to oscillate with greater magnitude.
Increasing the amplitude (or loudness) of the sound wave will increase the energy it carries. This can be achieved by increasing the volume of the sound source. Additionally, using a higher frequency sound wave can also carry more energy.
If the pitch of the sound increases, the frequency of the sound wave also increases. This means that the sound wave is oscillating at a faster rate, creating a higher pitch.