When amplitude increases, so does the energy. This stems from E = hv where h is Planck's constant, v is nu (amplitude) and E is energy.
An increase in intensity of a wave causes the amplitude to increase as well. This is because intensity is directly proportional to the square of the amplitude of the wave. So, as intensity increases, the amplitude of the wave also increases.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
You can increase the amplitude of a longitudinal wave by increasing the energy or force that is causing the wave to propagate. This will result in higher density or compression regions in the wave, which increases its amplitude.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
When energy increases, the frequency increases.Source(s):my brain7th grade science textbook
An increase in intensity of a wave causes the amplitude to increase as well. This is because intensity is directly proportional to the square of the amplitude of the wave. So, as intensity increases, the amplitude of the wave also increases.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
You can increase the amplitude of a longitudinal wave by increasing the energy or force that is causing the wave to propagate. This will result in higher density or compression regions in the wave, which increases its amplitude.
The amplitude of a sound corresponds to its loudness so an increase in amplitude will correspond to a louder sound.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
When energy increases, the frequency increases.Source(s):my brain7th grade science textbook
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.
Increasing the energy or intensity of the source producing the wave can increase the wave amplitude. This can be achieved by increasing the magnitude of the disturbance that creates the wave initially.
Increasing the wavelength typically does not have a direct effect on the amplitude of a wave. The amplitude of a wave is usually determined by the energy or disturbance that created the wave, which is independent of its wavelength.
When the amplitude of a wave is doubled, the energy in the wave increases by a factor of four. This is because the energy in a wave is directly proportional to the square of the amplitude. So, if the amplitude is doubled, the energy will increase by a factor of four.
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.
Increasing the amplitude of a wave increases the maximum displacement of the wave particles from their equilibrium position. This results in a higher energy and intensity of the wave. It does not affect the frequency or wavelength of the wave.