Decreasing the wavelength of a wave while keeping the frequency constant will increase its energy. This is because energy is directly proportional to frequency according to the equation E=hf, where E is energy, h is Planck's constant, and f is frequency.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
The frequency of an electromagnetic (EM) wave is directly proportional to its energy. This means that as the frequency of the EM wave increases, so does its energy. Conversely, a decrease in frequency leads to a decrease in energy of the EM wave.
As the frequency of an electromagnetic wave increases, the energy of the wave increases. This is because energy is directly proportional to the frequency of the wave according to Planck's equation (E=hf), where h is Planck's constant.
The energy of a wave is directly proportional to the square of its amplitude. This means that as the amplitude of a wave increases, its energy also increases exponentially. Conversely, decreasing the amplitude of a wave will result in a decrease in its energy.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
The frequency of an electromagnetic (EM) wave is directly proportional to its energy. This means that as the frequency of the EM wave increases, so does its energy. Conversely, a decrease in frequency leads to a decrease in energy of the EM wave.
As the frequency of an electromagnetic wave increases, the energy of the wave increases. This is because energy is directly proportional to the frequency of the wave according to Planck's equation (E=hf), where h is Planck's constant.
The energy of a wave is directly proportional to the square of its amplitude. This means that as the amplitude of a wave increases, its energy also increases exponentially. Conversely, decreasing the amplitude of a wave will result in a decrease in its energy.
An increase in energy corresponds to an increase in frequency or a decrease in wavelength.
As a wavelength increases in size, its frequency and energy (E) decrease.
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.
If the frequency increases, the wavelength of the wave will decrease while the energy of the wave will increase.
Its frequency increases. Its energy increases (all other parameters being equal).
Increase decrease. The frequency MUST decrease.
When energy increases, the frequency increases.Source(s):my brain7th grade science textbook
As the depth of water increases, the wave speed tends to decrease. This is due to the decrease in wave amplitude as the wave energy is dispersed over a larger volume of water. The decrease in wave speed is also influenced by the change in water density and the effect of friction on the bottom of the water body.