The sound gets softer.
When the wavelength of electromagnetic waves decreases, the frequency of the waves increases. This means that the waves carry more energy and are more powerful. Lower wavelengths are associated with higher energy electromagnetic radiation such as X-rays and gamma rays.
As the wavelength of electromagnetic waves gets shorter, the energy carried by the waves increases. This is because energy is directly proportional to frequency, and shorter wavelengths correspond to higher frequencies. Therefore, as the wavelength decreases, the energy carried by the waves increases.
The energy in waves decreases as they travel further from the source due to spreading out over a larger area. This process is known as wave attenuation or wave dissipation. As a result, the intensity and amplitude of the waves decrease with distance from the source.
When the intensity of sound decreases, the amplitude of the sound waves decreases. This means that the sound waves carry less energy, resulting in a softer and quieter sound. The perception of loudness is directly related to the intensity of sound.
As you bring the source of light closer to the deflector the energy of the loss of energy from the light waves decreases. So the light waves strikes the deflector with greater energy. So more energy is needed to deflect them. Hence the deflection decreases.
What happens to a stars nuclear energy generation change if the core decreases in temperature?
As sound waves travel away from their source, the intensity (loudness) of the sound decreases due to the spreading out of the energy over a larger area. This phenomenon is known as the inverse square law, where the intensity decreases proportionally to the square of the distance from the source.
It decreases.
When waves slow down, their energy decreases and they may not be able to keep transporting sediment. The sediment will then settle out of the water and accumulate on the seafloor or coastline, a process known as deposition.
As the wavelength decreases, the frequency of the waves increases. This is because frequency and wavelength are inversely proportional - as one decreases, the other increases, according to the equation: speed = frequency x wavelength.
It decreases
The motion of the particles in a water wave decreases as depth increases because the energy from the wave at the surface losses it's power.