if wave amplitudes are equal ,will high frequency waves carry more or less energy than low frequency waves
Wave with higher amplitude carry more energy than wave with lower amplitude. For simple consideration, no amplitude is no wave and thus no energy but just a flat surface of water. Wave with amplitude must have higher energy than the no wave.
In general, higher frequency waves carry more energy than waves of lower frequency if their amplitudes are equal. This is absolutely true of electromagnetic waves, and can probably be most easily demonstrated there.
No form of energy is ever created, you can only change one form into another. Waves come in many forms, and all of them carry energy, which can be transformed into other kinds of energy. Water waves, for instance, carry kinetic energy which can drive a generator to produce electrical energy, as well as waste heat energy. Light energy travels as waves, and this can be changed by a solar cell into electrical energy, or by a plant into chemical energy.
Most waves all require something with mass to be transmitted. However, electromagnetic waves carry energy in the form of photons, which are massless. Since photons are massless, they are not considered matter, but they do indeed carry energy. (This is why something feels warmer when the sun shines on it.) Electromagnetic waves range anywhere from radio waves, microwaves, and the common visible light waves, to x rays, and gamma rays.
Radio waves are energy. Electromagnetic energy to be exact. The amount of energy a radio wave has will depend on the amount of power the transmitter has, the amount of amplification, the quality of the cable connecting it to the antenna and finally the antenna. The amount of energy is usually measured in watts.
The amplitude of a wave indicates the amount of energy it carries. Waves with greater amplitudes carry more energy, while waves with lesser amplitudes carry less energy.
Wave with higher amplitude carry more energy than wave with lower amplitude. For simple consideration, no amplitude is no wave and thus no energy but just a flat surface of water. Wave with amplitude must have higher energy than the no wave.
In a transverse wave, the energy carried is proportional to the square of the amplitude. This means that waves with higher amplitudes carry more energy compared to waves with lower amplitudes.
No, the energy transported by a wave is proportional to the square of its amplitude. This means that waves with larger amplitudes actually carry more energy compared to waves with smaller amplitudes.
The amount of energy transferred by a wave is related to its amplitude and frequency. Waves with higher amplitudes and frequencies carry more energy.
Waves with large amplitude carry more energy because the energy of a wave is directly proportional to the square of its amplitude. This means that as the amplitude of a wave increases, the energy it carries also increases exponentially. So waves with large amplitudes have more energy compared to waves with smaller amplitudes.
You can compare the energy of two waves by calculating the square of their amplitudes. The wave with the higher amplitude will have more energy. Additionally, you can compare the frequencies of the waves - higher frequency waves generally carry more energy than lower frequency waves.
The greatest amount of energy in a wave is determined by its amplitude, which is the height of the wave from the resting position to the peak. Waves with higher amplitudes carry more energy.
The amplitude of a wave is directly proportional to its energy. Higher amplitude waves carry more energy than waves with lower amplitudes.
The more energy a wave carries, the greater its amplitude. Amplitude refers to the maximum displacement of a wave from its resting position. Waves with higher amplitudes carry more energy.
The energy of a wave is related to its amplitude (height of the wave) and frequency (number of waves that pass a point in a given time). Waves with greater amplitudes and higher frequencies generally carry more energy. Additionally, the speed of the wave can also impact its energy.
A mechanical wave that transports a lot of energy is called a high-energy wave. These waves typically have large amplitudes and carry significant amounts of energy as they propagate through a medium. Examples include seismic waves during earthquakes and ocean waves during storms.