Short Wave length
Shorter wavelengths carry more energy than longer wavelengths. This is because the energy of a photon is inversely proportional to its wavelength, as described by the equation E = hc/λ, where E is energy, h is Planck's constant, c is the speed of light, and λ is the wavelength. Thus, shorter wavelengths correspond to higher energy photons.
Short-wavelength light carries more energy than long-wavelength light. This is because energy is directly proportional to frequency, and shorter wavelengths have higher frequencies. This relationship is described by Planck's equation, E = h*f, where E is energy, h is Planck's constant, and f is frequency.
Both a wave with long wavelength and a wave with short wavelength can have a lot of energy, or little energy.Specifically in the case of electromagnetic waves, a short wavelength corresponds to high energy - but this is only the energy PER PHOTON. But note that each of such waves usually consists of a lot of photons.
Radio waves carry the least amount of energy among all types of electromagnetic radiation. They have long wavelengths and low frequencies, which correspond to lower energy levels compared to higher frequency waves like gamma rays.
Short wavelengths has more energy. (X-rays Gamma rays belongs to this category.) Long wavelengths has less energy (radio waves and light belongs to this category). I hope this would be enough.
short haul in stm1 is below 30km and long haul which works for more then 30km.. there are differenet equipments for short haul and long haul.. working different wavelenght. long haul can work one 1310 nm and 1550nm.. but short haul can work on 1310 nm only..
what describes a electromagnectic wave with a long wavelengnth
Well in the short run, it is sunlight. In the long run, it is clean energy.:)
Well in the short run, it is sunlight. In the long run, it is clean energy.:)
It provides long-term energy.
Shorter wavelengths carry more energy than longer wavelengths. This is because the energy of a photon is inversely proportional to its wavelength, as described by the equation E = hc/λ, where E is energy, h is Planck's constant, c is the speed of light, and λ is the wavelength. Thus, shorter wavelengths correspond to higher energy photons.
Short-wavelength light carries more energy than long-wavelength light. This is because energy is directly proportional to frequency, and shorter wavelengths have higher frequencies. This relationship is described by Planck's equation, E = h*f, where E is energy, h is Planck's constant, and f is frequency.
For DC: four or six parallel lines - long, short, long, short, long, short. The long end is the positive part. For AC: a waveline (one cycle) within a circle.
As long as an elephant. An elephant carries the babies as long as a Pheonix. A Phoenix carries the babies as long as a dragon. A dragon carries the babies as long as a sea surpent. A sea surpent carries the babies as long as a girraffe. A giraffe carries the babies as long as a flugenflagen.
Both a wave with long wavelength and a wave with short wavelength can have a lot of energy, or little energy.Specifically in the case of electromagnetic waves, a short wavelength corresponds to high energy - but this is only the energy PER PHOTON. But note that each of such waves usually consists of a lot of photons.
i think long walk because you waste more energy than a short walk
long term it may elevate long term cancer risks