In our Universe, EM radiation can only come in discrete chunks called "photons." The energy of each individual photon depends on the frequency of the EM radiation. Frequency depends on wavelength (or vice-versa): the shorter the wavelength, the higher the frequency. Thus, short wavelength photons have more energy. That's just how our Universe operates, whether or not we like it.
Gamma radiation
The shorter the wavelength of electromagnetic radiation, the higher its energy. Therefore, gamma rays, which have the shortest wavelength, carry the most energy.
The shortest wave is a Gamma wave
Gamma rays have the shortest wavelength out of radio waves, infrared waves, X-rays, ultraviolet light, and gamma rays. They are high-energy photons with extremely short wavelengths, making them the most energetic form of electromagnetic radiation.
Gamma rays have the shortest wavelength and highest energy of all forms of electromagnetic radiation, making them the most penetrating and ionizing. They are produced by nuclear reactions and radioactive decay. In comparison, visible light has longer wavelengths and lower energy levels.
Gamma radiation
I assume you are talking about electromagnetic radiation.If the wavelength is shorter, the frequency is larger. And the energy per photon is directly proportional to the frequency.
The shorter the wavelength of electromagnetic radiation, the higher its energy. Therefore, gamma rays, which have the shortest wavelength, carry the most energy.
gamma rays
Gamma rays have the shortest wavelength compared to most of other electromagnetic radiation. Gamma rays have high penetrating power and are high in frequency. Exposure to this type of radiation can cause many health complications.
The electromagnetic wave with the highest energy and shortest wavelength is called a gamma ray. Gamma rays have the shortest wavelength and highest frequency in the electromagnetic spectrum, making them the most energetic type of radiation.
The shortest wave is a Gamma wave
Gamma rays have the shortest wavelength and the highest energy of all types of electromagnetic radiation. They are produced by radioactive decay and nuclear explosions.
Gamma rays have the most energy per photon.
Gamma rays have the shortest wavelength out of radio waves, infrared waves, X-rays, ultraviolet light, and gamma rays. They are high-energy photons with extremely short wavelengths, making them the most energetic form of electromagnetic radiation.
Gamma radiation has the most energy among the different types of radiation, as it has the shortest wavelength and highest frequency. This high energy allows gamma radiation to penetrate deeply into materials and tissues, making it both useful in medical treatments and hazardous in terms of radiation exposure.
Gamma radiation has the shortest wavelength among the types of radiation, which include alpha, beta, and gamma radiation. Gamma rays have the highest energy and shortest wavelength in the electromagnetic spectrum, making them the most penetrating form of radiation.