E=hf
where f is frequency and h is plank's constant.
The first Nobel Prize winner for the photoelectric effect in physics was Albert Einstein in 1921. His work on the photoelectric effect helped confirm the quantum nature of light and laid the foundation for the development of quantum mechanics.
Heinrich Rudolf Hertz, he coined what is known as the Hertz Effect.
Special Relativity, General Relativity and the beginnings of Quantum. (understanding the photoelectric effect for example).
Albert Einstein applied the concept of a quantum to explain the photoelectric effect in his 1905 paper. He proposed that light consists of discrete packets of energy called photons, which interact with electrons in materials to release them from the surface.
Albert Einstein won the Nobel Prize in Physics in 1921 for his explanation of the photoelectric effect. His work laid the foundation for the development of quantum theory.
Albert Einstein won the Nobel Prize in Physics in 1921 for his work on the photoelectric effect. His findings laid the foundation for the development of quantum theory.
Albert Einstein won the Nobel Prize in Physics in 1921 for his explanation of the photoelectric effect. His explanation helped confirm the particle nature of light, leading to the development of the field of quantum mechanics.
No. To explain the photoelectric effect, you have to think of light as a particle, not a wave. The fact that light can be both a wave and a particle is part of quantum mechanics, not classical physics.
Classical physics fails to explain the photoelectric effect because it is based on the wave theory of light, which predicts that the energy of a wave is proportional to its intensity. However, the photoelectric effect shows that the energy of ejected electrons is dependent on the frequency of light, not its intensity, as predicted by quantum theory.
One phenomenon that does not support the quantum nature of light is the photoelectric effect. In this effect, light behaves as a stream of particles (photons) rather than a classical wave, showing that light can only be explained fully by quantum mechanics.
Einsteinâ??s theories on the photo-electric effect led to the quantum revolution and his winning a Nobel Prize in 1921 for his law of the photoelectric effect. This law stated that the photoelectric effect was the result of light energy being carried in discrete quantized packets.
Einstein won the Nobel Prize for Physics in 1921 for his work on the photoelectric effect.From the Nobel.org website (see link to the left):"for his services to Theoretical Physics, and especially for his discovery of the law of the photoelectric effect"See the Related Questions and Web Links for more information.