Sovi.AI - AI Math Tutor

Scan to solve math questions

QUESTION IMAGE

10. sep construct explanations explain how light acts like both waves a…

Question

  1. sep construct explanations explain how light acts like both waves and particles.

Explanation:

Brief Explanations

To explain light's dual nature:

  • Wave - like behavior: Phenomena like interference (e.g., double - slit experiment, where light waves from two slits overlap to form bright and dark fringes), diffraction (bending of light around obstacles, like light spreading after passing through a narrow slit), and polarization (only waves with a specific orientation can pass through a polarizer) support light as a wave. Electromagnetic theory also describes light as oscillating electric and magnetic fields propagating in space.
  • Particle - like behavior: The photoelectric effect (electrons are emitted from a metal surface when light of sufficient frequency strikes it, and this can be explained by light consisting of discrete packets of energy called photons) and Compton scattering (when X - rays scatter off electrons, they behave like particles with momentum) show light as particles (photons). Photons have energy $E = h

u$ (where $h$ is Planck's constant and $
u$ is the frequency of light) and momentum $p=\frac{h}{\lambda}$ (where $\lambda$ is the wavelength of light).

Answer:

Light exhibits wave - particle duality. As a wave, it shows interference (e.g., double - slit experiment), diffraction, and polarization, and is described by electromagnetic theory. As a particle (photon), it explains the photoelectric effect (emission of electrons from metal on light incidence) and Compton scattering, with photons having energy $E = h
u$ and momentum $p=\frac{h}{\lambda}$.