2. Refractive indices for a step-index fibre are 1.52 for the core and 1.41 for the cladding. Determine a. The critical angle b. The numerical aperture c. The maximum incidence angle 0m for light that is totally internally reflected.

Principles of Physics: A Calculus-Based Text
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Chapter27: Wave Optics
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2. Refractive indices for a step-index fibre are 1.52 for the core and 1.41 for the cladding.
Determine
a. The critical angle
b. The numerical aperture
c. The maximum incidence angle 0m for light that is totally internally reflected.
Transcribed Image Text:2. Refractive indices for a step-index fibre are 1.52 for the core and 1.41 for the cladding. Determine a. The critical angle b. The numerical aperture c. The maximum incidence angle 0m for light that is totally internally reflected.
5. The Lyman series in the line spectra of atomic hydrogen is the name for the light emitted from
transitions from excited states to the hydrogen ground state. The Balmer series refers to the
light emitted from transitions from excited states with to the energy state.( The allowed
energies of the electron in the hydrogen atom are
(13.6 eV)
2, n = 1,2,3,...)
En = -
n2
a. Find the wavelengths of the first three transitions in the Lyman series. In what range of
the electromagnetic spectrum are the spectral lines of the Lyman series?
b. Find the wavelengths of the first three transitions in the Balmer series. In what range of
the electromagnetic spectrum are the spectral lines of the Balmer series?
Transcribed Image Text:5. The Lyman series in the line spectra of atomic hydrogen is the name for the light emitted from transitions from excited states to the hydrogen ground state. The Balmer series refers to the light emitted from transitions from excited states with to the energy state.( The allowed energies of the electron in the hydrogen atom are (13.6 eV) 2, n = 1,2,3,...) En = - n2 a. Find the wavelengths of the first three transitions in the Lyman series. In what range of the electromagnetic spectrum are the spectral lines of the Lyman series? b. Find the wavelengths of the first three transitions in the Balmer series. In what range of the electromagnetic spectrum are the spectral lines of the Balmer series?
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