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Of electromagnetic radiation intensity

From an experimental point of view it is important to recognize that the profile of (Ey2 as a function of z is proportional to the profile of the intensity of electromagnetic radiation in the proximity of the interface in medium 2. Such a profile will determine the surface sensitivity of the evanescent wave the depth of penetration is smaller if ... [Pg.50]

The angular distribution of the intensity of electromagnetic radiation is given by specific analytic functions written in terms of an angle, W(Q,mi), relative to the quantization axis, Z, and the magnetic quantum number, mi. The patterns depend on the order of the multipole, dipole, quadra pole, and so forth, but they are the same for electric and magnetic transitions with the same order. For example, the angular distributions for dipole radiation are... [Pg.237]

Sensor Performance. The intensity of electromagnetic radiation transmitted through an optical path of length L of an atmosphere that is not optically thick can be described by ... [Pg.228]

The intensities of electromagnetic radiation emitted at the frequency >3 from these oscillating polarizations are... [Pg.34]

Electromagnetic radiation A form of energy with properties that can be described in terms of waves or, alternatively, as particulate photons, depending on the method of observation. Electromagnetic spectrum The power or intensity of electromagnetic radiation plotted as a function of wavelength or frequency. [Pg.1108]

Describe the influence of frequency and intensity of electromagnetic radiation on the current in the photoelectric effect. [Pg.229]

The mean level also drops out when, in addition to the transmitted inter-ferogram, the interferogram reflected back to the source is recorded and the difference of the two interferograms is formed. For such a procedure, two detectors have been used in the double output interferometer by W. J. Burrough et In order to understand the underlying basic idea, it is necessary to recall that the total intensity of electromagnetic radiation sent by the source into the Michelson-interferometer is [see Eqs. (2.3—2.6) and Eq. (3.2)]... [Pg.103]

Amplitude. Amplitude a is the height of a wave. The intensity of electromagnetic radiation (e.g., the brightness of light) is proportional to a2. [Pg.428]

For typical values of the intensity of electromagnetic radiation only a small number of crystal molecules is excited, i.e. the following inequality... [Pg.41]

Here, I is the intensity of electromagnetic radiation and z is the distance that it has passed through the absorbing medium. The distance I/a measured in a... [Pg.8]

Microwave radiometer is a device which measures the intensity of electromagnetic radiation from human body in microwave wavelength. The noise power at the input of the microwave reeeiver is proportional to the internal temperature of the human body. An array of receivers can resolve the local temperature inside the breast in 3-D and... [Pg.441]

The intensity of electromagnetic radiation from a radioactive point source decreases with increasing distance, following the inverse square law. [Pg.474]

Beer-Lambert law A law that relates the intensity of electromagnetic radiation... [Pg.24]

Atomic and molecular spectrometry Wavelength and intensity of electromagnetic radiation emitted or absorbed by the analyte Qualitative, quantitative or structural for major down to trace level components... [Pg.6]

The intensity of electromagnetic radiation increases with decreasing wavelength. High-energy, shortwave radiation in the UVA and UVB r ions can excite electrons in the outer shells of atoms and hence result in rapid chemical reactions. This mechanism is utiliied for curing specially formulated adhesives. At least one of the two substrates must be permeable for the radiation. Note that the materials which are transparent to the human eye are not necessarily permeable for UV radiation. [Pg.993]

Brightness temperature The definition is not unique great care is needed to decipher the intention of a given author. The temperature at which a blackbody radiator would radiate an intensity of electromagnetic radiation identical to that of the planet for a specific frequency, frequency bandwidth, and polarization under consideration is one definition of brightness temperature. A second definition is that it is the intensity of radiation under consideration divided (normalized) by the factor jlk). The normalization factor dimensionally scales... [Pg.245]

Effective temperature Temperature at which a blackbody radiator would radiate over all frequencies an intensity of electromagnetic radiation identical to that radiated from a planet. [Pg.245]


See other pages where Of electromagnetic radiation intensity is mentioned: [Pg.541]    [Pg.615]    [Pg.2]    [Pg.250]    [Pg.516]    [Pg.435]    [Pg.625]    [Pg.17]    [Pg.6]    [Pg.428]    [Pg.8]    [Pg.353]    [Pg.155]    [Pg.10]    [Pg.24]    [Pg.223]    [Pg.415]    [Pg.420]    [Pg.2]    [Pg.250]    [Pg.45]    [Pg.115]    [Pg.6]   
See also in sourсe #XX -- [ Pg.228 ]

See also in sourсe #XX -- [ Pg.134 ]




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