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Titlebook: Black-body Radiative, Thermodynamic, and Chromatic Functions: Tables in Finite Spectral Ranges; Anatoliy I. Fisenko,Vladimir F. Lemberg Bo

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Book 2016ed for different color spaces (Rec.709 (HDTV), sRGB, Adobe RGB). A number of the optimization problems is formulated and solved for various thermal black-body radiative and thermodynamic functions in a finite range of frequencies..
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Optimization Problems for the Devices Using the Black-Body Thermal Radiation,ing the maximal possible amount of the emitted (or received) total radiation energy, or, alternatively, the maximal number of the emitted (or received) number of photons. Potentially, the devices can be also optimized for some other thermal radiative or thermodynamic parameters.
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Black-Body Radiative Functions in a Given Spectral Range,l of the electromagnetic spectrum has the practical interest [1]. Therefore, extensive numbers of tables of the Planck functions, Planck integrals, and their fractional values have been constructed in the finite spectral ranges [1–12]. In this chapter, the analytical expressions for the thermal radi
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Thermodynamics of Black-Body Radiation in a Finite Spectral Range, we need to construct the thermodynamics of black-body radiation in the finite spectral range. In [2, 3], the thermodynamics of black-body radiation for the finite spectral range was proposed. This approach was applied by the authors to various physical [4–7] and astrophysical [2, 8, 9] problems.
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Chromaticity Properties of Black-Body Radiation for Different Color Spaces,ody sources of thermal radiation in the visible part of spectrum (380–780 nm). This topic was partially investigated in [1], where the relative chromaticity coordinates for the black-body radiation spectrum were calculated at various temperatures.
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Optimization Problems for the Devices Using the Black-Body Thermal Radiation,nly working in a finite range of frequencies. Such devices are frequently need to be optimized for getting the best possible value for the specific thermal radiative or thermodynamic characteristics that can be reached in the given spectral range. For example, the devices can be optimized for obtain
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