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The radiation power P in the case of χ i = 0.1, α = β = 0.5, and ǫ = 10
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Measured 3-d total radiation power patterns at frequencies of interest(a) radiation profile. (b) temperature profile. Schematic diagram to measure the power and radiation losses due to dustThe corrected radiation power patterns for scenario (2).
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Comparison between calculated radiation profile and measured one in (a
Total power measured radiation patterns(a) normalized longitudinal profile of the radiation power along the Scenario (1) radiation power patterns for the fundamental, 1st, 2ndProfile of the solar radiation (s), temperature (t), maximum.
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Plot representing the variation of radiation power to distance: a) 3d
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The total radiation power per second, i, from an oscillating electricRadial profile of radiation intensity (a) at t = 843, 865, 870, 875 Total and radiation power losses (a) and fractional radiation powerThe radiation power p in the case of χ i = 0.1, α = β = 0.5, and ǫ = 10.
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Vertical profile of radiation dose (in grays), caused by proton
![The radiation power P in the case of χ i = 0.1, α = β = 0.5, and ǫ = 10](https://i2.wp.com/www.researchgate.net/publication/359517805/figure/fig1/AS:1138805084045312@1648523698042/The-radiation-power-P-in-the-case-of-ch-i-01-a-b-05-and-o-10-4-is-depicted-as.png)
The radiation power P in the case of χ i = 0.1, α = β = 0.5, and ǫ = 10
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Comparison between calculated radiation profile and measured one in (a
Examples of daily profiles of solar radiation and output power per