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Energies deposited by alpha particles from these sources were calculated using the SRIM range-energy code.
In the first one, the amplitudes of the individual point sources were calculated by means of the in-duct Green's function.
Therefore, the distance between the upper and lower point sources and the distance between the left and right point sources were calculated for both fluoroscopic and nuclear images.
The two regional sources were calculated for the N1m of the second stimulus across a time range of 100 150 ms after S2 onset.
A similar data analysis was performed for the unmodulated tones used in experiment 2. Two symmetric regional sources were calculated for the averaged conditions for the N1m of S2 (time range 100 150 ms).
The estimations of group-averaged brain sources were calculated over each time period (Microstates 1 7) and class of stimuli (U, T, Usc, and Tsc). Figure 3D shows brain transverse sections displaying the local source density maxima, localized within a larger activation cerebral network observed for each microstate.
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The radiation impedances of some commonly used sound sources are calculated.
The risk weight proportions of the risk sources are calculated by Analytic Hierarchy Process (AHP).
The typical performances of such sources are calculated by using a recently developed model.
The heat load and the temperature distribution of the magnet is analyzed by a finite element method, and the upper limits of several heat leak sources are calculated.
The acoustic radiation of the aerodynamic sources is calculated in a second step by solving an appropriate system of acoustic equations.
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