Table 3

Flux density measurements in the different regions of the Exemplar shown in Fig. 3.

Region S150 MHz S610 MHz S1.4 GHz (FIRST) S1.4 GHz (NVSS)
(mJy) (mJy) (mJy) (mJy)
S1 25.73 ± 3.11 3.27 ± 0.14 0.97 ± 0.40
S2 6.74 ± 3.30 2.48 ± 0.14 1.38 ± 0.40
A (SE lobe) 61.14 ± 9.46 32.25 ± 0.43 8.21 ± 1.19 12.98 ± 0.37
B (NW lobe) 71.98 ± 7.85 38.76 ± 0.36 13.11 ± 1.00 10.91 ± 0.28
C 97.07 ± 10.94 56.64 ± 0.50 29.89 ± 1.40 30.60 ± 0.41
C \ S2 90.33 ± 11.42 54.16 ± 0.52 28.52 ± 1.45 29.23 ± 0.44
T 284.79 ± 26.63 138.16 ± 1.21 44.81 ± 3.38 74.95 ± 0.99
TA∪B∪C 230.20 ± 16.45 127.66 ± 0.75 51.21 ± 2.09 54.50 ± 0.63
T(A∪B∪C)\(S1∪S2) 197.72 ± 28.60 121.90 ± 1.30 48.87 ± 3.63 52.16 ± 1.09
T \ (S1 ∪ S2) 252.32 ± 27.01 132.40 ± 1.23 42.47 ± 3.43 72.61 ± 1.01

Notes. Thecoordinates of S1 and S2 are given in the caption of Fig. 3. The flux densities of S1 and S2 at 150 MHz were extrapolated from the measurements at 610 and 1400 MHz (FIRST). The symbols ∪ and \ are taken from set theory and are used to indicate a union and an exclusion, respectively: for instance, C \ S2 means that the flux density from source S2 was subtracted from that measured in the central (C) region; TA ∪B ∪C is the flux density measured by summing the measurements in the regions A (SE lobe), B (NW lobe), and C (central region). The 1.4 GHz flux densities of S1 and S2, which are point-like, were taken from FIRST.

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