[V/m]
[V/m]
[mW/kg]
1.8
1.8
0.3
180
180
1.6
1.6
10
−1
160
160
1.4
1.4
140
140
1.2
1.2
10
−2
120
120
1
1
(cm)
(cm)
100
100
0.8
10
−3
0.8
80
80
60
0.6
60
0.6
40
0.4
40
0.4
10
−4
20
0.2
20
0.2
0 0 20 40
0
0 20 40
(cm)
(a)
(cm)
(b)
(c)
Figure 5.29 Subject on the street: (a) Erms when the subject is absent (b) Erms when the subject is present (c) SAR distribution inside the subject. (From Bernardi, P., M. Cavagnaro, S. Pisa,
and E. Piuzzi. 2000. IEEE Trans Microw Theory Tech, 48, 11. With permission.)
[V/m]
[V/m]
[mW/kg]
13
180
160
1
140
10
−1
120
180
160
140
120
100
80
60
40
20
0
(cm)
6
8
10
12
4
2
0
6
8
10
12
4
2
0
0 20 40
0 20 40
10
−2
10
−3
(cm)
100
80
60
10
−4
40
20
0
(cm)
(cm)
(a)
(b)
(c)
Figure 5.28 Subject on the balcony: (a) Erms when the subject is absent (b) Erms when the
subject is present (c) SAR distribution inside the subject. (From Bernardi, P., M. Cavagnaro,
S. Pisa, and E. Piuzzi. 2000. IEEE Trans Microw Theory Tech, 48, 11. With permission.)
[V/m]
[mW/kg]
1.8
1.8
0.3
180
180
1.6
1.6
10
−1
160
160
1.4
1.4
140
140
1.2
1.2
10
−2
120
120
1
1
(cm)
(cm)
100
100
0.8
10
−3
0.8
80
80
60
0.6
60
0.6
40
0.4
40
0.4
10
−4
20
0.2
20
0.2
0 0 20 40
0
0 20 40
(cm)
(a)
(cm)
(b)
(c)
Figure 5.29 Subject on the street: (a) Erms when the subject is absent (b) Erms when the subject is present (c) SAR distribution inside the subject. (From Bernardi, P., M. Cavagnaro, S. Pisa,
and E. Piuzzi. 2000. IEEE Trans Microw Theory Tech, 48, 11. With permission.)
[V/m]
[V/m]
[mW/kg]
13
180
160
1
140
10
−1
120
180
160
140
120
100
80
60
40
20
0
(cm)
6
8
10
12
4
2
0
6
8
10
12
4
2
0
0 20 40
0 20 40
10
−2
10
−3
(cm)
100
80
60
10
−4
40
20
0
(cm)
(cm)
(a)
(b)
(c)
Figure 5.28 Subject on the balcony: (a) Erms when the subject is absent (b) Erms when the
subject is present (c) SAR distribution inside the subject. (From Bernardi, P., M. Cavagnaro,
S. Pisa, and E. Piuzzi. 2000. IEEE Trans Microw Theory Tech, 48, 11. With permission.)
