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Table 2 New apatite fission track data

From: Ductile to brittle fault zone evolution in Austroalpine units to the southeast of the Tauern Window (Eastern Alps)

Sample code

Long.

Lat.

Elevation (m. a.s.l.)

n

ρs

Ns

ρi

Ni

ρd

Nd

P2) (%)

Age (Ma)

±1σ (Ma)

MTL (μm)

SD (μm)

N (L)

Dpar (μm)

KR 9

13°07′01″

46°52′56″

2130

25

2.201

233

4134

1032

8049

15,118

99.2

33.2

2.9

13.77

0.89

55

2.06

KR 6 h

13°09′45″

46°53′17″

2380

25

2.221

245

4151

1080

7099

15,118

98.1

30.4

1.1

13.95

0.80

56

1.78

KR 6 dz

13°09′45″

46°53′17″

2380

25

2.139

240

4190

1038

7128

15,118

98.4

28.6

2.7

13.51

1.26

60

1.87

KR 6 fc

13°09′45″

46°53′17″

2380

25

1.277

303

6105

1450

7044

12,503

96.1

23.3

0.8

11.51

1.95

67

1.83

KR 5 h

13°10′57″

46°54′29″

1883

25

1.655

166

4120

1089

7207

15118

99.9

15.9

1.0

14.35

0.81

70

1.87

KR 5 dz

13°10′58″

46°54′28″

1870

25

1.291

220

4087

1022

8054

15,118

89.8

16.4

0.7

13.92

1.02

54

2.01

KR 5 fc

13°10′58″

46°54′28″

1870

25

1.722

177

4640

1132

4509

15,118

93.3

11.5

1.0

11.75

2.11

68

1.93

  1. n, Number of dated apatite crystals; ρsi, spontaneous/induced track tensities (×105 tracks/cm2); Ns/Ni, number of counted spontaneous/induced tracks; ρd, dosimeter track density (×105 tracks(cm2); Nd: number of tracks counted on dosimeter; P2), probability obtaining Chi square value (χ2) for n degree of freedom (where n is number of crystals minus 1); MTL, mean track length; SD, standard deviation of track length distributuion; N(L), number of horizontal confined tracks measured; Dpar, average etch pit diameter of fission tracks; age ± 1σ is central age ± 1 standard error (Galbraith and Laslett 1993); ages were calculated using zeta calibration method (Hurford and Green 1983); glass dosimeter CN-5