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Doctorate Thesis DEMETER Satellite Data Analysis of Seismo ...
Doctorate Thesis DEMETER Satellite Data Analysis of Seismo ...
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c = 2.99 × 10 8 [m/s]<br />
m = 9.1 × 10 −31 [kg]<br />
fpe = 4394 × 10 3 /L 2 [Hz]<br />
B = 3.11 × 10 −5 /L 3 [T ]<br />
fge = 8.71 × 10 5 /L 3 [Hz]<br />
<br />
Emodel EDemeter<br />
1873 − 1 L = 1.98 f = 956.97Hz E = 231.4keV E = 197.5keV<br />
1896 − 1 L = 2.14 f = 1230.39Hz E = 118.3keV E = 90.7keV<br />
1897 − 0 L = 2.16 f = 917.91Hz E = 164.7keV E = 170.8keV<br />
2959 − 1 L = 1.52 f = 800.730Hz E = 751.7keV E = 784.9keV<br />
2959 − 1 L = 1.52 f = 937.440Hz E = 671.3keV E = 749.3keV<br />
2959 − 1 L = 1.52 f = 1035.09Hz E = 624.4keV E = 713.7keV<br />
4611 − 0 L = 2.02 f = 722.61Hz E = 268.9keV E = 215.3keV<br />
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∼ 1kHz 5kHz 20kHz
c = 2.99 × 10 8 [m/s] m = 9.1 × 10 −31 [kg] fpe = 4394 × 10 3 /L 2 [Hz] B = 3.11 × 10 −5 /L 3 [T ] fge = 8.71 × 10 5 /L 3 [Hz] Emodel EDemeter 1873 − 1 L = 1.98 f = 956.97Hz E = 231.4keV E = 197.5keV 1896 − 1 L = 2.14 f = 1230.39Hz E = 118.3keV E = 90.7keV 1897 − 0 L = 2.16 f = 917.91Hz E = 164.7keV E = 170.8keV 2959 − 1 L = 1.52 f = 800.730Hz E = 751.7keV E = 784.9keV 2959 − 1 L = 1.52 f = 937.440Hz E = 671.3keV E = 749.3keV 2959 − 1 L = 1.52 f = 1035.09Hz E = 624.4keV E = 713.7keV 4611 − 0 L = 2.02 f = 722.61Hz E = 268.9keV E = 215.3keV ∼ 1kHz 5kHz 20kHz
Energy(KeV) 10 5 10 4 10 3 10 2 10 1 . 1 2 3 4 L 1873 − 1 Energy(KeV) 10 5 10 4 10 3 10 2 10 1 . 1 2 3 4 L 1896 − 1
Page 1: · ·
Page 5: · ·
Page 8 and 9: ∼
Page 10 and 11: ∼
Page 12 and 13: ∼
Page 14 and 15: ∼
Page 16 and 17: s 1/2
Page 18 and 19: ∆wσ hcumratio
Page 20 and 21: ∆wσ hcumratio
Page 22 and 23: σ
Page 24 and 25:
Page 26 and 27: ∆wσ
Page 28 and 29: ∆wσ abs(∆latmag) ∆t
Page 30 and 31: {L, αIDP } 1.7 < L <
Page 32 and 33: RP M
Page 34 and 35: RP M
Page 36 and 37: Ψ i Ψ e Ψ( R) Ψ i =
Page 38 and 39: Sq SD
Page 40 and 41: ≈ ÷ ≈ ÷
Page 42 and 43: J1 µ ω
Page 44 and 45: f0 α
Page 46 and 47: H = kT/mg z
Page 48 and 49: j j = σ // E// + σp
Page 50 and 51: sub−sections
Page 52 and 53: df/dt > 0 f < fH fH
Page 54 and 55: 70 o 50 o 30 o
Page 56 and 57: σ0
Page 58 and 59: ENR ET EF
Page 60 and 61: ≤ > 3.0 1
Page 62 and 63: 10 3 − 10 4
Page 64 and 65: vP /vS
Page 66 and 67: T = 10 0.5M−2.1 yr
Page 68 and 69: • • • •
Page 70 and 71: • • • •
Page 72 and 73: ∼ ÷
Page 74 and 75: σ
Page 76 and 77: ÷
Page 78 and 79: ÷ ÷ ∼
Page 80 and 81: ∆T = TEQ − TP B TEQ
Page 82 and 83: ∆T = TEQ − TP B TEQ
Page 84 and 85: ζ
Page 86 and 87: p ∇ ·i =
Page 88 and 89: λi,kl
Page 90 and 91: ∇ ∧ js = 0 js
Page 92 and 93: x tk Ri xi
Page 94 and 95: e −(πωµσ)1/2 z z ω
Page 96 and 97: z = 0 z0 = 30 z = 50
Page 98 and 99: ≈ ÷
Page 100 and 101: ≈ ÷
Page 102 and 103: ≈ ÷
Page 104 and 105: ′
Page 106 and 107: • •
Page 108 and 109: • • •
Page 110 and 111: s 1 2 Do f < 2
Page 112 and 113: D(s 1 2 ) 1 2 3 4 5
Page 114 and 115: D(s 1 2 ) 1 2 3 4 5
Page 116 and 117: 5759 − 1
Page 118 and 119: ±16 ◦
Page 120 and 121: NP EAK NINC
Page 122 and 123: NP EAK NINC
Page 124 and 125:
Page 126 and 127:
Page 128 and 129:
Page 130 and 131: − −− (1/128)s −1
Page 132 and 133: Latitude (deg) Latitude (deg) Latit
Page 134 and 135: Latitude (deg) Latitude (deg) Latit
Page 136 and 137: Latitude (deg) 90 45 0 -45 -90 DUR
Page 138 and 139: ∆wσ hcumratio
Page 140 and 141: × 2 th
Page 142 and 143: ±2 o
Page 144 and 145: ∆t (TD − TEQ)
Page 146 and 147: ∆wσ
Page 148 and 149: geocentric lat (deg) geocentric lat
Page 150 and 151: geocentric lat (deg) geocentric lat
Page 152 and 153: geocentric lat (deg) geocentric lat
Page 154 and 155: geocentric lat (deg) geocentric lat
Page 156 and 157: geocentric lat (deg) geocentric lat
Page 158 and 159: geocentric lat (deg) geocentric lat
Page 160 and 161: ∆wσ hcumratio
Page 162 and 163: ∆latmag∆t ∆latmag > 0
Page 164 and 165: ∆wσ hcumratio ∆latmag ∆t
Page 166 and 167: (Delta magn lat) (deg) (Delta magn
Page 168 and 169: (Delta magn lat) (deg) (Delta magn
Page 170 and 171: (Delta magn lat) (deg) (Delta magn
Page 172 and 173: (Delta magn lat) (deg) (Delta magn
Page 174 and 175: ∆t ∆latmag
Page 176 and 177: ∆latmag ∆wσ hcumratio
Page 178 and 179: CPhDemeter-λm EQ) (λ m D -λ m EQ
Page 180 and 181: CPhDemeter-λm EQ) (λ m D -λ m EQ
Page 182 and 183: CPhDemeter-λm EQ) (λ m D -λ m EQ
Page 184 and 185: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 186 and 187: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 188 and 189: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 190 and 191: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 192 and 193: ∆wσ hcumratio Page 194 and 195: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 196 and 197: CPhDemeter-λm EQ) (λ m D -λ m EQ Page 198 and 199: ∆T ∼ 4 ÷ 5 Page 200 and 201: mm 2 (Φ = 25mm) Page 202 and 203: geocentric lat (deg) 50 0 -50 L she Page 204 and 205: L L L L 10 8 6 4 2 0 10 8 6 4 2 0 1 Page 206 and 207: Latitude (deg) Latitude (deg) Latit Page 208 and 209: geocentric lat (deg) geocentric lat Page 210 and 211: geocentric lat (deg) geocentric lat Page 212 and 213: {L, αIDP } 1.7 < L < Page 214 and 215: 1200 km ∆T Page 216 and 217: ∆T • • Page 218 and 219: ∆T • • Page 220 and 221: H + Page 222 and 223: f = 1 ± 0, 5kHz) f = 4, 5 ± Page 224 and 225: (L/2) −4 cm −3 Page 226 and 227: F = J p 2 (cm 2 s sr Page 228 and 229: Eres−rel = −δ − δ 2 − 4 Page 230 and 231: Eres−rel = −δ − δ 2 − 4 Page 232 and 233: Eres−rel = −δ − δ 2 − 4 Page 236 and 237: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 238 and 239: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 240 and 241: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 242 and 243: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 244 and 245: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 246 and 247: Energy(KeV) 10 5 10 4 10 3 10 2 10 Page 248 and 249: BZ Page 250 and 251: BZ Page 252 and 253: BZ Page 254 and 255: BZ Page 256 and 257: BZ Page 258 and 259: BZ
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