EGU General Assembly 2007
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Nonlinear Processes in Geosciences
Nonlinear Processes:in Geosciences
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  List of Accepted Contributions - MPRG04 One hundred years after Brunhes: geomagnetic reversal and palaeointensity behaviour (co-listed in GD and NP)

Please, click Abstract Number to find the corresponding abstract as PDF file; if necessary, download Adobe Acrobat Reader 4.0 first to open the file. Any abstract may be freely reproduced for non-commercial, scientific purposes; however, the moral right of the author(s) to be identified as the author(s) of such abstracts is asserted.

Yamamoto, Y; Shaw, J
Towards the development of the microwave LTD-DHT Shaw method (withdrawn)

Saleh, A.
Paleointensity determinations of some early Paleozoic granite rocks from Sinai peninsula, Egypt

Hill, M. J.
A Review of the Microwave Palaeointensity Method

Tarduno, J.A.; Cottrell, R.D.
The Kiaman Reversed Polarity Superchron at Kiama

Lerbekmo, J.F.; Evans, M.E.
Cryptochrons, subchrons, and tiny wiggles: evidence from the Palaeocene-Eocene of western Canada

Macrì, P.; Sagnotti, L.; Lucchi, R.G.; Rebesco, M.
A relative geomagnetic paleointensity stack for the past 270 kyr from the western continental rise of the Antarctic Peninsula

Sorriso-Valvo, L.; Carbone, V.; Stefani, F.; Nigro, G.
The statistiacl properties of paleomagnetic reversals: measurements and models

Linder, J.; Leonhardt, R.
Paleomagnetic directions and intensities across a Middle Miocene geomagnetic reversal sequence recorded in East Iceland

Frankel, H.
Jan Hospers' defense of field reversals and geocentric axial dipole hypothesis

Valet, JP; Plenier, G
Why are there similar signals for excursions and reversals?

Fabian, K.; Leonhardt, R.
Theoretical analysis and experimental tests of multiple specimen absolute paleointensity determination techniques

Christl, M. ; Kubik, P. W.; Mangini, A.
Geomagnetic Variability from Beryllium-10 in deep-sea Sediments

Aboud, E; Salem, A
Depth and ShapeFactor From Residual Magnetic Anomaly Data (withdrawn)

Leonhardt, R.; Fabian, K.
Paleomagnetic reconstruction of the global geomagnetic field evolution during the Matuyama/Brunhes transition

Hoffman, K.
Transitional VGPs and the development of our understanding of geomagnetic reversal

Narteau, C; Le Mou\"el, J.-L.; Valet, J.-P.
Two types of reversals

Coe, R.; Jarboe, N.
How complex are reversals?

Mochizuki, N.; Tsunakawa, H.; Shibuya, H.; Tagami, T.; Ozawa, A.; Smith, I.
Further K-Ar dating and paleomagnetic study of the Auckland geomagnetic excursions

Biggin, A
The quasi-perpendicular method of absolute palaeointensity determination: application to multidomain samples

Le Goff, M.; Gallet, Y.; Genevey, A.
Potential of high-temperature magnetization measurements for archeo- and paleo-intensity studies

Brown, M. C.; Gratton, M. N.; Soler, V.; Brown, L. L.; Johnson, C. L.; Shaw, J.
New palaeomagnetic data from the Brunhes-Matuyama reversal: A global perspective

Herrero-Bervera, E.; Valet, JP
Short-term evolution of the Earth’s magnetic field recorded in Hawaiian lava

Herrero-Bervera, E.; Valet, JP.
The Pringle Falls polarity episode recorded in the Deschutes river area: a revisited study

Genevey, A.; Gallet, Y.; Rosen, J.; Le Goff, M.
Geomagnetic field intensity variations in Western Europe over the past eight hundred years

Kissel, C; Laj, C; Waelbroeck, C; Wandres, C
The Blake excursion recognized in marine cores from the southern hemisphere

Laj, C.; Kissel, C.
Geomagnetic excursions in the Brunhes Chron

Dekkers, M.J.; Bohnel, H.N.
Reliable absolute paleointensity independent of magnetic domain state: The

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