Paleoclimatic Significance of the Mineral Magnetic Record of the Chinese Loess and Paleosols
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[1] S. Clemens,et al. Comments on “Paleoclimatic Significance of the Mineral Magnetic Record of the Chinese Loess and Paleosols” , 1992, Quaternary Research.
[2] F. Heller,et al. Magnetic susceptibility of loess in China , 1991 .
[3] S. Clemens,et al. One Million Year Record of Summer Monsoon Winds and Continental Aridity from the Owen Ridge (Site 722), Northwest Arabian Sea , 1991 .
[4] J. T. Wang,et al. Partly pedogenic origin of magnetic variations in Chinese loess , 1990, Nature.
[5] S. Clemens,et al. Late Pleistocene variability of Arabian Sea summer monsoon winds and continental aridity: Eolian records from the lithogenic component of deep‐sea sediments , 1990 .
[6] Hojatollah Vali,et al. Occurrence of magnetic bacteria in soil , 1990, Nature.
[7] P. deMenocal,et al. Evidence for a change in the periodicity of tropical climate cycles at 2.4 Myr from whole-core magnetic susceptibility measurements , 1989, Nature.
[8] R. M. Clark,et al. Sequence slotting for stratigraphic correlation between cores: theory and practice , 1989 .
[9] N. Pisias,et al. A direct link between the China loess and marine δ18O records: aeolian flux to the north Pacific , 1989, Nature.
[10] B. Maher,et al. Formation of ultrafine-grained magnetite in soils , 1988, Nature.
[11] G. Kukla,et al. Pleistocene climates in China dated by magnetic susceptibility , 1988 .
[12] B. Maher. Magnetic properties of some synthetic sub-micron magnetites , 1988 .
[13] Derek R. Lovley,et al. Anaerobic production of magnetite by a dissimilatory iron-reducing microorganism , 1987, Nature.
[14] B. Maher,et al. Magnetite in soils: I. The synthesis of single-domain and superparamagnetic magnetite , 1986, Clay Minerals.
[15] F. Heller,et al. Palaeoclimatic and sedimentary history from magnetic susceptibility of loess in China , 1986 .
[16] D. Martinson,et al. Graphic correlation of oxygen isotope stratigraphy application to the Late Quaternary , 1986 .
[17] Hojatollah Vali,et al. Fossil bacterial magnetite in deep-sea sediments from the South Atlantic Ocean , 1986, Nature.
[18] R. Thompson. Modelling magnetization data using SIMPLEX , 1986 .
[19] S. Robinson. The late Pleistocene palaeoclimatic record of North Atlantic deep-sea sediments revealed by mineral-magnetic measurements , 1986 .
[20] F. Fritsch,et al. A Method for Constructing Local Monotone Piecewise Cubic Interpolants , 1984 .
[21] F. Heller,et al. Magnetism of Chinese loess deposits , 1984 .
[22] F. Heller,et al. Magnetostratigraphical dating of loess deposits in China , 1982, Nature.
[23] D. Kent. Apparent correlation of palaeomagnetic intensity and climatic records in deep-sea sediments , 1982, Nature.
[24] Subir K. Banerjee,et al. A preliminary magnetic study of soil samples from west-central Minnesota , 1982 .
[25] C. E. Mullins,et al. MAGNETIC SUSCEPTIBILITY OF THE SOIL AND ITS SIGNIFICANCE IN SOIL SCIENCE – A REVIEW , 1977 .
[26] R. Thompson,et al. Late Weichselian geomagnetic ‘reversal’ as a possible example of the reinforcement syndrome , 1976, Nature.
[27] M. Tite,et al. Effect of climate on the magnetic susceptibility of soils , 1975, Nature.
[28] C. Radhakrishnamurty,et al. Magnetic techniques for ascertaining the nature of iron oxide grains in basalts , 1974 .
[29] N. Opdyke. Paleomagnetism of deep‐sea cores , 1972 .
[30] David B. Stone,et al. Paleoclimatic forcing of magnetic susceptibility variations in Alaskan loess during the late Quaternary , 1990 .
[31] G. Kukla. Loess stratigraphy in central China , 1987 .
[32] J. Kirschvink,et al. Possible Biogenic Magnetite Fossils from the Late Miocene Potamida Clays of Crete , 1985 .
[33] J. D. Hays,et al. The orbital theory of Pleistocene climate : Support from a revised chronology of the marine δ^ O record. , 1984 .
[34] R. Blakemore. Magnetotactic bacteria , 1975, Science.
[35] F. D. Stacey. The physical theory of rock magnetism , 1963 .
[36] J. Murray. 3. On the Distribution of Volcanic Debris over the Floor of the Ocean,—its Character, Source, and some of the Products of its Disintegration and Decomposition. , 1878 .