![Figure 9. Plot of the characteristic remanent magnetization (inclination and declination) from u-channel measurements and normalized remanence record of the B-M transition at Site 1014. Natural remanent magnetization (NRM) and anhysteretic remanent Figure 9. Plot of the characteristic remanent magnetization (inclination and declination) from u-channel measurements and normalized remanence record of the B-M transition at Site 1014. Natural remanent magnetization (NRM) and anhysteretic remanent](http://www-odp.tamu.edu/publications/167_SR/chap_28/images/08_f09.jpg)
Figure 9. Plot of the characteristic remanent magnetization (inclination and declination) from u-channel measurements and normalized remanence record of the B-M transition at Site 1014. Natural remanent magnetization (NRM) and anhysteretic remanent
![Normalized acquisition of anhysteretic remanent magnetization (ARM) in... | Download Scientific Diagram Normalized acquisition of anhysteretic remanent magnetization (ARM) in... | Download Scientific Diagram](https://www.researchgate.net/publication/323013493/figure/fig1/AS:1156407311241216@1652720396176/Normalized-acquisition-of-anhysteretic-remanent-magnetization-ARM-in-a-DC-field-of-200.png)
Normalized acquisition of anhysteretic remanent magnetization (ARM) in... | Download Scientific Diagram
![Figure F4. Concentration-independent parameters as a function of stratigraphic depth for the uppermost 54 m at Site 1165. Normalized anhysteretic susceptibility by low-field susceptibility (kARM/k). Anhysteretic remanent magnetization/isothermal ... Figure F4. Concentration-independent parameters as a function of stratigraphic depth for the uppermost 54 m at Site 1165. Normalized anhysteretic susceptibility by low-field susceptibility (kARM/k). Anhysteretic remanent magnetization/isothermal ...](http://www-odp.tamu.edu/publications/188_SR/015/images/15_f04.gif)
Figure F4. Concentration-independent parameters as a function of stratigraphic depth for the uppermost 54 m at Site 1165. Normalized anhysteretic susceptibility by low-field susceptibility (kARM/k). Anhysteretic remanent magnetization/isothermal ...
![Remanence cycling of 0.6–135 µm magnetites across the Verwey transition | Earth, Planets and Space | Full Text Remanence cycling of 0.6–135 µm magnetites across the Verwey transition | Earth, Planets and Space | Full Text](https://media.springernature.com/lw685/springer-static/image/art%3A10.1186%2Fs40623-018-0928-z/MediaObjects/40623_2018_928_Fig1_HTML.png)
Remanence cycling of 0.6–135 µm magnetites across the Verwey transition | Earth, Planets and Space | Full Text
![Figure F3. Downcore variations of magnetic parameters (NRM intensity and inclination, magnetic susceptibility, and ARM intensity), relative magnetic grain-size proxy (ARM/k), and magnetic hardness (ARM30 mT/ARM0 mT) determined in Hole 1202A. NRM = Figure F3. Downcore variations of magnetic parameters (NRM intensity and inclination, magnetic susceptibility, and ARM intensity), relative magnetic grain-size proxy (ARM/k), and magnetic hardness (ARM30 mT/ARM0 mT) determined in Hole 1202A. NRM =](http://www-odp.tamu.edu/publications/195_sr/111/images/11_f03.gif)
Figure F3. Downcore variations of magnetic parameters (NRM intensity and inclination, magnetic susceptibility, and ARM intensity), relative magnetic grain-size proxy (ARM/k), and magnetic hardness (ARM30 mT/ARM0 mT) determined in Hole 1202A. NRM =
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