/* DATA DESCRIPTION:
Citation:	Nowaczyk, Norbert R (2020): Magnetization intensities of redeposited Black Sea sediment from the last glacial [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.925709
Abstract:	This data publication provides data on redeposition experiments with mud collected during paleomagnetic sampling of various cores from the Arkhangelsky Ridge, SE Black Sea, recovered during marine expedition M72/5 of German research vessel RV METEOR in 2007 and expedition MSM33 of German research vessel RV Maria S. Merian in 2013. The collected silici-clastic mud mostly originates from glacial sediments deposited during marine isotope stages (MIS) 2 to 4, and 6. The material (bulk/mixed sample) originates from 208m to 847m water depth, 41° 28.66'N to 42° 13.57'N in latitude, and 36° 29.53'E to 37° 11.68'E in longitude. Experiments were performed in order to check the (non-) linearity of the detrital remanent magnetization (DRM) of Black Sea sediments acquired in different magnetic fields.
Keyword(s):	depositional remanent magnetization
Related to:	Nowaczyk, Norbert R (2021): Redeposition experiments with natural sediments from the SE Black Sea in magnetic fields between about 2 and 114 µT. Geophysical Journal International, 224(1), 271-289, https://doi.org/10.1093/gji/ggaa455
Comment:	Component(s) of the ambient magnetic field set by the coils system. 
	H - horizontal component
	V – vertical component
	vibr. - vibrating platform
	still – still platform
Parameter(s):	Magnetic field [µT] (B(exp)) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de)
	Detrital remanent magnetization intensity [mA/m] (DRM) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de) * COMMENT: mean
	Detrital remanent magnetization (DRM int) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de) * COMMENT: mPJK
	Detrital remanent magnetization (DRM int) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de) * COMMENT: mPJA
	Detrital remanent magnetization (DRM int) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de) * COMMENT: mPJAs
	Detrital remanent magnetization (DRM int) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de) * COMMENT: mPJS
	Components, magnetic (Comp) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de)
	Action (action) * PI: Nowaczyk, Norbert R (norbert.nowaczyk@gfz-potsdam.de)
License:	Creative Commons Attribution 4.0 International (CC-BY-4.0) (URI: https://creativecommons.org/licenses/by/4.0/)
Size:	430 data points
*/
B(exp) [µT]	DRM [mA/m] (mean)	DRM int (mPJK)	DRM int (mPJA)	DRM int (mPJAs)	DRM int (mPJS)	Comp	action
35.57	142.1069	0.4110	1.7312	0.6798		V	vibr.
43.35	141.2160	0.4091	1.3175	0.4655		V	vibr.
63.34	223.7613	0.6300	3.2831	1.1888	55.1676	V	vibr.
75.79	281.1109	0.7859	3.6582	1.4261	66.9007	V	vibr.
83.14	263.5231	0.7368	3.7675	1.4380	61.2057	V	vibr.
83.14	355.3982	0.9528	2.4647			V	vibr.
90.92	440.0126	1.2445	5.5264	2.1278	100.1471	V	vibr.
97.89	342.6407	0.9536	5.0048	1.8658	77.0159	V	vibr.
114.21	442.7399	1.2445	5.5642	2.1243	101.8554	V	vibr.
1.72	14.5576	0.0438	0.2475	0.0974	3.8478	HV	vibr.
1.82	14.7349	0.0431	0.1667	0.0641	3.7078	HV	vibr.
2.11	18.2385	0.0536	0.2093	0.0813	4.6911	HV	vibr.
2.39	14.1810	0.0401	0.1684	0.0629	3.3684	HV	vibr.
2.75	15.7412	0.0420	0.2079	0.0828	3.6999	HV	vibr.
3.08	19.9278	0.0559	0.2221	0.0870	4.8610	HV	vibr.
3.37	23.3677	0.0682	0.2825	0.1091	5.8745	HV	vibr.
3.78	24.0841	0.0695	0.2682	0.1070	6.0964	HV	vibr.
4.37	22.6673	0.0641	0.3206	0.1250	5.6074	HV	vibr.
4.96	37.2415	0.1107	0.4587	0.1843	8.8901	HV	vibr.
5.50	29.5791	0.0853	0.3160	0.1238	7.6319	HV	vibr.
6.21	27.3684	0.0781	0.3366	0.1299	6.7872	HV	vibr.
6.98	45.5762	0.1339	0.5215	0.1989	11.6696	HV	vibr.
7.80	32.7395	0.0920	0.4499	0.1710	8.1510	HV	vibr.
8.84	41.5498	0.1243	0.5354	0.2140	10.5691	HV	vibr.
9.65	56.4228	0.1520	0.6736	0.2591	13.4092	HV	vibr.
11.05	62.9408	0.1861	0.7094	0.2793	15.8604	HV	vibr.
11.34	36.8575	0.0947	0.5090		8.3118	HV	vibr.
12.52	75.3048	0.2124	0.9858	0.3782	18.8895	HV	vibr.
13.42	80.9807	0.2378	0.9723	0.3766	20.8949	HV	vibr.
14.49	83.0679	0.2411	1.0395	0.4094	20.7206	HV	vibr.
16.49	75.2149	0.2151	0.9431	0.3053	19.1891	HV	vibr.
17.15	81.3505	0.2224	1.0443	0.4125	19.6968	HV	vibr.
19.80	125.2661	0.3384	1.4939	0.5831	29.9398	HV	vibr.
22.80	78.7580	0.2214	1.0769	0.4192	19.5680	HV	vibr.
25.40	124.7666	0.3770	1.4699	0.5748	33.0712	HV	vibr.
27.70	121.9489	0.3363	1.4768	0.5971	29.4476	HV	vibr.
31.55	226.9921	0.7245	2.8515	1.0867	59.0742	HV	vibr.
33.76	97.2578	0.2603	1.2370	0.4852	23.0633	HV	vibr.
37.64	190.3796	0.5647	2.2330	0.8879	49.1631	HV	vibr.
40.45	151.3911	0.4054	1.9099	0.7379	34.9973	HV	vibr.
47.03	212.2712	0.6084	2.7094	1.0457	53.2434	HV	vibr.
55.23	212.7896	0.6051	2.7533	1.0351	52.9878	HV	vibr.
71.24	297.9527	0.8660	3.9082	1.5053	74.9508	HV	vibr.
2.69	27.1865	0.0849	0.3052		6.6477	HV	still
3.36	29.4253	0.0887	0.3976		7.1272	HV	still
4.17	39.8475	0.1248	0.4706		10.1390	HV	still
5.39	43.1455	0.1316	0.4739		10.3596	HV	still
6.63	46.8871	0.1430	0.5381		11.3071	HV	still
8.38	59.4219	0.1820	0.6714		14.6064	HV	still
9.90	66.2329	0.2007	0.7453		16.2284	HV	still
15.28	90.9974	0.2688	1.0535		21.9245	HV	still
25.50	140.5520	0.4188	1.6442		33.3272	HV	still
35.90	208.6614	0.6347	2.4957		50.7555	HV	still
49.82	272.1290	0.8203	3.2434		52.6593	HV	still
70.36	368.3663	1.1374	4.8528		89.9399	HV	still
89.38	369.0275	1.1286	5.1355		95.4246	HV	still
